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Articles citing this paper

Stress Metabolism I. Nitrogen Metabolism and Growth in the Barley Plant During Water Stress

TN Singh, IG Paleg and D Aspinall
26(1) pp.45 - 56


199 articles found in Crossref database.

Photometric determination of proline in quartz microplates: remarks on specificity
Ringel Christian, Siebert Sylvia, Wienhaus Otto
Analytical Biochemistry. 2003 313(1). p.167
Variação do teor de prolina em folhas de feijão em função da disponibilidade de água no solo
Sawazaki Haiko Enok, Teixeira João Paulo Feijão, Almeida Luiz D'Artagnan de
Bragantia. 1981 40(1). p.47
Root Temperature Stress and Proline Content in Leaves and Roots of Two Ecologically Different Plant Species
Öztürk Münir, Szaniawski Richard K.
Zeitschrift für Pflanzenphysiologie. 1981 102(4). p.375
Relationship between leaf temperature, compatible solutes and antitranspirant treatment in some desert plants
Laurie S., Bradbury M., Stewart G.R.
Plant Science. 1994 100(2). p.147
The role of proline accumulation in halophytes
Stewart G. R., Lee J. A.
Planta. 1974 120(3). p.279
Homeostasis in cucumber plants during low temperature stress
Szaniawski Ryszard K.
Physiologia Plantarum. 1985 64(2). p.212
Diurnal changes in proline content of desert plants
Batanouny K. H., Ebeid M. M.
Oecologia. 1981 51(2). p.250
Plant Tissue Culture and Its Bio-technological Application (1977)
Widholm J. M.
Nitrogenous compatible solutes in drought-stressed Medicago spp.
Naidu Bodapati P, Paleg Leslie G, Jones Graham P
Phytochemistry. 1992 31(4). p.1195
Yield and Metabolite Production of Pelargonium sidoides DC. in Response to Irrigation and Nitrogen Management
Mofokeng Motiki, Prinsloo Gerhard, Araya Hintsa, du Plooy Christian, Sathekge Ntshakga, Amoo Stephen, Steyn J.
Metabolites. 2020 10(6). p.219
Physiology of rice tungro virus disease: Proline accumulation due to infection
Mohanty Santosh K., Sridhar R.
Physiologia Plantarum. 1982 56(1). p.89
Seeds of Kosteletzkya virginica (Malvaceae): their structure, germination, and salt tolerance. II. Germination and salt tolerance
Poljakoff‐Mayber A., Somers G. F., Werker E., Gallagher J. L.
American Journal of Botany. 1994 81(1). p.54
Die Abhängigkeit der Prolinakkumulation vom Grad des Wasserstresses bei Wurzeln und Sprossen von Maiskeimpflanzen
Göring H., Thien Bui Huy
Biochemie und Physiologie der Pflanzen. 1978 172(3). p.311
Comparative transcriptome profiling of contrasting finger millet (Eleusine coracana (L.) Gaertn) genotypes under heat stress
Goyal Etika, Singh Amit Kumar, Mahajan Mahesh Mohanrao, Kanika Kumar
Molecular Biology Reports. 2024 51(1).
Amino acid and glycine betaine accumulation in cold-stressed wheat seedlings
Naidu B.P., Paleg L.G., Aspinall D., Jennings A.C., Jones G.P.
Phytochemistry. 1991 30(2). p.407
Réponse physiologique deReaumuria vermiculatacultivé sous contrainte saline
Khadhri Ayda, Neffati Mohamed, Smiti Samira
Acta Botanica Gallica. 2011 158(3). p.291
Population‐specific Traits and their Implication for the Evolution of a Drought‐adapted Ecotype in Armeria maritima
Köhl Karin
Botanica Acta. 1996 109(3). p.206
Growth, proline accumulation and water relations of NaCl-selected and non-selected callus lines of Dactylis glomerata L.
Gupta S. Dutta, Augé R.M., Denchev P.D., Conger B.V.
Environmental and Experimental Botany. 1995 35(1). p.83
Effect of specific amino acids on growth and aflatoxin production by Aspergillus parasiticus and Aspergillus flavus in defined media
Payne G A, Hagler W M
Applied and Environmental Microbiology. 1983 46(4). p.805
Die Rolle von Ascorbinsäure und Cytokininen in Pflanzen unter Streßeinwirkungen
Huber W.
Berichte der Deutschen Botanischen Gesellschaft. 1979 92(1). p.193
Protein turnover in the attached leaves of non-stressed and stressed barley seedlings
Dungey N. O., Davies D. D.
Planta. 1982 154(5). p.435
The influence of irrigation on the composition of soluble amino acids in developing wheat grain
Singh Umaid
Journal of the Science of Food and Agriculture. 1981 32(2). p.203
The influence of exogenous proline on the stomatal resistance in Vicia faba
Rajagopal Velamoor
Physiologia Plantarum. 1981 52(2). p.292
Der Stickstoffhaushalt von Pappelrinden und seine Beziehungen zur Temperatur
Höllwarth Michael
Zeitschrift für Pflanzenphysiologie. 1976 80(3). p.215
Quaternary ammonium compounds in plants in relation to salt resistance
Storey R., Jones R.G.Wyn
Phytochemistry. 1977 16(4). p.447
Disomic Substitution of 3D Chromosome with Its Homoeologue 3E in Tetraploid Thinopyrum elongatum Enhances Wheat Seedlings Tolerance to Salt Stress
Zeng Jian, Zhou Chunli, He Zaimei, Wang Yi, Xu Lili, Chen Guangdeng, Zhu Wei, Zhou Yonghong, Kang Houyang
International Journal of Molecular Sciences. 2023 24(2). p.1609
Susceptibility of Selected Crops to Simulated Imazethapyr Carryover: A Morpho-Anatomical Analysis
Jovanović-Radovanov Katarina, Rančić Dragana
Agronomy. 2023 13(7). p.1857
Inhibiting effect of fusicoccin on abscisic acid-induced proline accumulation in barley leaves
Pesci P., Beffagna N.
Plant Science Letters. 1984 36(1). p.7
Free proline accumulation during development of two wheat cultivars with water stress
Karamanos A. J., Drossopoulos J. B., Niavis C. A.
The Journal of Agricultural Science. 1983 100(2). p.429
Effects of different plant hormones or PEG seed soaking on maize resistance to drought stress
Yuan Zhiheng, Wang Chuntian, Li ShiPeng, Li Xiao, Tai Fuju
Canadian Journal of Plant Science. 2014 94(8). p.1491
Root Development and Anti-Oxidative Response of Rice Genotypes under Polyethylene Glycol Induced Osmotic Stress
Nupur Juthy Abedin, Hannan Afsana, Islam Abir Ul, Sagor G H M, Robin Arif Hasan Khan
Plant Breeding and Biotechnology. 2020 8(2). p.151
INTERRELATIONSHIPS BETWEEN ASPECTS OF NITROGEN METABOLISM AND SOLUTE ACCUMULATION AND THE DISTRIBUTION OF SUBTROPICAL WOODY PLANTS IN SOUTHEAST AFRICA
PRIOR J., TUOHY J., WHITING J.
New Phytologist. 1987 107(2). p.427
Accumulation of Free Proline at Low Temperatures
CHU T. M., JUSAITIS M., ASPINALL D., PALEG L. G.
Physiologia Plantarum. 1978 43(3). p.254
Efeito do estresse salino sobre a concentração de pigmentos e prolina em folhas de arroz
Lima Maria da Graça de Souza, Lopes Nei Fernandes, Bacarin Marcos Antonio, Mendes Cristina Rodrigues
Bragantia. 2004 63(3). p.335
The effect of wilting on the conversion of arginine, ornithine, and glutamate to proline in bean leaves
Stewart Cecil R., Boggess Samuel F.
Plant Science Letters. 1977 8(2). p.147
Exogenous application of epibrassinolide attenuated Verticillium wilt in upland cotton by modulating the carbohydrates metabolism, plasma membrane ATPases and intracellular osmolytes
Bibi Noreen, Fan Kai, Dawood Muhammad, Nawaz Ghazala, Yuan Shuna, Xuede Wang
Plant Growth Regulation. 2014 73(2). p.155
Proline accumulation as a reliable indicator of monocarpic senescence in rice cultivars
Mondal W. A., Dey B. B., Choudhuri M. A.
Experientia. 1985 41(3). p.346
Water deficit enhancement of proline and α‐amino nitrogen accumulation in potato plants and its association with susceptibility to drought
Levy David
Physiologia Plantarum. 1983 57(1). p.169
Toxic effects of surfactants applied to plant roots
Horowitz Menashe, Givelberg Assia
Pesticide Science. 1979 10(6). p.547
High Nitrogen Supply Induces Physiological Responsiveness to Long Photoperiod in Barley
Zeng Jian, Sheng Huajin, Liu Yang, Wang Yao, Wang Yi, Kang Houyang, Fan Xing, Sha Lina, Yuan Shu, Zhou Yonghong
Frontiers in Plant Science. 2017 8
Effects of seasonal changes of soil salinity and soil nitrogen on the N-metabolism of the halophyteArthrocnemum fruticosum (L.) Moq.
Doddema Henk, Saad Eddin Raja'a, Mahasneh Adel
Plant and Soil. 1986 92(2). p.279
Free proline accumulation in cereals in relation to salt tolerance
Chauhan R. P. S., Chauhan C. P. S., Kumar D.
Plant and Soil. 1980 57(2-3). p.167
Water-deficit stress-induced anatomical changes in higher plants
Shao Hong-Bo, Chu Li-Ye, Jaleel Cheruth Abdul, Zhao Chang-Xing
Comptes Rendus. Biologies. 2008 331(3). p.215
Characterization of the natural chemical and osmotic environment of early wheat embryogenesis
Maës O., Comeau A., Nadeau P., Simard R. R., St‐Pierre C. A.
Physiologia Plantarum. 1999 107(2). p.220
Simultaneous determination of proline and betaines by high performance liquid chromatography
Ford Clive W.
Journal of the Science of Food and Agriculture. 1984 35(8). p.881
Plant growth, metabolism and adaptation in relation to stress conditions. XXVII. Can ascorbic acid modify the adverse effects of NaCl and mannitol on amino acids, nucleic acids and protein patterns in Vicia faba seedlings?
Younis M. E., Hasaneen M. N. A., Kazamel A. M. S.
Protoplasma. 2009 235(1-4). p.37
Proline accumulation: A parameter for evaluation of sensitivity of tomato varieties to drought stress?
Aloni Beny, Rosenshtein Gila
Physiologia Plantarum. 1984 61(2). p.231
Effect of Salinity, Mineral Ions and Organic Solutes Contents on Vicia faba L.
A. Zayed Muhammad, . Mamdouh I. Elamry
Pakistan Journal of Biological Sciences. 2006 9(8). p.1406
Association Mapping Considering Allele Dosage: An Example of Forage Traits in an Interspecific Segmental Allotetraploid Urochloa spp. Panel
Matias Filipe Inácio, Vidotti Miriam Suzane, Meireles Karem Guimarães Xavier, Barrios Sanzio Carvalho Lima, do Valle Cacilda Borges, Carley Cari A. Schmitz, Fritsche‐Neto Roberto
Crop Science. 2019 59(5). p.2062
Microbial water stress
Brown A D
Bacteriological Reviews. 1976 40(4). p.803
Secretome analysis of chickpea reveals dynamic extracellular remodeling and identifies a Bet v1-like protein, CaRRP1 that participates in stress response
Gupta Sonika, Wardhan Vijay, Kumar Amit, Rathi Divya, Pandey Aarti, Chakraborty Subhra, Chakraborty Niranjan
Scientific Reports. 2015 5(1).
Weather, food and plagues of locusts
White T. C. R.
Oecologia. 1976 22(2). p.119
The Biology of Crop Productivity (1980)
Hanson Andrew D., Nelsen Charles E.
Stress physiology and metabolism in hybrid rice. I. Organic manures improve physical soil characteristics and drought tolerance
Singh Namrata, Singh C. A. K., Singh Sanjay
Journal of Crop Improvement. 2019 33(6). p.755
Nicotiana tabacum callus studies. X. ABA increases resistance to cold damage
BORNMAN CHRIS H., JANSSON EVA
Physiologia Plantarum. 1980 48(4). p.491
Thioproline‐induced accumulation of proline in barley leaf sections
BEFFAGNA N., PESCI P., RADICE M.
Plant, Cell & Environment. 1986 9(2). p.141
The Free Proline Content of Water Stressed Maize Roots
Carceller Marta, Fraschina Adela
Zeitschrift für Pflanzenphysiologie. 1980 100(1). p.43
Tissue distribution of glycinebetaine, proline and inorganic ions in barley at different times during the plant growth cycle.
Ahmad N., Jones R.G. Wyn
Journal of Plant Nutrition. 1982 5(3). p.195
Influence of arbuscular mycorrhizae and Rhizobium on free polyamines and proline levels in water-stressed alfalfa
Goicoechea N., Szalai G., Antolín M.C., Sánchez-Díaz M., Paldi E.
Journal of Plant Physiology. 1998 153(5-6). p.706
Physiological and biochemical responses to drought stress in cultivated and Tibetan wild barley
Zhang Mian, Jin Zhu-Qun, Zhao Jing, Zhang Guoping, Wu Feibo
Plant Growth Regulation. 2015 75(2). p.567
Interaction between Salinity and Ethylene in Nitrogen Metabolism of Pennisetum typhoides Seedlings
Eder Angelika, Huber Wilfried, Sankhla Narendra
Biochemie und Physiologie der Pflanzen. 1977 171(2). p.93
Genotypic differences in leaf secondary metabolism, plant hormones and yield under alone and combined stress of drought and salinity in cotton genotypes
Ibrahim Wasim, Zhu Ya‐Ming, Chen Yu, Qiu Cheng‐Wei, Zhu Shuijin, Wu Feibo
Physiologia Plantarum. 2019 165(2). p.343
Does proline accumulated in leaves of water deficit stressed barley plants confine cell membrane injury? I. Free proline accumulation and membrane injury index in drought and osmotically stressed plants
Bandurska Hanna
Acta Physiologiae Plantarum. 2000 22(4). p.409
Effect of salinity on growth, mineral ions and organic solutes contents in Artemisia monosperma
Zayed M. A.
Acta Botanica Hungarica. 2006 48(1-2). p.213
Physiological changes after exposure to and recovery from polyethylene glycol-induced water deficit in roots and leaves of durum wheat (Triticum durum Desf.) cultivars differing in drought resistance
Bajji Mohammed, Lutts S., Kinet J.M.
Journal of Plant Physiology. 2000 157(1). p.100
Regulation of S-adenosylhomocysteine hydrolase in the halophilic cyanobacterium Aphanothece halophytica: a possible role in glycinebetaine biosynthesis
Sibley M. H., Yopp J. H.
Archives of Microbiology. 1987 149(1). p.43
Transport in Plants II (1976)
Osmond C. B.
NITROGEN METABOLISM IN POTERIUM SANGUISORBA DURING WATER STRESS
TAYLOR A. A., DE‐FELICE J., HAVILL D. C.
New Phytologist. 1982 90(1). p.19
Water and nutrient relations of woody perennials from tropical dry forests
Olivares Elizabeth, Medina Ernesto
Journal of Vegetation Science. 1992 3(3). p.383
The process of abscisic acid‐induced proline accumulation and the levels of polyamines and quaternary ammonium compounds in hydrated barley leaves
Pesci Pierantonio, Reggiani Remo
Physiologia Plantarum. 1992 84(1). p.134
Taxonomic and ecological aspects of the distribution of glycinebetaine and related compounds in plants
Storey R., Ahmad N., Wyn Jones R. G.
Oecologia. 1977 27(4). p.319
Proline and valine—cues which stimulate grasshopper herbivory during drought stress?
Haglund Brent M.
Nature. 1980 288(5792). p.697
Insect Outbreaks (1987)
BRODBECK BRENT, STRONG DONALD
Thigmomorphogenesis: membrane lipid and protein changes in bean plants as affected by mechanical perturbation and Ethrel
Erner Y., Jaffe M. J.
Physiologia Plantarum. 1983 58(2). p.197
Biochemical and genetical analysis of three proline-accumulating barley mutants
Kueh J.S.H, Bright S.W.J
Plant Science Letters. 1982 27(2). p.233
Antagonistic effects of paclobutrazol and gibberellic acid on growth and some biochemical characteristics of pepper (Capsicum annuum) transplants
Aloni Beny, Pashkar Tamara
Scientia Horticulturae. 1987 33(3-4). p.167
Regulation of hyphal growth rate ofHypoxylon mammatum by amino acids: Stimulation by proline
Griffin David H., Quinn Kathleen, McMillen Barbara
Experimental Mycology. 1986 10(4). p.307
Proline level is partly under the control of abscisic acid in canola leaf discs during recovery from hyper-osmotic stress
Trotel-Aziz Patricia, Niogret Marie-Francoise, Larher Francois
Physiologia Plantarum. 2000 110(3). p.376
Proline catabolism, relaxation of osmotic strain and membrane permeability in the diatom Phaeodactylum tricornutum
SCHOBERT BRIGITTE
Physiologia Plantarum. 1980 50(1). p.37
Zur wirkung von abscisinsäure und kinetin auf biochemische veränderungen in Pennisetum typhoides unter streßeinwirkungen
Eder A., Huber W.
Zeitschrift für Pflanzenphysiologie. 1977 84(4). p.303
Crop Tolerance to Suboptimal Land Conditions (2015)
Maas E. V., Nieman R. H.
Regulation of proline accumulation in detached rice leaves
Chou Irene T., Chien Teh Chen , Ching Huei Kao
Plant Science. 1990 70(1). p.43
Effects of Stress on Photosynthesis (1983)
Lawlor D. W.
Stress physiology and metabolism in hybrid rice. IV. Variability in antioxidative enzymes— an aid to metabolic breeding for drought tolerance
Singh Namrata, Singh Sanjay, Singh C.A.K.
Journal of Crop Improvement. 2020 34(6). p.767
Low‐molecular‐weight carbohydrates in some salt‐stressed plants
Gorham J., Hughes Ll., Wyn Jones R. G.
Physiologia Plantarum. 1981 53(1). p.27
Influence of exogenously supplied potassium and sodium salts on the abscisic acid‐induced proline accumulation in barley leaf segments
Pesci P., Beffagna N.
Physiologia Plantarum. 1986 67(2). p.123
EVALUATION OF PROLINE ACCUMULATION IN THE ADAPTATION OF DIVERSE SPECIES OF MARSH HALOPHYTES TO THE SALINE ENVIRONMENT
Cavalieri Anthony J., Huang Anthony H. C.
American Journal of Botany. 1979 66(3). p.307
Chemotaxonomic significance of hydroxylated pipecolic acids in Central American Inga (Fabaceae: Mimosoideae: Ingeae)
Morton Timothy C
Biochemical Systematics and Ecology. 1998 26(4). p.379
Handbook of Plant and Crop Stress, Second Edition (1999)
Manzoor Alam Syed
Genotypic differences in physiological characteristics in the tolerance to drought and salinity combined stress between Tibetan wild and cultivated barley
Ahmed Imrul Mosaddek, Dai Huaxin, Zheng Weite, Cao Fangbin, Zhang Guoping, Sun Dongfa, Wu Feibo
Plant Physiology and Biochemistry. 2013 63 p.49
Effects of weak acids on proline accumulation in barley leaves: a comparison between abscisic acid and isobutyric acid
PESCI P., BEFFAGNA N.
Plant, Cell & Environment. 1985 8(2). p.129
The relationship between water stress induced proline accumulation and inhibition of protein synthesis in tobacco leaves
Boggess Samuel F., Stewart Cecil R.
Plant Science Letters. 1980 17(2). p.245
Proteolytische Vorg�nge bei Kurzfristiger Lagerung Einiger Blattgem�se
Schwerdtfeger E.
Qualitas Plantarum Plant Foods for Human Nutrition. 1978 28(2). p.147
In vitro selection for tolerance to and overproduction of lysine by embryogenic calli and regenerated plants of Pennisetum Americanum (L.) K. Schum.
Boyes C.J., Vasil I.K.
Plant Science. 1987 50(3). p.195
Metabolic Drift as Internal Defense Against Drought in Crop Plants: Evidence Unlocked from Rice Cultivars
Singh Sanjay, Singh T. N., Chauhan J. S.
Journal of New Seeds. 2009 10(3). p.206
Diurnal Fluctuations in Relative Water Content, Nitrate Reductase and Proline Content in Water‐stressed and Non‐stressed Wheat
RAJAGOPAL V., BALASUBRAMANIAN V., SINHA S. K.
Physiologia Plantarum. 1977 40(1). p.69
Water and Plant Life (1976)
Kluge M.
Physiological Mechanisms and Adaptation Strategies in Plants Under Changing Environment (2014)
Ahmad Parvaiz, Hameed Asiya, Abd-Allah Elsayed Fathi, Sheikh Subzar Ahmad, Wani Mohd Rafiq, Rasool Saiema, Jamsheed Sumiya, Kumar Ashwani
Does abscisic acid influence proline accumulation in stressed leaves?
Rajagopal Velamoor, Andersen A. Skytt
Planta. 1978 143(1). p.85
2,4-cis-4,5-cis-4,5-Dihyroxypipecolic acid—a naturally occurring imino acid from Calliandra pittieri
Bleecker Anthony B., Romeo John T.
Phytochemistry. 1983 22(4). p.1025
Is Photosynthetic Activity Responsible for the Stimulating Effect of Light on ABA-Induced Proline Accumulation in Barley Leaves?
Pesci Pierantonio
Journal of Plant Physiology. 1996 147(6). p.729
Differential Effects of Cold Stress on Chloroplasts Structures and Photosynthetic Characteristics in Cold-Sensitive and Cold-Tolerant Cultivars of Sugarcane
Li Su-Li, Li Zhi-Gang, Yang Li-Tao, Li Yang-Rui, He Zhen-Li
Sugar Tech. 2018 20(1). p.11
Effect of Abscisic Acid on Betaine Accumulation in Pennisetum typhoides seedlings
Huber Wilfried, Sankhla Narendra
Zeitschrift für Pflanzenphysiologie. 1980 97(2). p.179
Soil Water Deficit and Physiological Issues in Plants (2021)
Bhattacharya Amitav
Effect of irrigation on lipid biosynthesis in maturing sunflower seeds
Sukhija Pritam S., Borthakur Alip, Bhatia Iqbal S.
Journal of the Science of Food and Agriculture. 1980 31(3). p.225
Zur wirkung verschiedener salze und von polyäthylenglykol auf den Prolin- und aminosäurestoffwechsel von Pennisetum typhoides
Huber W., Schmidt F.
Zeitschrift für Pflanzenphysiologie. 1978 89(3). p.251
THE DISTRIBUTION OF CARBON‐14 IN PLANTS LABELLED AS A SOURCE OF FOOD FOR RED SCALE
ROBERTSON GILLIAN, SLOWIAK DANUTA
Entomologia Experimentalis et Applicata. 1974 17(2). p.163
Accumulation of Hydrogen Peroxide in Barley Seeds – A Key Factor for Malt Quality?
Baldus Matthias, Heukäufer Florian, Großpietsch Carla, Methner Frank-Jürgen
Journal of the American Society of Brewing Chemists. 2021 79(4). p.384
Ethylene evolution and ammonium accumulation by tomato plants under water and salinity stresses. Part II
Feng Jinan, Barker Allen V.
Journal of Plant Nutrition. 1992 15(11). p.2471
Nicotiana Tabacum Callus Studies. IX. Development in Stressed Explants
Bornman C.H., Huber W.
Biochemie und Physiologie der Pflanzen. 1979 174(5-6). p.345
Cold acclimation of wheat (Triticum aestivum): Properties of enzymes involved in proline metabolism
Charest Christiane, Ton Phan Chon
Physiologia Plantarum. 1990 80(2). p.159
Proline accumulation in wheat seedlings exposed to zinc and copper
Bassi Raman, Sharma Shanti S.
Phytochemistry. 1993 33(6). p.1339
Root growth, water relations, abscisic acid and proline levels of drought-resistant and drought-sensitive maize cultivars in response to water stress
O’Regan B.P., Cress W.A., van Staden J.
South African Journal of Botany. 1993 59(1). p.98
Transport in Plants II (1976)
Van Steveninck R. F. M.
The influence of NaCI concentration on the amino acid and neutral soluble carbohydrate content of Dunaliella
GINZBURG MARGARET E., BROWNLEE COLIN, JENNINGS DAVID H.
Plant, Cell & Environment. 1983 6(5). p.381
Effect of soil moisture and clipping stresses on the nutrient (N, P and K) concentration, uptake and use efficiency in one temperate and two tropical grasses
Misra G., Singh K. P.
Plant and Soil. 1982 69(3). p.413
Understanding water deficit stress-induced changes in the basic metabolism of higher plants – biotechnologically and sustainably improving agriculture and the ecoenvironment in arid regions of the globe
Shao Hong-Bo, Chu Li-Ye, Jaleel C. Abdul, Manivannan P., Panneerselvam R., Shao Ming-An
Critical Reviews in Biotechnology. 2009 29(2). p.131
Effect of flooding on tomato cultivars: The relationship between proline accumulation and other morphological and physiological changes
Aloni Beny, Rosenshtein Gila
Physiologia Plantarum. 1982 56(4). p.513
Ineffectual role of proline metabolism in salt-stressed sugarcane leaves
Naik G R, Joshi G V
Proceedings / Indian Academy of Sciences. 1983 92(3). p.265
Influence of Nutrient Deficiency on Proline Accumulation in the Cytoplasm of Zea mays L. Seedlings
Göring H., Thien Bui Huy
Biochemie und Physiologie der Pflanzen. 1979 174(1). p.9
Metabolic changes associated with cold‐acclimation in contrasting cultivars of barley
Murelli Carla, Rizza Fulvia, Albini Franca Marinone, Dulio Andrea, Terzi Valeria, Cattivelli Luigi
Physiologia Plantarum. 1995 94(1). p.87
�ber den Einflu� von NaCl- oder Abscisins�urebehandlung auf den Proteinmetabolismus und einige weitere Enzyme des Aminos�urestoffwechsels in Keimlingen von Pennisetum typhoides
Huber W.
Planta. 1974 121(3). p.225
Trans-4-methoxypipecolic acid, an amino acid from Inga paterno
Morton Timothy C., Zektzer Andrew S., Rife Jason P., Romeo John T.
Phytochemistry. 1991 30(7). p.2397
An Analysis of Conditions Determining Decline in Water Potential and Concurrent Proline Accumulation in Leaves of Four Cultivars of Vicia faba L.
Venekamp J. H., Grashoff C., Koot J. T. M.
Journal of Agronomy and Crop Science. 1987 158(5). p.304
The interaction of sodium and calcium chlorides and light on growth, potassium nutrition, and proline accumulation in callus cultures of Medicago sativa L.
SHAH S. H., WAINWRIGHT S. J., MERRETT M. J.
New Phytologist. 1990 116(1). p.37
The fate of osmo-accumulated proline in leaf discs of Rape (Brassica napus L.) incubated in a medium of low osmolarity
Trotel P., Bouchereau A., Niogret M.F., Larher F.
Plant Science. 1996 118(1). p.31
Sex-related differences in morphological, physiological, and ultrastructural responses of Populus cathayana to chilling
Zhang S., Jiang H., Peng S., Korpelainen H., Li C.
Journal of Experimental Botany. 2011 62(2). p.675
Response of Eucalyptus occidentalis to Water Stress Induced by NaCl
ITAI CHANAN
Physiologia Plantarum. 1978 43(4). p.377
Changes of water-relation characteristics and levels of organic cytoplasmic solutes during salinity induced transition of Mesembryanthemum crystallinum from C3-photosynthesis to crassulacean acid metabolism
Heun Anne-Marie, Gorham John, L�ttge Ulrich, WynJones R. Gareth
Oecologia. 1981 50(1). p.66
Effect of water stress on growth and proline metabolism of Phaseolus vulgaris L.
Jäger H. -J., Meyer H. R.
Oecologia. 1977 30(1). p.83
Photosynthetic characteristics in leaves of ‘Valencia’ orange (Citrus sinensis (L.) Osbeck) grown under high and low temperature regimes
Vu J.C.V., Yelenosky G.
Environmental and Experimental Botany. 1987 27(3). p.279
Changes in free amino acid content and frost resistance in Nothofagus dombeyi leaves
Meza-Basso Luis, Guarda Patricia, Rios Darcy, Alberdi Miren
Phytochemistry. 1986 25(8). p.1843
Growth, water relations, and CAM induction inSedum album in response to water stress
Sayed O. H., Earnshaw M. J., Cooper M.
Biologia plantarum. 1994 36(3).
Nahrungspflanzen—Freie Aminosäuren und Nitrosamine
Schwerdtfeger E.
Qualitas Plantarum Plant Foods for Human Nutrition. 1975 25(1). p.89
Eco-physiological studies on Indian arid zone plants VI. Effect of sodium chloride and abscisic acid on amino-acid an protein metabolism in leaves of Phaseolus aconitifolius
Huber W., Kreutmeier F., Sankhla N.
Zeitschrift für Pflanzenphysiologie. 1977 81(3). p.234
Chemical composition of salt‐marsh plants from Ynys Môn (Anglesey): the concept of physiotypes
GORHAM J., HUGHES LL., WYN JONES R. G.
Plant, Cell & Environment. 1980 3(5). p.309
Thermodynamische Betrachtungen über die reversible Reaktionssequenz Glutaminsaure ⇌ Prolin
Pahlich E., Jäger H.-J., Kaschel E.
Zeitschrift für Pflanzenphysiologie. 1981 101(2). p.137
Drought resistance in pearl millet
Garg B. K., Kathju S., Lahiri A. N., Vyas S. P.
Biologia Plantarum. 1981 23(3). p.182
Proline level is partly under the control of abscisic acid in canola leaf discs during recovery from hyper‐osmotic stress
Trotel‐Aziz Patricia, Niogret Marie‐Françoise, Larher François
Physiologia Plantarum. 2000 110(3). p.376
Limitations to Efficient Water Use in Crop Production (2015)
Hanson Andrew D., Hitz William D.
Amino acids and quaternary nitrogen compounds in the germinating wheat grain
Chittenden Catherine G., Laidman D.L., Ahmad N., Jones R.G.Wyn
Phytochemistry. 1978 17(8). p.1209
The influence of water stress on the metabolism of diatoms I. Osmotic resistance and proline accumulation in Cyclotella meneghiniana
Schobert Brigitte
Zeitschrift für Pflanzenphysiologie. 1974 74(2). p.106
Proline and glycinebetaine accumulation by Spartina alterniflora Loisel. in response to NaCl and nitrogen in a controlled environment
Cavalieri Anthony J.
Oecologia. 1983 57(1-2). p.20
The Influence of Water Stress on the Metabolism of Diatoms
Schobert B.
Zeitschrift für Pflanzenphysiologie. 1977 85(5). p.451
Floral transitions in wheat and barley: interactions between photoperiod, abiotic stresses, and nutrient status
Gol Leonard, Tomé Filipa, von Korff Maria
Journal of Experimental Botany. 2017 68(7). p.1399
Drought Tolerance in Wheat
Nezhadahmadi Arash, Prodhan Zakaria Hossain, Faruq Golam, Boyd R. S., Rajakaruna N.
The Scientific World Journal. 2013 2013(1).
Proline accumulation inTephrosia purpurea pers
Erakar S. R., Murumkar C. V.
Biologia plantarum. 1995 37(2). p.301
Growth characteristics and proline content in relation to water status in twoZea mays L. Cultivars during rehydration
Thakur P. S., Rai V. K.
Biologia Plantarum. 1981 23(2). p.98
Plant Cold Hardiness and Freezing Stress (1982)
Yelenosky G., Guy C.L.
10.1007/BF00335873
CrossRef Listing of Deleted DOIs. 2011
Effect of salinity on the intracellular osmolytes in the pyloric caeca and tube feet of Luidia clathrata (say) (Echinodermata: Asteroidea)
Diehl Walter J, Lawrence John M
Comparative Biochemistry and Physiology Part A: Physiology. 1985 82(3). p.559
Sources of proline‐nitrogen in water‐stressed soybean (Glycine max). II. Fate of 15N‐labelled protein
Fukutoku Yasuo, Yamada Yoshio
Physiologia Plantarum. 1984 61(4). p.622
Simultaneous measurement of proline and related compounds in oak leaves by high-performance ligand-exchange chromatography and electrospray ionization mass spectrometry for environmental stress studies
Oufir Mouhssin, Schulz Nadine, Sha Vallikhan Patan Shaik, Wilhelm Eva, Burg Kornel, Hausman Jean-Francois, Hoffmann Lucien, Guignard Cedric
Journal of Chromatography A. 2009 1216(7). p.1094
Symbiotic interactions between a newly identified native mycorrhizal fungi complex and the endemic tree Argania spinosa mediate growth, photosynthesis, and enzymatic responses under drought stress conditions
Outamamat Elmostapha, El Mrabet Said, Dounas Hanane, Bargaz Adnane, Duponnois Robin, Ouahmane Lahcen
Canadian Journal of Forest Research. 2022 52(3). p.335
Der Einfluß von NaCl auf den Prolinstoffwechsel bei Halophyten
Treichel Siegfreid
Berichte der Deutschen Botanischen Gesellschaft. 1979 92(1). p.73
Salt Tolerance in the Wild Relatives of the Cultivated Tomato: Proline Accumulation in Callus Tissue of Lycopersicon esculentum and L. peruvianum
Katz Adriana, Tal Moshe
Zeitschrift für Pflanzenphysiologie. 1980 98(5). p.429
Transcriptomic Study for Identification of Major Nitrogen Stress Responsive Genes in Australian Bread Wheat Cultivars
Sultana Nigarin, Islam Shahidul, Juhasz Angela, Yang Rongchang, She Maoyun, Alhabbar Zaid, Zhang Jingjuan, Ma Wujun
Frontiers in Genetics. 2020 11
Plant Performance Under Environmental Stress (2021)
Mundada Pankaj S., Jadhav Suchita V., Salunkhe Supriya S., Gurme Swati T., Umdale Suraj D., Nikam Tukaram D., Ahire Mahendra L.
Alterations in the activities of the enzymes of proline metabolism in Ragi (Eleusine coracana) leaves during water stress
Kandpal Rajendra P., Vaidyanathan C. S., Kumar M. Udaya, Sastry K. S. Krishna, Rao N. Appaji
Journal of Biosciences. 1981 3(4). p.361
Plant Breeding Reviews (1986)
Myers Oval, Yopp John H., Krishnamani M. R. S.
Persistence of nonprotein seed amino acid s-(?-carboxyethyl)-cysteine in young leaves ofCalliandra rubescens Ecological implications
Romeo John T., Swain Lee A.
Journal of Chemical Ecology. 1986 12(11). p.2089
Proline accumulation in the grains, floral organs and flag leaves of wheat and barley in response to variations in water and nitrogen supply
Aspinall D., Parameswaran K. V. M., Graham R. D.
Irrigation Science. 1983 4(3). p.157
Effects of Kinetin and Proline on Enzyme Activities in Roots of Waterlogged Pisum sativum Plants1)1)Dedicated to Prof. Dr. O. Stocker on the occasion of his 90th birthday.
Huber Wilfried, Wörle Ingrid, Sankhla Narendra
Flora. 1979 168(1-2). p.217
Light stimulation of proline synthesis in water-stressed barley leaves
Hanson Andrew D., Tully Raymond E.
Planta. 1979 145(1). p.45
SALT TOLERANCE IN THE WILD RELATIVES OF THE CULTIVATED TOMATO: PROLINE ACCUMULATION IN LYCOPERSICON ESCULENTUM MILL., L. PERUVIANUM MILL. AND SOLANUM PENNELLI COR. TREATED WITH NaCI AND POLYETHYLENE GLYCOLE
TAL M., KATZ A., HEIKIN H., DEHAN K.
New Phytologist. 1979 82(2). p.349
Modelling systems of disease and yield loss in cereals
Teng P.S., Gaunt R.E.
Agricultural Systems. 1980 6(2). p.131
In vitro selection for salt tolerant lines in Lycopersicon peruvianum
Hassan Noaman S., Wilkins Dennis A.
Plant Cell Reports. 1988 7(6). p.463
Hormonal Aspects of Senescence in Detached Tobacco Leaves
EVEN‐CHEN ZEEV, ATSMON DAN, ITAI CHANAN
Physiologia Plantarum. 1978 44(4). p.377
Salt-stress-induced proline accumulation in germinating embryos:Evidence suggesting a role of proline in seed germination
Thakur M., Sharma A.D.
Journal of Arid Environments. 2005 62(3). p.517
Characterization of drought resistance in a wild relative of wheat, Triticum kotschyi
Benveniste-Levkovitz Patricia, Canaani Ora, Gromet-Elhanan Zippora, Atsmon Dan
Photosynthesis Research. 1993 35(2). p.149
Plant Cell Culture in Crop Improvement (1983)
Das P. K., Widholm J. M.
Betaine and choline levels in plants and their relationship to NaCl stress
Storey R., Wyn Jones R.G.
Plant Science Letters. 1975 4(3). p.161
Chloroplastic glutamine synthetase from normal and water stressed safflower (Carthamus tinctorius L.) leaves
Bhatia Prakash K., Mahajan Muktar A., Vaidyanathan C.S.
Plant Science. 1994 95(2). p.153
Plant Breeding Reviews (1994)
Galiba Gábor
Cis-4-hydroxypipecolic acid and 2,4-cis-4,5-trans-4,5-dihydroxypipecolic acid from Calliandra
Romeo John T., Swain Lee A., Bleecker Anthony B.
Phytochemistry. 1983 22(7). p.1615
RNA-Seq-Based Transcriptomics Study to Investigate the Genes Governing Nitrogen Use Efficiency in Indian Wheat Cultivars
Kaur Sarabjit, Shamshad M., Jindal Suruchi, Kaur Amandeep, Singh Satinder, sharma Achla, Kaur Satinder
Frontiers in Genetics. 2022 13
Strategies for Improving Drought Resistance in Grain Legumes
Subbarao G. V., Johansen C., Slinkard A. E., Nageswara Rao R. C., Saxena N. P., Chauhan Y. S., Lawn R. J.
Critical Reviews in Plant Sciences. 1995 14(6). p.469
Glycinebetaine biosynthesis and its control in detached secondary leaves of spinach
Coughlan Sean J., Wyn Jones R. Gareth
Planta. 1982 154(1). p.6
Characterization of Resistance to the Proline Analog Azetidine Carboxylic Acid in a Nicotiana sylvestris Cell Line
Breiman Adina, Vunsh Ron, Galun Esra
Zeitschrift für Pflanzenphysiologie. 1982 105(5). p.383
The effect of proline application on the physiology ofraphanus sativus plants grown under salinity stress
Shaddad M. A.
Biologia Plantarum. 1990 32(2). p.104
Sex‐related adaptive responses of Populus cathayana to photoperiod transitions
ZHAO HONGXIA, LI YAN, DUAN BAOLI, KORPELAINEN HELENA, LI CHUNYANG
Plant, Cell & Environment. 2009 32(10). p.1401
OSMOTIC ADJUSTMENT IN MARINE EUKARYOTIC ALGAE: THE ROLE OF INORGANIC IONS, QUATERNARY AMMONIUM, TERTIARY SULPHONIUM AND CARBOHYDRATE SOLUTES
DICKSON D. M. J., KIRST G. O.
New Phytologist. 1987 106(4). p.645
Der Einfluß des Aluminiums auf den Gasaustausch und das Welken von Schnittpflanzen
Schnabl H., Ziegler H.
Berichte der Deutschen Botanischen Gesellschaft. 1974 87(1). p.13
Changes in free proline following infection of plants with either Meloidogyne javanica or Agrobacterium tumefaciens
Meon S., Fisher J.M., Wallace H.R.
Physiological Plant Pathology. 1978 12(3). p.251
Assessment of glycinebetaine and proline compartmentation by analysis of isolated beet vacuoles
Leigh Roger A., Ahmad Nazir, Jones R. Gareth Wyn
Planta. 1981 153(1). p.34
Handbook of Plant and Crop Stress, Second Edition (1999)
Rabe Etienne
Effect of Irradiance on Free Proline Accumulation in Stressed Barley Leaves
Rajagopal Velamoor
Zeitschrift für Pflanzenphysiologie. 1983 111(3). p.277
ABA‐induced proline accumulation in barley leaf segments: Dependence on protein synthesis
Pesci Pierantonio
Physiologia Plantarum. 1987 71(3). p.287
Indices of water deficit in susceptible and resistant cucumbers in response to infection by cucumber mosaic virus
LEVY D., MARCO S.
Annals of Applied Biology. 1991 119(2). p.381
Influence of simulated imazethapyr soil residues on the whole protein content in different crops roots
Jovanović-Radovanov Katarina
Acta herbologica. 2022 31(2). p.155
The control of proline consumption by abscisic acid during osmotic stress recovery of canola leaf discs
Trotel‐Aziz Patricia, Niogret Marie‐Françoise, Deleu Carole, Bouchereau Alain, Aziz Aziz, Larher François Robert
Physiologia Plantarum. 2003 117(2). p.213
Mutations, In Vitro and Molecular Techniques for Environmentally Sustainable Crop Improvement (2002)
Khan A. J., Hassan S., Tariq M., Khan T.
Amino Acids and Derivatives (1980)
STEWART G.R., LARHER F.
Accumulation of proline and glycinebetaine in Spartina alterniflora Loisel. in response to NaCl and nitrogen in the marsh
Cavalieri Anthony J., Huang Anthony H. C.
Oecologia. 1981 49(2). p.224
Comparative transcriptome analysis uncovers different heat stress responses in heat-resistant and heat-sensitive jujube cultivars
Jin Juan, Yang Lei, Fan Dingyu, Liu Xuxin, Hao Qing, Shelden Eric A.
PLOS ONE. 2020 15(9). p.e0235763
Characterization of the natural chemical and osmotic environment of early wheat embryogenesis
Maës O., Comeau A., Nadeau P., Simard R. R., St‐Pierre C. A.
Physiologia Plantarum. 1999 107(2). p.230
Influence of Triadimefon on the Metabolism of NaCl Stressed Radish
Muthukumarasamy M., Dutta Gupta S., Panneerselvam R.
Biologia plantarum. 2000 43(1). p.67
Comparative sensitivity of ‘Prior Lisbon’ lemon and ‘Valencia’ orange trees to foliar sodium and chloride concentrations
LLOYD J., KRIEDEMANN P.E., ASPINALL D.
Plant, Cell & Environment. 1989 12(5). p.529
Glucose Mimics the Enhancing Effect of Light on ABA-Induced Proline Accumulation in Hydrated Barley and Wheat Leaves
Pesci Pierantonio
Journal of Plant Physiology. 1993 142(3). p.355
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