The mechanism of alfalfa (Medicago sativa L.) response to abiotic stress

被引:0
作者
Yuguang Song
Jiao Lv
Zongqi Ma
Wei Dong
机构
[1] Qufu Normal University,School of Life Sciences
来源
Plant Growth Regulation | 2019年 / 89卷
关键词
Alfalfa; Abiotic stress; Genetic variation; Regulation mechanism; Epigenetic modification;
D O I
暂无
中图分类号
学科分类号
摘要
As plants are sessile, they cannot escape exposure to multiple environmental stresses. Over the course of evolution, a range of morphological and physiological adaptations has been developed in order to maximize their chances of survival. Alfalfa (Medicago sativa L.) is the most extensively cultivated forage legume in the world, while its yield and growing range are limited by abiotic stress. Physiology, genetic and molecular level studies have revealed complex regulatory processes that coordinate stress adaptation and tolerance, which are integrated at various levels. This review summarizes the current body of knowledge regarding the physiological, transcriptional, metabolic and genetic/epigenetic basis of the alfalfa stress response, along with the key signal transduction processes involved. Gathering the knowledge together will contribute to a more systematic understanding of the adaption to stress response in alfalfa, as well as provide guidance towards improving the crop through breeding.
引用
收藏
页码:239 / 249
页数:10
相关论文
共 347 条
[11]  
Molero G(2015)) by silencing Int J Mol Sci 16 16104-1746
[12]  
Erice G(2000) as a promising tool for alfalfa improvement Crop Sci 40 1387-57
[13]  
Arshad M(2012) affects global gene expression and promotes root regenerative capacity and nitrogen fixation activity in alfalfa Mol Biol Rep 39 6067-5534
[14]  
Feyissa BA(2012)Putrescine aminopropyl transferase is responsible for biosynthesis of spermidine, spermine, and multiple uncommon polyamines in osmotic stress-tolerant alfalfa Plant Cell Rep 31 1737-724
[15]  
Amyot L(2011)Isolation and functional characterization of a J Exp Bot 62 39-1336
[16]  
Aung B(2012) L. gene, J Exp Bot 63 5521-120
[17]  
Gruber MY(2013)Co-expression of tonoplast cation/H J Hazard Mater 260 715-20
[18]  
Amyot L(2013) antiporter and H J Plant Physiol 170 1328-675
[19]  
Aung B(2017)-pyrophosphatase from xerophyte J Proteomics 152 109-639
[20]  
Gao R(2012) improves Plant Cell 24 15-1050