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全基因组关联分析和分化分析鉴定了日本水稻育成品种中与粒质性状相关的关键基因。

Integrated genome-wide differentiation and association analyses identify causal genes underlying breeding-selected grain quality traits in japonica rice.

机构信息

Institute of Fermentation Sciences, Fukushima University, Fukushima 960-1248, Japan.

Bioscience and Biotechnology Center, Nagoya University, Nagoya, Aichi 464-8601, Japan; Food Resources Education and Research Center, Graduate School of Agricultural Science, Kobe University, Uzurano, Kasai, Hyogo 675-2103, Japan.

出版信息

Mol Plant. 2023 Sep 4;16(9):1460-1477. doi: 10.1016/j.molp.2023.09.002. Epub 2023 Sep 9.

Abstract

Improving grain quality is a primary objective in contemporary rice breeding. Japanese modern rice breeding has developed two different types of rice, eating and sake-brewing rice, with different grain characteristics, indicating the selection of variant gene alleles during the breeding process. Given the critical importance of promptly and efficiently identifying genes selected in past breeding for future molecular breeding, we conducted genome scans for divergence, genome-wide association studies, and map-based cloning. Consequently, we successfully identified two genes, OsMnS and OsWOX9D, both contributing to rice grain traits. OsMnS encodes a mannan synthase that increases the white core frequency in the endosperm, a desirable trait for sake brewing but decreases the grain appearance quality. OsWOX9D encodes a grass-specific homeobox-containing transcription factor, which enhances grain width for better sake brewing. Furthermore, haplotype analysis revealed that their defective alleles were selected in East Asia, but not Europe, during modern improvement. In addition, our analyses indicate that a reduction in grain mannan content during African rice domestication may also be caused a defective OsMnS allele due to breeding selection. This study not only reveals the delicate balance between grain appearance quality and nutrition in rice but also provides a new strategy for isolating causal genes underlying complex traits, based on the concept of "breeding-assisted genomics" in plants.

摘要

提高粮食质量是当代水稻育种的主要目标。日本现代水稻育种已经培育出两种不同类型的水稻,食用稻和酿造用稻,具有不同的谷物特性,这表明在育种过程中选择了变异基因等位基因。鉴于及时有效地鉴定过去育种中选择的基因对未来分子育种的重要性,我们进行了基因组扫描、全基因组关联研究和基于图谱的克隆。因此,我们成功地鉴定了两个基因,OsMnS 和 OsWOX9D,它们都与水稻粒性状有关。OsMnS 编码甘露聚糖合酶,增加了胚乳中的白芯频率,这是酿造清酒的理想特征,但降低了谷物外观品质。OsWOX9D 编码一个草特异性同源盒包含转录因子,它增加了粒宽,有利于酿造清酒。此外,单倍型分析表明,它们的缺陷等位基因在东亚而不是欧洲的现代改良中被选择。此外,我们的分析表明,在非洲稻驯化过程中,由于选育,稻米甘露聚糖含量的减少也可能是由于 OsMnS 等位基因的缺陷所致。这项研究不仅揭示了水稻粒外观品质和营养之间的微妙平衡,而且还为基于植物“育种辅助基因组学”的复杂性状的因果基因分离提供了一种新策略。

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