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精细定位和鉴定野生稻(Oryza rufipogon Griff.)中控制粒长的新基因座 qGL12.2。

Fine mapping and identification of a novel locus qGL12.2 control grain length in wild rice (Oryza rufipogon Griff.).

机构信息

Coconut Research Institute, Chinese Academy of Tropical Agricultural Science, Wenchang, 571339, China.

Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

出版信息

Theor Appl Genet. 2018 Jul;131(7):1497-1508. doi: 10.1007/s00122-018-3093-7. Epub 2018 Apr 19.

Abstract

A wild rice QTL qGL12.2 for grain length was fine mapped to an 82-kb interval in chromosome 12 containing six candidate genes and none was reported previously. Grain length is an important trait for yield and commercial value in rice. Wild rice seeds have a very slender shape and have many desirable genes that have been lost in cultivated rice during domestication. In this study, we identified a quantitative trait locus, qGL12.2, which controls grain length in wild rice. First, a wild rice chromosome segment substitution line, CSSL41, was selected that has longer glume and grains than does the Oryza sativa indica cultivar, 9311. Next, an F population was constructed from a cross between CSSL41 and 9311. Using the next-generation sequencing combined with bulked-segregant analysis and F recombinants analysis, qGL12.2 was finally fine mapped to an 82-kb interval in chromosome 12. Six candidate genes were found, and no reported grain length genes were found in this interval. Using scanning electron microscopy, we found that CSSL41 cells are significantly longer than those of 9311, but there is no difference in cell widths. These data suggest that qGL12.2 is a novel gene that controls grain cell length in wild rice. Our study provides a new genetic resource for rice breeding and a starting point for functional characterization of the wild rice GL gene.

摘要

一个控制野生稻粒长的数量性状位点 qGL12.2 被精细定位到 12 号染色体上的 82kb 区间内,该区间包含 6 个候选基因,此前没有报道过。粒长是水稻产量和商业价值的一个重要性状。野生稻种子形状非常细长,有许多在栽培稻驯化过程中丢失的理想基因。在这项研究中,我们鉴定了一个控制野生稻粒长的数量性状位点 qGL12.2。首先,选择了一个具有更长颖壳和粒长的野生稻染色体片段代换系 CSSL41,它比籼稻品种 9311 更长。接下来,通过 CSSL41 和 9311 之间的杂交构建了一个 F1 群体。利用下一代测序结合群体分离分析和 F 重组体分析,最终将 qGL12.2 精细定位到 12 号染色体的 82kb 区间内。发现了 6 个候选基因,而在这个区间内没有发现报道过的粒长基因。通过扫描电子显微镜观察,我们发现 CSSL41 细胞明显比 9311 细胞长,但细胞宽度没有差异。这些数据表明,qGL12.2 是一个控制野生稻粒细胞长度的新基因。我们的研究为水稻育种提供了一个新的遗传资源,也为野生稻 GL 基因的功能特征提供了一个起点。

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