Register      Login
Australian Journal of Biological Sciences Australian Journal of Biological Sciences Society
Biological Sciences

Articles citing this paper

Stress Metabolism II. Changes in Proline Concentration in Excised Plant Tissues

TN Singh, D Aspinall, LG Paleg and SF Boggess
26(1) pp.57 - 64


65 articles found in Crossref database.

(1978)
Brown A.D.
Free amino acid pattern in stressed leaves of two contrasting resistant and susceptible cultivars of chick pea (Cicer arietinum)
Singh G., Thakur P. S., Rai V. K.
Experientia. 1985 41(1). p.40
Organic Acids as Sources for Drought-induced Proline Synthesis in Field Bean Plants, Vicia faba L.
Venekamp J.H., Lampe J.E.M., Koot J.T.M.T
Journal of Plant Physiology. 1989 133(6). p.654
Regulation of cytosol acidity in plants under conditions of drought
Venekamp J. H.
Physiologia Plantarum. 1989 76(1). p.112
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
Water and Plant Life (1976)
Kluge M.
ABA and proline accumulation in leaves and roots of wild (Hordeum spontaneum) and cultivated (Hordeum vulgare ‘Maresi’) barley genotypes under water deficit conditions
Bandurska Hanna, Stroiński Andrzej
Acta Physiologiae Plantarum. 2003 25(1). p.55
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
Biosaline Agriculture as a Climate Change Adaptation for Food Security (2023)
Hachicha Mohamed, Khaskoussy Khawla, Souguir Dalila, Mzahma Sourour, Bouhlel Mohamed, Moussa Malak
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
Exogenously supplied amino acids and water deficits inZea mays cultivars
Thakur P. S., Rai V. K.
Biologia Plantarum. 1985 27(6). p.458
Effect of salt stress on proline metabolism in two high yielding genotypes of green gram
Misra Neelam, Gupta Ajay K.
Plant Science. 2005 169(2). p.331
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
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
Polyamines as short-term salt tolerance traits in tomato
Santa-Cruz Ana, Perez-Alfocea Francisco, Caro Manuel, Acosta Manuel
Plant Science. 1998 138(1). p.9
Temperatura, umidade relativa e disponibilidade de água no acumulo de prolina em cultivares de feijoeiro
Sawazaki Haiko Enok, Teixeira João Paulo Feijão, Bulisani Eduardo Antonio
Bragantia. 1985 44(2). p.569
Is there an osmotic regulatory mechanism in algae and higher plants?
Schobert Brigitte
Journal of Theoretical Biology. 1977 68(1). p.17
Physiological and biochemical responses to the exogenous application of proline of tomato plants irrigated with saline water
Kahlaoui B., Hachicha M., Misle E., Fidalgo F., Teixeira J.
Journal of the Saudi Society of Agricultural Sciences. 2018 17(1). p.17
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
Biomass Industrial Effluent Effect on Carbohydrates, Aminoacids, Nitrite and Nitrite Enzyme Activities of Arachis hypogaea L.
Nagajyoti PC, Dinakar N, Suresh S, Udaykiran Y, Suresh C, Prasad TNVKV, Damodharam T
Agricultural Sciences in China. 2009 8(2). p.203
Salt Stress, Microbes, and Plant Interactions: Mechanisms and Molecular Approaches (2019)
Shafi Amrina, Zahoor Insha, Mushtaq Umar
Being alive on land (1984)
Karamanos A. J.
Biotic and abiotic stress effects on nitrogen chemistry in the salt marsh cordgrassSpartina alterniflora (Poaceae)
Bacheller John D., Romeo John T.
Chemoecology. 1992 3(2). p.74
The Effect of Cu, Zn, Cd, and Pb Accumulation on Biochemical Parameters (Proline, Chlorophyll) in the Water Caltrop (Trapa natans L.), Lake Skadar, Montenegro
Petrovic Dragana, Krivokapic Sladjana
Plants. 2020 9(10). p.1287
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
The role of proline and root traits on selection for drought-stress tolerance in soybeans: a review
Mwenye Obed J, van Rensburg Leon, van Biljon Angeline, van der Merwe Rouxléne
South African Journal of Plant and Soil. 2016 33(4). p.245
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
Transport in Plants II (1976)
Smith F. A., Raven J. A.
Proline accumulation in wheat seedlings exposed to zinc and copper
Bassi Raman, Sharma Shanti S.
Phytochemistry. 1993 33(6). p.1339
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
The Free Proline Content of Water Stressed Maize Roots
Carceller Marta, Fraschina Adela
Zeitschrift für Pflanzenphysiologie. 1980 100(1). p.43
Proteolytische Vorg�nge bei Kurzfristiger Lagerung Einiger Blattgem�se
Schwerdtfeger E.
Qualitas Plantarum Plant Foods for Human Nutrition. 1978 28(2). p.147
Amino Acids and Derivatives (1980)
STEWART G.R., LARHER F.
The role of biomarkers in environmental assessment (4). Terrestrial plants
Ernst W. H. O., Peterson P. J.
Ecotoxicology. 1994 3(3). p.180
Nahrungspflanzen—Freie Aminosäuren und Nitrosamine
Schwerdtfeger E.
Qualitas Plantarum Plant Foods for Human Nutrition. 1975 25(1). p.89
Die Akkumulierung von Prolin in Phaeodactylum tricornutum und die Funktion der „compatible solutes” in Pflanzenzellen unter Wasserstreß
Schobert Brigitte
Berichte der Deutschen Botanischen Gesellschaft. 1979 92(1). p.23
Diurnal changes in proline content of desert plants
Batanouny K. H., Ebeid M. M.
Oecologia. 1981 51(2). p.250
Effect of cadmium on autoxidation rate of tissue and inducing accumulation of free proline in seedlings of mung bean
Zhang Fenqin, Li Xiangdong, Wang Chunchun, Shen Zhenguo
Journal of Plant Nutrition. 2000 23(3). p.357
Light stimulation of proline synthesis in water-stressed barley leaves
Hanson Andrew D., Tully Raymond E.
Planta. 1979 145(1). p.45
Durum Wheat Stress Tolerance Induced by Endophyte Pantoea agglomerans with Genes Contributing to Plant Functions and Secondary Metabolite Arsenal
Cherif-Silini Hafsa, Thissera Bathini, Bouket Ali Chenari, Saadaoui Nora, Silini Allaoua, Eshelli Manal, Alenezi Faizah N., Vallat Armelle, Luptakova Lenka, Yahiaoui Bilal, Cherrad Semcheddine, Vacher Sebastien, Rateb Mostafa E., Belbahri Lassaad
International Journal of Molecular Sciences. 2019 20(16). p.3989
Der einfluß von NaCl auf die Prolinkonzentration verschiedener Halophyten
Treichel Siegfried
Zeitschrift für Pflanzenphysiologie. 1975 76(1). p.56
Biomarkers in Environmental and Human Health Biomonitoring (2024)
Patel Anuradha, Tiwari Sanjesh, Khandelwal Arushi, Singh Charu, Pandey Neeraj, Tiwari Anupam, Yadav Sanjay, Prasad Sheo Mohan
Adaptability to drought in sugar beet cultivars
Štajner D., Mimica-Dukić N., Gasić O.
Biologia plantarum. 1995 37(1).
Impact of Folic Acid in Modulating Antioxidant Activity, Osmoprotectants, Anatomical Responses, and Photosynthetic Efficiency of Plectranthus amboinicus Under Salinity Conditions
Al-Elwany Omar A. A. I., Hemida Khaulood A., Abdel-Razek Mohamed A., El-Mageed Taia A. Abd, El-Saadony Mohamed T., AbuQamar Synan F., El-Tarabily Khaled A., Taha Ragab S.
Frontiers in Plant Science. 2022 13
Microbial water stress
Brown A D
Bacteriological Reviews. 1976 40(4). p.803
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
Architectural Engineering of Rice Panicle for Increased Productivity: A Powerful Biological Tool for Combating Agricultural Water Crisis
Singh Sanjay, Singh T. N., Chauhan J. S.
Journal of Crop Improvement. 2009 23(4). p.451
Action de la salinité sur les teneurs en proline des organes juvéniles de trois lignées de fève (Vicia fabaL.)
Belkhodja Moulay, Saadi Meriem Aït
Acta Botanica Gallica. 1993 140(5). p.473
10.1007/BF00335873
CrossRef Listing of Deleted DOIs. 2011
Peroxidase‐ und Superoxiddismutase‐Aktivität sowie Prolingehalte von Fichtennadeln nach Belastung mit O3, SO2 und NO2
Klumpp G., Guderian R., Küppers K.
European Journal of Forest Pathology. 1989 19(2). p.84
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
The Biology of Crop Productivity (1980)
Hanson Andrew D., Nelsen Charles E.
Stress physiology and metabolism in hybrid rice.III. Puddling and soil compaction regulate water status and internal metabolism during drought
Singh Namrata, Singh Sanjay, Singh C.A.K.
Journal of Crop Improvement. 2020 34(6). p.741
NaCl effects on proline metabolism in two high yielding genotypes of mulberry (Morus alba L.) with contrasting salt tolerance
Kumar S.Giridara, Reddy A.Matta, Sudhakar Chinta
Plant Science. 2003 165(6). p.1245
Physio-biochemical insights into sugarcane genotypes under water stress
Kumar Devendra, Malik Nisha, Sengar Rakesh Singh
Biological Rhythm Research. 2021 52(1). p.92
Spin label studies on osmotically-induced changes in the aqueous cytoplasm of Phaeodactylum tricornutum
Schobert Brigitte, Marsh Derek
Biochimica et Biophysica Acta (BBA) - Molecular Cell Research. 1982 720(1). p.87
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
A New Laboratory Technique for Creating Water Stress
Singh Sanjay, Singh T. N., Chauhan J. S.
Journal of Crop Improvement. 2011 25(6). p.769
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
The Influence of Water Stress on the Metabolism of Diatoms
Schobert B.
Zeitschrift für Pflanzenphysiologie. 1977 85(5). p.451
Impact of amino acid application onCupressus macrocarpaimmature seedlings in response to drought
Fetouh M.I.
Acta Horticulturae. 2017 (1189). p.545
ENHANCEMENT OF INTRACELLULAR PROLINE LEVEL IN CELLS OF ANACYSTIS NIDULANS (CYANOBACTERIA) EXPOSED TO DELETERIOUS CONCENTRATIONS OF COPPER1
Wu Jiunn‐Tzong, Chang Shih‐Chieh, Chen Kuang‐Sin
Journal of Phycology. 1995 31(3). p.376
Proline and valine—cues which stimulate grasshopper herbivory during drought stress?
Haglund Brent M.
Nature. 1980 288(5792). p.697
Differential performance of Cleome gynandra L. (C4) and C. speciosa L. (C3) under water, stress and recovery
Jaya Kumar U.David, Saraswathy R., Rama Das V.S.
Environmental and Experimental Botany. 1984 24(4). p.305
The effects of irrigation water salinity on the seed germination and seedling growth of rice
Bayindir Fikri, Coşkun Yalçın
Genetika. 2022 54(1). p.255
Abstract PDF (2.1 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email