Xue Wentao, Yan Jun, Zhao Gang, Jiang Yan, Cheng Jianping, Cattivelli Luigi, Tondelli Alessandro
College of Life Sciences, Guizhou University, Guiyang, Guizhou, 550025, China.
School of Pharmacy and Bioengineering, Chengdu University, Chengdu, Sichuan, 610106, China.
BMC Genet. 2017 Aug 22;18(1):79. doi: 10.1186/s12863-017-0545-z.
Seedling establishment is a crucial and vulnerable stage in the crop life cycle which determines further plant growth. While many studies are available on salt tolerance at the vegetative stage, the mechanisms and genetic bases of salt tolerance during seedling establishment have been poorly investigated. Here, a novel and accurate phenotyping protocol was applied to characterize the response of seedlings to salt stress in two barley cultivars (Nure and Tremois) and their double-haploid population.
The combined phenotypic data and existing genetic map led to the identification of a new major QTL for root elongation under salt stress on chromosome 7HS, with the parent Nure carrying the favourable allele. Gene-based markers were developed from the rice syntenic genomic region to restrict the QTL interval to Bin2.1 of barley chromosome 7HS. Furthermore, doubled haploid lines with contrasting responses to salt stress revealed different root morphological responses to stress, with the susceptible genotypes exhibiting an overall reduction in root length and volume but an increase in root diameter and root hair density.
Salt tolerance at the seedling stage was studied in barley through a comprehensive phenotyping protocol that allowed the detection of a new major QTL on chromosome 7HS.
幼苗建立是作物生命周期中一个关键且脆弱的阶段,它决定了植株的进一步生长。虽然关于营养生长阶段耐盐性的研究很多,但对幼苗建立过程中耐盐性的机制和遗传基础却研究甚少。在此,一种新颖且准确的表型分析方案被应用于表征两个大麦品种(纽尔和特雷莫伊斯)及其双单倍体群体的幼苗对盐胁迫的响应。
结合表型数据和现有的遗传图谱,在7HS染色体上鉴定出一个新的盐胁迫下根系伸长的主要QTL,亲本纽尔携带有利等位基因。基于水稻共线基因组区域开发了基因标记,将QTL区间限定在大麦7HS染色体的Bin2.1。此外,对盐胁迫反应不同的双单倍体系显示出对胁迫的不同根系形态反应,敏感基因型的根长度和体积总体减少,但根直径和根毛密度增加。
通过全面的表型分析方案研究了大麦幼苗期的耐盐性,该方案能够检测到7HS染色体上一个新的主要QTL。