Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

Lucerne biology and genetic improvement - an analysis of past activities and future goals in Australia

J. A. G. Irwin, D. L. Lloyd and K. F. Lowe
52(7) pp.699 - 712


59 articles found in Crossref database.

The Symbiotic Requirements of Different Medicago Spp. Suggest the Evolution of Sinorhizobium Meliloti and S. Medicae with Hosts Differentially Adapted to Soil pH
Garau G., Reeve W.G., Brau L., Deiana P., Yates R.J., James D., Tiwari R., O’Hara G.W., Howieson J.G.
Plant and Soil. 2005 276(1-2). p.263
The search for new pasture plants to achieve more sustainable production systems in southern Australia
Dear B. S., Ewing M. A.
Australian Journal of Experimental Agriculture. 2008 48(4). p.387
Molecular cloning and characterization of a gene regulating flowering time from Alfalfa (Medicago sativa L.)
Zhang Tiejun, Chao Yuehui, Kang Junmei, Ding Wang, Yang Qingchuan
Molecular Biology Reports. 2013 40(7). p.4597
Effectiveness of grazing and herbicide treatments for lucerne removal before cropping in southern New South Wales
Davies S. L., Virgona J. M., McCallum M. H., Swan A. D., Peoples M. B.
Australian Journal of Experimental Agriculture. 2005 45(9). p.1147
DNA markers linked to yield, yield components, and morphological traits in autotetraploid lucerne (Medicago sativa L.)
Musial J. M., Lowe K. F., Mackie J. M., Aitken K. S., Irwin J. A. G.
Australian Journal of Agricultural Research. 2006 57(7). p.801
Persistence, productivity, nutrient composition, and aphid tolerance of Cullen spp.
Hayes R. C., Li G. D., Dear B. S., Humphries A. W., Tidd J. R.
Crop and Pasture Science. 2009 60(12). p.1184
Stress Tolerance and Symbiotic and Phylogenic Features of Root Nodule Bacteria Associated with Medicago Species in Different Bioclimatic Regions of Tunisia
Djedidi Salem, Yokoyama Tadashi, Ohkama-Ohtsu Naoko, Risal Chandra Prasad, Abdelly Chedly, Sekimoto Hitoshi
Microbes and Environments. 2011 26(1). p.36
Evaluation of perennial pasture legumes and herbs to identify species with high herbage production and persistence in mixed farming zones in southern Australia
Li G. D., Lodge G. M., Moore G. A., Craig A. D., Dear B. S., Boschma S. P., Albertsen T. O., Miller S. M., Harden S., Hayes R. C., Hughes S. J., Snowball R., Smith A. B., Cullis B. C.
Australian Journal of Experimental Agriculture. 2008 48(4). p.449
Characterization of resistance to multiple aphid species (Hemiptera: Aphididae) inMedicago truncatula
Gao L.-L., Horbury R., Nair R.M., Singh K.B., Edwards O.R.
Bulletin of Entomological Research. 2007 97(1). p.41
Biology and trophic interactions of lucerne aphids
Ryalls James M. W., Riegler Markus, Moore Ben D., Johnson Scott N.
Agricultural and Forest Entomology. 2013 15(4). p.335
Soil water extraction and biomass production by lucerne in the south of Western Australia
Dolling P. J., Latta R. A., Ward P. R., Robertson M. J., Asseng S.
Australian Journal of Agricultural Research. 2005 56(4). p.389
A survey of lucerne in northern New South Wales for viruses of importance to the winter legume industry
van Leur J. A. G., Kumari S. G.
Australasian Plant Pathology. 2011 40(2). p.180
Medicago ciliaris growing in Tunisian soils is preferentially nodulated by Sinorhizobium medicae
Zribi K., Badri Y., Saidi S., van Berkum P., Aouani M. E.
Soil Research. 2007 45(6). p.473
REVIEW: Does Protein in Alfalfa Need Protection from Rumen Microbes?
Getachew G., Depeters E.J., Pittroff W., Putnam D.H., Dandekar A.M.
The Professional Animal Scientist. 2006 22(5). p.364
Irrigating at podding and regrowth stages increases seed yield and improves pod distribution in lucerne grown in the Hexi Corridor in China
Guo Zheng Gang, Xialiu Hui, Wang Yan Rong, Kunhu Yu, Yang Jing Ning
New Zealand Journal of Agricultural Research. 2007 50(3). p.285
Comparison among nine alfalfa breeding schemes based on actual biomass yield gains
Annicchiarico Paolo, Pecetti Luciano
Crop Science. 2021 61(4). p.2355
Virus diseases of perennial pasture legumes in Australia: incidences, losses, epidemiology, and management
Jones Roger A. C.
Crop and Pasture Science. 2013 64(3). p.199
Global climate change and crop resistance to aphids: contrasting responses of lucerne genotypes to elevated atmospheric carbon dioxide
Johnson S.N., Ryalls J.M.W., Karley A.J.
Annals of Applied Biology. 2014 165(1). p.62
Perennial pastures for recharge control in temperate drought-prone environments. Part 1: productivity, persistence and herbage quality of key species
Hayes RC, Dear BS, Li GD, Virgona JM, Conyers MK, Hackney BF, Tidd J
New Zealand Journal of Agricultural Research. 2010 53(4). p.283
Transfer of anthracnose resistance and pod coiling traits from Medicago arborea to M. sativa by sexual reproduction
Armour D. J., Mackie J. M., Musial J. M., Irwin J. A. G.
Theoretical and Applied Genetics. 2008 117(2). p.149
A novel approach to planting grass - legume pastures in the mixed farming zone of southern inland Queensland, Australia
Whitbread A. M., Hall C. A., Pengelly B. C.
Crop and Pasture Science. 2009 60(12). p.1147
Evaluation of morphological and production characteristics and nutritive value of 47 lucerne cultivars/lines in temperate Australia
Nan Lili, Nie Zhongnan, Zollinger Reto, Guo Quanen
Plant Production Science. 2019 22(4). p.490
Variation in salinity tolerance, early shoot mass and shoot ion concentrations within Lotus tenuis: towards a perennial pasture legume for saline land
Teakle N. L., Snell A., Real D., Barrett-Lennard E. G., Colmer T. D.
Crop and Pasture Science. 2010 61(5). p.379
Chromosome-level genome assembly of the spotted alfalfa aphid Therioaphis trifolii
Huang Tianyu, Liu Yang, He Kang, Francis Frédéric, Wang Bing, Wang Guirong
Scientific Data. 2023 10(1).
Outcomes of the search for new perennial and salt tolerant pasture plants for southern Australia
Dear B. S., Reed K.F. M., Craig A. D.
Australian Journal of Experimental Agriculture. 2008 48(4). p.578
Field evaluation of lucerne (Medicago sativa L.) for resistance to aphids in northern China
He C. G., Zhang X. G.
Australian Journal of Agricultural Research. 2006 57(4). p.471
Potential to increase yield in lucerne (Medicago sativa subsp. sativa) through introgression of Medicago sativa subsp. falcata into Australian adapted material
Mackie J. M., Pepper P. M., Lowe K. F., Musial J. M., Irwin J. A. G.
Australian Journal of Agricultural Research. 2005 56(12). p.1365
Seedling validation of acid soil tolerance of lucerne populations selected in solution culture high in aluminium
Hayes R. C., Scott B. J., Dear B. S., Li G. D., Auricht G. C.
Crop and Pasture Science. 2011 62(9). p.803
Eragrostis curvula (Schrad.) Nees. complex pastures in southern New South Wales, Australia: a comparison of Eragrostis curvula cv. Consol and Medicago sativa L. cv. Nova under intensive rotational management
Johnston W. H., Cornish P. S., Koen T. B., Shoemark V. F.
Australian Journal of Experimental Agriculture. 2005 45(10). p.1255
Fertility of Herbivores Consuming Phytoestrogen-containing Medicago and Trifolium Species
Reed K.
Agriculture. 2016 6(3). p.35
(E)‐β‐farnesene synthase gene affects aphid behavior in transgenic Medicago sativa
Wang Xuemin, Gao Yuhao, Chen Zhihong, Li Jindong, Huang Jianping, Cao Jiangbo, Cui Miaomiao, Ban Liping
Pest Management Science. 2019 75(3). p.622
Yield and water-use efficiency of contrasting lucerne genotypes grown in a cool temperate environment
Pembleton K. G., Rawnsley R. P., Donaghy D. J.
Crop and Pasture Science. 2011 62(7). p.610
Prospects for improving perennial legume persistence in mixed grazed pastures of south-eastern Australia, with particular reference to white clover
Hayes R. C., Ara I., Badgery W. B., Culvenor R. A., Haling R. E., Harris C. A., Li G. D., Norton M. R., Orgill S. E., Penrose B., Smith R. W.
Crop and Pasture Science. 2019 70(12). p.1141
Temperate pasture legumes in Australia—their history, current use, and future prospects
Nichols P. G. H., Revell C. K., Humphries A. W., Howie J. H., Hall E. J., Sandral G. A., Ghamkhar K., Harris C. A.
Crop and Pasture Science. 2012 63(9). p.691
Twenty-four years lucerne (Medicago sativa L.) breeder seed production in India: a retrospective study
Chand Subhash, Roy Ajoy Kumar, Singh Tejveer, Agrawal Rajiv Kumar, Yadav Vijay Kumar, Kumar Sanjay, Malaviya Devendra Ram, Chandra Amaresh, Yadava Devendra Kumar
Frontiers in Plant Science. 2023 14
Breeding gain from exploitation of regional adaptation: An alfalfa case study
Annicchiarico Paolo
Crop Science. 2021 61(4). p.2254
Achievements and Challenges in Improving Temperate Perennial Forage Legumes
Annicchiarico Paolo, Barrett Brent, Brummer E. Charles, Julier Bernadette, Marshall Athole H.
Critical Reviews in Plant Sciences. 2015 34(1-3). p.327
Defoliation frequency and season affected radiation use efficiency and dry matter partitioning to roots of lucerne (Medicago sativa L.) crops
Teixeira Edmar I., Moot Derrick J., Brown Hamish E.
European Journal of Agronomy. 2008 28(2). p.103
Biomass, persistence and drought resistance of nine lucerne varieties in the dry environment of west China
Guo Zheng Gang, Liu Hui Xia, Wang Suo Min, Tian Fu Ping, Cheng Guo-Dong
Australian Journal of Experimental Agriculture. 2005 45(1). p.59
Persistence and productivity of Medicago sativa subspecies sativa, caerulea, falcata and varia accessions at three intermittently dry sites in south-eastern Australia
Li G. D., Nie Z. N., Boschma S. P., Dear B. S., Lodge G. M., Hayes R. C., Clark B., Hughes S. J., Humphries A. W.
Crop and Pasture Science. 2010 61(8). p.645
Amplified Fragment Length Polymorphism Marker Diversity among High Yielding Perennial Alfalfa (Medicago sativa L.) Core Collection Accessions
Bhandari H. S., Lawati A. H. Al, Ray I. M.
Crop Science. 2011 51(3). p.1110
Use of single cross hybrids to measure heterosis for yield in diverse lucerne genotypes growing in a subtropical environment
Irwin J. A. G., Pepper P. M., Armour D., Mackie J. M., Lowe K. F.
Australian Journal of Agricultural Research. 2008 59(11). p.999
Phenotypic and genetic characterization of rhizobia associated with alfalfa in the Hokkaido and Ishigaki regions of Japan
Djedidi Salem, Yokoyama Tadashi, Tomooka Norihiko, Ohkama-Ohtsu Naoko, Risal Chandra Prasad, Abdelly Chedly, Sekimoto Hitoshi
Systematic and Applied Microbiology. 2011 34(6). p.453
Lucerne yield, water productivity and persistence under variable and restricted irrigation strategies
Rogers M. E., Lawson A. R., Kelly K. B.
Crop and Pasture Science. 2016 67(5). p.563
A genetic linkage map in autotetraploid lucerne adapted to northern Australia, and use of the map to identify DNA markers linked to resistance to Phytophthora medicaginis
Musial J. M., Aitken K. S., Mackie J. M., Irwin J. A. G.
Australian Journal of Agricultural Research. 2005 56(4). p.333
Sensitivity of Winter-Active Lucerne (Medicago sativa L.) to Different Grazing Regimes
Burnett Vivianne F., Hirth Jeff R., Butler Kym L., Mitchell Meredith L., Clark Steve G., Nie Zhongnan
Agronomy. 2018 8(7). p.124
Seasonal growth of lucerne (Medicago sativa) under rainfed conditions in south east Australia: Variation of experimental and commercial cultivars sourced from Australia and China
Burnett Viv, Butler Kym, Clark Steve, Nie Zhongnan, Zollinger Reto, Seymour Greg, Knight Matthew, Mitchell Meredith
Field Crops Research. 2022 277 p.108409
The Hybridization Barrier between Herbaceous Medicago sativa and Woody M. arborea Is Weakened by Reproductive Abnormalities in M. sativa Seed Parents
Bingham Edwin, Irwin John
Plants. 2023 12(4). p.962
Legume Seed Production Meeting Market Requirements and Economic Impacts
Boelt Birte, Julier Bernadette, Karagić Đura, Hampton John
Critical Reviews in Plant Sciences. 2015 34(1-3). p.412
Toxicity and bioaccumulation of two non-protein amino acids synthesised by cyanobacteria, β-N-Methylamino-L-alanine (BMAA) and 2,4-diaminobutyric acid (DAB), on a crop plant
Samardzic Kate, Steele Joel R., Violi Jake P., Colville Anne, Mitrovic Simon M., Rodgers Kenneth J.
Ecotoxicology and Environmental Safety. 2021 208 p.111515
New Insights into the Life History Changes Can Enhance Control Strategies for Therioaphis trifolii
Song Xianmei, Lee Seunghyun, Wang Xinpu, Bai Ming
Agronomy. 2022 12(12). p.3133
Using morphological traits to identify persistent lucernes for dryland agriculture in NSW, Australia
Boschma S. P., Williams R. W.
Australian Journal of Agricultural Research. 2008 59(1). p.69
Growth and phenological development patterns differ between seedling and regrowth lucerne crops (Medicago sativa L.)
Teixeira Edmar I., Brown Hamish E., Meenken Esther D., Moot Derrick J.
European Journal of Agronomy. 2011 35(1). p.47
Genetic diversity among alfalfa (Medicago sativa) cultivars coming from a breeding program, using SSR markers
Flajoulot Sandrine, Ronfort Joëlle, Baudouin Pierre, Barre Philippe, Huguet Thierry, Huyghe Christian, Julier Bernadette
Theoretical and Applied Genetics. 2005 111(7). p.1420
Breeding lucerne for persistence
Bouton J. H.
Crop and Pasture Science. 2012 63(2). p.95
Genetic improvement of lucerne for anthracnose (Colletotrichum trifolii) resistance
Irwin J. A. G., Aitken K. S., Mackie J. M., Musial J. M.
Australasian Plant Pathology. 2006 35(6). p.573
Heterosis in lucerne testcrosses with Medicago arborea introgressions and Omani landraces and their performance in synthetics
Irwin J. A. G., Armour D. J., Pepper P. M., Lowe K. F.
Crop and Pasture Science. 2010 61(6). p.450
A history of Australian pasture genetic resource collections
Smith R. W., Harris C. A., Cox K., McClements D., Clark S. G., Hossain Z., Humphries A. W.
Crop and Pasture Science. 2021 72(9). p.591
Identification of QTL for resistance and susceptibility to Stagonospora meliloti in autotetraploid lucerne
Musial J. M., Mackie J. M., Armour D. J., Phan H. T. T., Ellwood S. E., Aitken K. S., Irwin J. A. G.
Theoretical and Applied Genetics. 2007 114(8). p.1427

Committee on Publication Ethics


Abstract Export Citation Get Permission