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QTL controlling grain filling under terminal drought stress in a set of wild barley introgression lines

机译:一套野生大麦渗水系的QTL控制终端干旱胁迫下的籽粒灌浆

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摘要

Drought is a major abiotic stress impeding the yield of cereal crops globally. Particularly in Mediterranean environments, water becomes a limiting factor during the reproductive developmental stage, causing yield losses. The wild progenitor of cultivated barley Hordeum vulgare ssp spontaneum (Hsp) is a potentially useful source of drought tolerance alleles. Wild barley introgression lines like the S42IL library may facilitate the introduction of favorable exotic alleles into breeding material. The complete set of 83 S42ILs was genotyped with the barley 9k iSelect platform in order to complete genetic information obtained in previous studies. The new map comprises 2,487 SNPs, spanning 989.8 cM and covering 94.5% of the Hsp genome. Extent and positions of introgressions were confirmed and new information for ten additional S42ILs was collected. A subset of 49 S42ILs was evaluated for drought response in four greenhouse experiments. Plants were grown under well-watered conditions until ten days post anthesis. Subsequently drought treatment was applied by reducing the available water. Several morphological and harvest parameters were evaluated. Under drought treatment, trait performance was reduced. However, there was no interaction effect between genotype and treatment, indicating that genotypes, which performed best under control treatment, also performed best under drought treatment. In total, 40 QTL for seven traits were detected in this study. For instance, favorable Hsp effects were found for thousand grain weight (TGW) and number of grains per ear under drought stress. In particular, line S42IL-121 is a promising candidate for breeding improved malting cultivars, displaying a TGW, which was increased by 17% under terminal drought stress due to the presence of an unknown wild barley QTL allele on chromosome 4H. The introgression line showed a similar advantage in previous field experiments and in greenhouse experiments under early drought stress. We, thus, recommend using S42IL-121 in barley breeding programs to enhance terminal drought tolerance.
机译:干旱是一种主要的非生物胁迫,阻碍了全球谷物作物的产量。特别是在地中海环境中,水成为生殖发育阶段的限制因素,导致产量损失。种植的大麦大麦ssp spontaneum(Hsp)的野生祖细胞是抗旱等位基因的潜在有用来源。像S42IL文库这样的野生大麦基因渗入系可能有助于将有利的外来等位基因引入育种材料。用大麦9k iSelect平台对83个S42ILs进行了基因分型,以完成先前研究中获得的遗传信息。新的图谱包含2487个SNP,跨度为989.8 cM,涵盖了Hsp基因组的94.5%。确认了渗入的程度和位置,并收集了另外十个S42IL的新信息。在四个温室实验中评估了49个S42ILs的子集的干旱响应。使植物在充分浇水的条件下生长直至花后十天。随后通过减少可用水量进行干旱处理。评价了几个形态学和收获参数。在干旱处理下,性状表现降低。然而,基因型与处理之间没有交互作用,表明在对照处理下表现最佳的基因型在干旱处理下也表现最佳。在这项研究中,总共检测到40个QTL的七个性状。例如,在干旱胁迫下,千粒重(TGW)和每穗谷物数发现了良好的Hsp效应。特别是,品系S42IL-121是育种改良麦芽品种的有前途的候选者,显示出TGW,由于在4H染色体上存在未知的野生大麦QTL等位基因,在终端干旱胁迫下其TGW增加了17%。在先前的田间试验和在早期干旱胁迫下的温室试验中,渗入系显示出类似的优势。因此,我们建议在大麦育种计划中使用S42IL-121,以增强最终的耐旱性。

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