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揭示大麦胚的遗传结构:数量性状基因座定位、候选基因鉴定及其与粒重和早期活力的关系。

Unveiling the genetic architecture of barley embryo: QTL mapping, candidate genes identification and its relationship with kernel size and early vigour.

作者信息

Chen Xiaoxia, Su Zhouyang, Zheng Yunpu, Li Cong, Ma Jun, Ma Jian, Shi Fusun, Hu Haiyan, Liu Chunji, Zheng Zhi

机构信息

CSIRO Agriculture and Food, 2 Clunies Ross Street, Acton, ACT, 2601, Australia.

Chendu Institute of Biology, Chinese Academy of Sciences, Chengdu, 610213, China.

出版信息

Theor Appl Genet. 2025 Jan 23;138(1):32. doi: 10.1007/s00122-025-04817-y.

Abstract

In this first QTL mapping study of embryo size in barley, novel and stable QTL were identified and candidate genes underlying a significant locus independent of kernel size were identified based on orthologous analysis and comparison of the whole-genome assemblies for both parental genotypes of the mapping population. Embryo, also known as germ, in cereal grains plays a crucial role in plant development. The embryo accounts for only a small portion of grain weight but it is rich in nutrients. Larger embryo translates to a more nutritious grain and larger store of energy reserves, which can benefit seed germination and seedling establishment. However, reports on quantitative trait loci (QTL) affecting embryo size in barley is rare. To understand the genetic basis of embryo size in barley, a population consisting of 201 F9 recombination inbred lines (RILs) was assessed in four environments. Three regions affecting various characteristics of embryo size including embryo length (EL), embryo width (EW) and embryo area (EA) were consistently identified. They located on chromosomes 2H, 4H and 7H, respectively. Among them, the QTL on 7H was not significantly affected by kernel size. Phenotypic variances explained by this QTL for EL, EW and EA were 11.8%, 9.3% and 12.7%, respectively. Taken advantage of the available genomic assemblies of the two parental genotypes, candidate genes for this locus on 7H were identified. In addition, significant correlations between embryo size and early vigour and kernel traits were detected. To our knowledge, the present study is for the first time reporting QTL conferring embryo size by directly measuring the characteristics as quantitative trait in barley, which would broaden our understanding of the genetic basis of barley embryo size and offer valuable targets for future breeding programmes.

摘要

在这项关于大麦胚大小的首次数量性状基因座(QTL)定位研究中,通过对作图群体两个亲本基因型的全基因组组装进行直系同源分析和比较,鉴定出了新的、稳定的QTL,并确定了一个与粒大小无关的显著位点的候选基因。谷物中的胚,也称为胚芽,在植物发育中起着关键作用。胚仅占粒重的一小部分,但富含营养。较大的胚意味着谷物更有营养且能量储备更多,这有利于种子萌发和幼苗建立。然而,关于影响大麦胚大小的数量性状基因座(QTL)的报道很少。为了解大麦胚大小的遗传基础,在四个环境中对由201个F9重组自交系(RIL)组成的群体进行了评估。一致鉴定出三个影响胚大小各种特征的区域,包括胚长(EL)、胚宽(EW)和胚面积(EA)。它们分别位于2H、4H和7H染色体上。其中,7H染色体上的QTL不受粒大小的显著影响。该QTL对EL、EW和EA的表型变异解释率分别为11.8%、9.3%和12.7%。利用两个亲本基因型的可用基因组组装,鉴定出了7H染色体上该位点的候选基因。此外,还检测到胚大小与早期活力和粒性状之间存在显著相关性。据我们所知,本研究首次通过直接将这些特征作为数量性状进行测量来报道赋予大麦胚大小的QTL,这将拓宽我们对大麦胚大小遗传基础的理解,并为未来的育种计划提供有价值的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b55b/11754356/a35081a9a47f/122_2025_4817_Fig1_HTML.jpg

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