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数量性状位点对亚洲野生稻落粒性的影响与离层形成的关系。

Effect of quantitative trait loci for seed shattering on abscission layer formation in Asian wild rice Oryza rufipogon.

机构信息

Laboratory of Plant Breeding, Graduate School of Agricultural Science, Kobe University , 1-1 Rokkodai, Nada, Kobe, Hyogo 657-8501 , Japan.

出版信息

Breed Sci. 2014 Sep;64(3):199-205. doi: 10.1270/jsbbs.64.199. Epub 2014 Sep 1.

Abstract

Asian cultivated rice Oryza sativa L. was domesticated from its wild ancestor, O. rufipogon. During domestication, the cultivated rice lost its seed-shattering behaviour. Previous studies have shown that two major quantitative trait loci (QTLs; qSH1 and sh4) are responsible for the seed-shattering degree. Here, we produced introgression lines carrying non-functional alleles from O. sativa 'Nipponbare' at the two major QTLs in the genetic background of wild rice O. rufipogon W630, and examined the effects of the two QTLs on seed shattering and abscission layer formation. The introgression lines, with Nipponbare alleles at either or both loci, showed complete or partial abscission layer formation, respectively, indicating that other unknown loci might be involved in enhancing seed shattering in wild rice. We detected a single QTL named qSH3 regulating seed-shattering degree using an F2 population between Nipponbare and the introgression line carrying Nipponbare alleles at the two QTLs. Although we generated an introgression line for qSH3 alone, no effects on seed shattering were observed. However, a significant effect on seed-shattering degree was observed for the introgression line carrying Nipponbare alleles at qSH3 and the two QTLs, suggesting an important role of qSH3 on seed shattering in coordination with the two QTLs.

摘要

亚洲栽培稻 Oryza sativa L. 是由其野生祖先 O. rufipogon 驯化而来的。在驯化过程中,栽培稻失去了其种子爆裂的特性。先前的研究表明,两个主要的数量性状位点(QTL;qSH1 和 sh4)负责种子爆裂程度。在这里,我们在野生稻 O. rufipogon W630 的遗传背景下,产生了携带非功能等位基因的导入系,这些等位基因来自栽培稻 'Nipponbare' 的两个主要 QTL,并研究了这两个 QTL 对种子爆裂和离层形成的影响。导入系在两个或其中一个位点携带 Nipponbare 等位基因,分别表现出完全或部分离层形成,这表明其他未知的基因座可能参与增强野生稻的种子爆裂。我们使用 Nipponbare 和携带两个 QTL 的 Nipponbare 等位基因的导入系之间的 F2 群体检测到一个调节种子爆裂程度的单一 QTL,命名为 qSH3。尽管我们生成了一个仅携带 qSH3 的导入系,但没有观察到对种子爆裂的影响。然而,在携带 qSH3 和两个 QTL 的 Nipponbare 等位基因的导入系中观察到对种子爆裂程度的显著影响,这表明 qSH3 在与两个 QTL 协调作用下对种子爆裂起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7af/4154608/0bdd8ae33747/64_199_1.jpg

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