Gad Mahmoud, Chao Hongbo, Li Huaixin, Zhao Weiguo, Lu Guangyuan, Li Maoteng
Department of Biotechnology, Collage of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.
School of Agricultural Sciences, Zhengzhou University, Zhengzhou, China.
Front Plant Sci. 2021 Feb 9;11:629970. doi: 10.3389/fpls.2020.629970. eCollection 2020.
Drought stress is one of the most environmental abiotic stresses affecting seed germination and crop growth. In the present study, the genetic characteristics of seed germination under drought stress in a double haploid population were analyzed. Five germination-related indexes, including germination percentage (GP), root length (RL), shoot length (SL), fresh weight (FW), and root-to-shoot length ratio (R/S) under control and drought stress, were calculated, and the drought stress index (DSI), including DSI-GP, DSI-RL, DSI-SL, DSI-FW, and DSI-R/S, was determined using the quantitative trait loci (QTLs) analysis based on high-density genetic linkage map. The phenotypic analysis indicated that the R/S is an effective morphological trait in the determination of drought tolerance in the seedling stage. Thirty-nine identified QTLs were observed for these traits and then integrated into 36 consensus QTLs, in which 18 QTLs were found to affect the DSI of four traits (GP, RL, SL, and R/S). Based on the co-linearity between genetic and physical maps of , 256 candidate genes were detected, and 128 genes have single-nucleotidepolymorphisms/insertion-deletion (SNP/InDel) variations between two parents, some of which were associated with the drought stress tolerance (for example, , , and ). The present results laid insights into drought tolerance and its genetic bases in .
干旱胁迫是影响种子萌发和作物生长的最主要环境非生物胁迫之一。在本研究中,分析了一个双单倍体群体在干旱胁迫下种子萌发的遗传特性。计算了对照和干旱胁迫下的五个与萌发相关的指标,包括发芽率(GP)、根长(RL)、苗长(SL)、鲜重(FW)和根冠比(R/S),并基于高密度遗传连锁图谱,通过数量性状位点(QTL)分析确定了干旱胁迫指数(DSI),包括DSI-GP、DSI-RL、DSI-SL、DSI-FW和DSI-R/S。表型分析表明,R/S是确定苗期耐旱性的一个有效形态性状。针对这些性状共鉴定出39个QTL,然后整合为36个一致性QTL,其中18个QTL影响四个性状(GP、RL、SL和R/S)的DSI。基于[具体物种]遗传图谱与物理图谱之间的共线性,检测到256个候选基因,其中128个基因在两个亲本之间存在单核苷酸多态性/插入缺失(SNP/InDel)变异,其中一些与耐旱性相关(例如,[列举相关基因])。本研究结果为[具体物种]的耐旱性及其遗传基础提供了见解。