Root dynamics and drought stress management in plants - An overview

被引:0
作者
Prakash, M. [1 ]
Sunilkumar, B. [1 ]
Bharathi, J. Kanmani [1 ]
Viswanathan, C. [2 ]
机构
[1] Annamalai Univ, Dept Genet & Plant Breeding, Fac Agr, Annamalainagar, Tamil Nadu, India
[2] ICAR Indian Agr Res Inst IARI, Div Plant Physiol, Nanaji Deshmukh Plant Phen Ctr, New Delhi, India
关键词
Abiotic stress; Climate change; Global warming; ORYZA-SATIVA L; SYSTEM ARCHITECTURE; UPLAND RICE; GROWTH; YIELD; WATER; DEEP; VULNERABILITY; CAVITATION; RESISTANCE;
D O I
暂无
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Drought is a predominant factor responsible for yield reduction throughout the world. The current scenario of climate change and global warming are further causing frequent and severe droughts, which emphasize the need to understand the response of plants to drought stress. Hence, it is imperative to develop a system wherein water utilization in agriculture is managed more efficiently. In this context, the plant root system which is in close association with soil assumes greater importance and they play an important role in plant growth and development by exploiting soil water and nutrients. Root traits such as root diameter, length, specific area, angle, length and density are considered useful traits for improving plant growth under drought conditions. This review on root dynamics under drought stress presented here provides readers with the latest information on root system architecture, genetics, physiology and molecular responses of roots under drought stress.
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页码:449 / 455
页数:7
相关论文
共 48 条
[31]   Rice leaf growth and water potential are resilient to evaporative demand and soil water deficit once the effects of root system are neutralized [J].
Parent, Boris ;
Suard, Benoit ;
Serraj, Rachid ;
Tardieu, Francois .
PLANT CELL AND ENVIRONMENT, 2010, 33 (08) :1256-1267
[32]   Evaluation of blackgram genotypes for drought tolerance based on root dynamics and gas exchange parameters [J].
Prakash, M. ;
Elangaimannan, R. ;
Sunilkumar, B. ;
Narayanan, G. Sathiya .
LEGUME RESEARCH, 2018, 41 (03) :384-391
[33]   Screening for drought tolerance in mungbean [J].
Prakash, M. ;
Sunilkumar, B. ;
Sathiyanarayanan, G. ;
Gokulakrishnan, J. .
LEGUME RESEARCH, 2017, 40 (03) :423-428
[34]   Response of millet and sorghum to a varying water supply around the primary and nodal roots [J].
Rostamza, M. ;
Richards, R. A. ;
Watt, M. .
ANNALS OF BOTANY, 2013, 112 (02) :439-446
[35]   Reactive oxygen species scavenging capacities of cotton (Gossypium hirsutum) cultivars under combined drought and heat induced oxidative stress [J].
Sekmen, Askim Hediye ;
Ozgur, Rengin ;
Uzilday, Baris ;
Turkan, Ismail .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2014, 99 :141-149
[36]   Determinate primary root growth as an adaptation to aridity in Cactaceae: towards an understanding of the evolution and genetic control of the trait [J].
Shishkova, Svetlana ;
Laura Las Penas, Maria ;
Napsucialy-Mendivil, Selene ;
Matvienko, Marta ;
Kozik, Alex ;
Montiel, Jesus ;
Patino, Anallely ;
Dubrovsky, Joseph G. .
ANNALS OF BOTANY, 2013, 112 (02) :239-252
[37]   Thresholds for chickpea leaf expansion and transpiration response to soil water deficit [J].
Soltani, A ;
Khooie, FR ;
Ghassemi-Golezani, K ;
Moghaddam, M .
FIELD CROPS RESEARCH, 2000, 68 (03) :205-210
[38]   Discovering consensus genomic regions in wheat for root-related traits by QTL meta-analysis [J].
Soriano, Jose Miguel ;
Alvaro, Fanny .
SCIENTIFIC REPORTS, 2019, 9
[39]   QTLs associated with root traits increase yield in upland rice when transferred through marker-assisted selection [J].
Steele, K. A. ;
Price, A. H. ;
Witcombe, J. R. ;
Shrestha, Roshi ;
Singh, B. N. ;
Gibbons, J. M. ;
Virk, D. S. .
THEORETICAL AND APPLIED GENETICS, 2013, 126 (01) :101-108
[40]   Dynamic root responses to drought and rewatering in two wheat (Triticum aestivum) genotypes [J].
Steinemann, Sebastian ;
Zeng, Zhanghui ;
McKay, Alan ;
Heuer, Sigrid ;
Langridge, Peter ;
Huang, Chun Y. .
PLANT AND SOIL, 2015, 391 (1-2) :139-152