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Genetic variability of root growth in wheat (Triticum aestivum L.)

L O'Brien
30(4) pp.587 - 595


49 articles found in Crossref database.

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Ruiz Magdalena, Giraldo Patricia, González Juan M.
Euphytica. 2018 214(3).
Drought Tolerance in Higher Plants: Genetical, Physiological and Molecular Biological Analysis (1996)
Monneveux P., Belhassen E.
Root architectural responses of wheat cultivars to localised phosphorus application are phenotypically similar
Rabbi Sheikh M.F., Guppy Chris N., Tighe Matthew K., Flavel Richard J., Young Iain M.
Journal of Plant Nutrition and Soil Science. 2017 180(2). p.169
Water dynamics in the soil-plant-atmosphere system
Ritchie Joe T.
Plant and Soil. 1981 58(1-3). p.81
Dosage effect of the short arm of chromosome 1 of rye on root morphology and anatomy in bread wheat
Sharma Sundrish, DeMason Darleen A., Ehdaie Bahman, Lukaszewski Adam J., Waines J. Giles
Journal of Experimental Botany. 2010 61(10). p.2623
Comparisons with wheat reveal root anatomical and histochemical constraints of rice under water-deficit stress
Ouyang Wenjing, Yin Xinyou, Yang Jianchang, Struik Paul C.
Plant and Soil. 2020 452(1-2). p.547
Genotypic variation in seedling root architectural traits and implications for drought adaptation in wheat (Triticum aestivum L.)
Manschadi Ahmad M., Hammer Graeme L., Christopher John T., deVoil Peter
Plant and Soil. 2008 303(1-2). p.115
Large root systems: are they useful in adapting wheat to dry environments?
Palta Jairo A., Chen Xing, Milroy Stephen P., Rebetzke Greg J., Dreccer M. Fernanda, Watt Michelle
Functional Plant Biology. 2011 38(5). p.347
Modelling the growth and water uptake function of plant root systems: a review
Wang Enli, Smith Chris J.
Australian Journal of Agricultural Research. 2004 55(5). p.501
QTLs for root traits at mid-tillering and for root and shoot traits at maturity in a RIL population of spring bread wheat grown under well-watered conditions
Ehdaie B., Mohammadi S. A., Nouraein M.
Euphytica. 2016 211(1). p.17
Roles of Morphology, Anatomy, and Aquaporins in Determining Contrasting Hydraulic Behavior of Roots  
Bramley Helen, Turner Neil C., Turner David W., Tyerman Stephen D.
Plant Physiology. 2009 150(1). p.348
Cotton root and shoot responses to subsurface drip irrigation and partial wetting of the upper soil profile
Plaut Z., Carmi A., Grava A.
Irrigation Science. 1996 16(3). p.107
Associations between plant production and some physiological components of drought resistance in wheat
BLUM A., MAYER J., GOZLAN G.
Plant, Cell and Environment. 1983 6(3). p.219
Integrating root architecture and physiological approaches for improving drought tolerance in common bean (Phaseolus vulgaris L.)
Sofi P. A., Rehman Khalid, Gull Musharib, Kumari J., Djanaguiraman M., Prasad P. V. V.
Plant Physiology Reports. 2021 26(1). p.4
A rapid, controlled-environment seedling root screen for wheat correlates well with rooting depths at vegetative, but not reproductive, stages at two field sites
Watt M., Moosavi S., Cunningham S. C., Kirkegaard J. A., Rebetzke G. J., Richards R. A.
Annals of Botany. 2013 112(2). p.447
The root of the problem: diverse vulnerability to xylem cavitation found within the root system of wheat plants
Harrison Day Beatrice L., Johnson Kate M., Tonet Vanessa, Bourbia Ibrahim, Blackman Chris, Brodribb Timothy J.
New Phytologist. 2023 239(4). p.1239
Limitations to Efficient Water Use in Crop Production (2015)
Jordan W. R.
Handbook of Plant and Crop Stress, Second Edition (1999)
Kumar Joshi Arun
Regulation of Sixth Seminal Root Formation by Jasmonate in Triticum aestivum L.
Pigolev Alexey, Miroshnichenko Dmitry, Dolgov Sergey, Savchenko Tatyana
Plants. 2021 10(2). p.219
Molecular and Morpho-Agronomical Characterization of Root Architecture at Seedling and Reproductive Stages for Drought Tolerance in Wheat
Tomar Ram Sewak Singh, Tiwari Sushma, Vinod , Naik Bhojaraja K., Chand Suresh, Deshmukh Rupesh, Mallick Niharika, Singh Sanjay, Singh Nagendra Kumar, Tomar S. M. S., Yadav Rattan Singh
PLOS ONE. 2016 11(6). p.e0156528
Plant Breeding Reviews (2012)
Gupta P. K., Balyan H. S., Gahlaut V., Kulwal P. L.
The role of root architectural traits in adaptation of wheat to water-limited environments
Manschadi Ahmad M., Christopher John, deVoil Peter, Hammer Graeme L.
Functional Plant Biology. 2006 33(9). p.823
Genetic differences in plant response to soil nutrient stress
Lafever Howard N.
Journal of Plant Nutrition. 1981 4(2). p.89
Benefits of increased soil exploration by wheat roots
Lilley J.M., Kirkegaard J.A.
Field Crops Research. 2011 122(2). p.118
Advances in Agronomy Volume 36 (1983)
Donald C.M., Hamblin J.
Advances in Agronomy Volume 38 (1986)
Hamblin Ann P.
Phosphorus management is key to effective deployment of root ideotypes in complex soil environments
van der Bom Frederik J. T., Williams Alwyn, Borrell Andrew K., Raymond Nelly, Bell Michael J.
Plant and Soil. 2023 489(1-2). p.323
Phenotyping and Genetic Analysis of Root and Shoot Traits of Recombinant Inbred Lines of Bread Wheat Under Well-Watered Conditions
Ehdaie Bahman, Maheepala Dinusha C., Bektaş Harun, Waines J. Giles
Journal of Crop Improvement. 2014 28(6). p.834
Genetic Analysis of Platform-Phenotyped Root System Architecture of Bread and Durum Wheat in Relation to Agronomic Traits
Colombo Michel, Roumet Pierre, Salon Christophe, Jeudy Christian, Lamboeuf Mickael, Lafarge Stéphane, Dumas Anne-Valérie, Dubreuil Pierre, Ngo Wa, Derepas Brice, Beauchêne Katia, Allard Vincent, Le Gouis Jacques, Rincent Renaud
Frontiers in Plant Science. 2022 13
Chemical and physical influence of sodic soils on the coleoptile length and root growth angle of wheat genotypes
Anzooman Monia, Christopher Jack, Dang Yash P, Taylor Julian, Menzies Neal W, Kopittke Peter M
Annals of Botany. 2019 124(6). p.1043
Farming system context drives the value of deep wheat roots in semi-arid environments
Lilley Julianne M., Kirkegaard John A.
Journal of Experimental Botany. 2016 67(12). p.3665
Accuracy of root modelling and its impact on simulated wheat yield and carbon cycling in soil
Zhao Zhigan, Wang Enli, Xue Lihua, Wu Yongcheng, Zang Hecang, Qin Xin, Zhang Jingting, Wang Zhimin
Field Crops Research. 2014 165 p.99
Genotypic differences in deep water extraction associated with drought tolerance in wheat
Ober Eric S., Werner Peter, Flatman Edward, Angus William J., Jack Peter, Smith-Reeve Lucy, Tapsell Chris
Functional Plant Biology. 2014 41(11). p.1078
Soil Water and Nitrogen in Mediterranean-type Environments (1981)
Ritchie Joe T.
The diversity of drought adaptation in the wide
Monneveux P., Belhassen E.
Plant Growth Regulation. 1996 20(2). p.85
Mechanistic understanding of lodging in spring wheat (Triticum aestivum): An Indian perspective
BAINSLA NARESH KUMAR, YADAV RAJBIR, SHARMA RAM KUMAR, SHARMA AMBRISH, GAIKWAD KIRAN B, KUMAR AMIT, SINGH VIKRAM, VYAS PRITESH, SHARMA AMBIKA
The Indian Journal of Agricultural Sciences. 2018 88(10). p.1483
Minirhizotron Observation Tubes: Methods and Applications for Measuring Rhizosphere Dynamics (2015)
Box James E., Johnson Jerry W.
Physiology and Determination of Crop Yield (2015)
Gregory Peter J.
Improving process-based crop models to better capture genotype×environment×management interactions
Wang Enli, Brown Hamish E, Rebetzke Greg J, Zhao Zhigan, Zheng Bangyou, Chapman Scott C
Journal of Experimental Botany. 2019 70(9). p.2389
Plant Breeding (1993)
Clarke J. M., McCaig T. N.
Fusarium pseudograminearum and F. culmorum affect the root system architecture of bread wheat
Saad Ahmed, Christopher Jack, Martin Anke, McDonald Stephen, Percy Cassandra
The Crop Journal. 2023 11(1). p.316
Growth and development of seminal and crown root systems in N-limited barley, and their contributions to nitrate acquisition during vegetative and generative growth
Mattsson M., Lundborg T., Larsson C.-M.
Plant and Soil. 1993 151(2). p.239
Associations between plant production and some physiological components of drought resistance in wheat
BLUM A., MAYER J., GOZLAN G.
Plant, Cell & Environment. 1983 6(3). p.219
A comparison of the dynamics of root growth and biomass partitioning in wild oat (Avena fatua L.) and spring wheat
BINGHAM I. J.
Weed Research. 1995 35(1). p.57
Physiological traits and cereal germplasm for sustainable agricultural systems
Richards R. A., Watt M., Rebetzke G. J.
Euphytica. 2007 154(3). p.409
Cereal Production (1984)
Cannell R.Q.
The LATERAL ROOT DENSITY gene regulates root growth during water stress in wheat
Placido Dante F., Sandhu Jaspreet, Sato Shirley J., Nersesian Natalya, Quach Truyen, Clemente Thomas E., Staswick Paul E., Walia Harkamal
Plant Biotechnology Journal. 2020 18(9). p.1955
Durum Wheat Seminal Root Traits within Modern and Landrace Germplasm in Algeria
Boudiar Ridha, González Juan M., Mekhlouf Abdelhamid, Casas Ana M., Igartua Ernesto
Agronomy. 2020 10(5). p.713
Plant Roots (2002)
Manske Günther, Vlek Paul

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