The genetic variation in drought resistance in eighteen perennial ryegrass varieties and the underlying adaptation mechanisms

被引:0
作者
Dan Wang
Yuting Zhang
Chunyan Chen
Ruixin Chen
Xuechun Bai
Zhiquan Qiang
Juanjuan Fu
Tao Qin
机构
[1] Northwest A&F University,College of Grassland Agriculture
关键词
Turfgrass; Perennial ryegrass; Drought stress; Genetic diversity; Molecular mechanism;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
相关论文
共 457 条
[1]  
Buttler A(2019)Drought-induced decline of productivity in the dominant grassland species Soil Biol Biochem 132 47-57
[2]  
Mariotte P(2010) L. depends on soil type and prevailing climatic conditions Plant Physiol 154 1254-71
[3]  
Meisser M(2013)Molecular and physiological analysis of drought stress in Nature 503 350-1
[4]  
Guillaume T(2020) reveals early responses leading to acclimation in plant growth Sci China Life Sci 63 635-74
[5]  
Signarbieux C(2020)Climate science: the challenge of hot drought Mol Genet Genomics 295 475-89
[6]  
Vitra A(2020)Plant abiotic stress response and nutrient use efficiency BMC Plant Biol 20 520-87
[7]  
Preux S(2020)PacBio single-molecule long-read sequencing shed new light on the transcripts and splice isoforms of the perennial ryegrass Environ Exp Bot 179 104192-64
[8]  
Mercier G(2019)Natural variation of physiological traits, molecular markers, and chlorophyll catabolic genes associated with heat tolerance in perennial ryegrass accessions PLoS ONE 14 e0220518-4
[9]  
Quezada J(2016)Natural variation analysis of perennial ryegrass in response to abiotic stress highlights Hortic Res 3 16003-6
[10]  
Bragazza L(2010) as a positive regulator of heat stress Physiol Plant 139 375-54