首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Rare allele of OsPPKL1 associated with grain length causes extra-large grain and a significant yield increase in rice
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Rare allele of OsPPKL1 associated with grain length causes extra-large grain and a significant yield increase in rice

机译:OsPPKL1的稀有等位基因与谷粒长度相关导致超大谷粒水稻产量显着增加

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摘要

Grain size and shape are important components determining rice grain yield, and they are controlled by quantitative trait loci (QTLs). Here, we report the cloning and functional characterization of a major grain length QTL, qGL3, which encodes a putative protein phosphatase with Kelch-like repeat domain (OsPPKL1). We found a rare allele qgl3 that leads to a long grain phenotype by an aspartate-to-glutamate transition in a conserved AVLDT motif of the second Kelch domain in OsPPKL1. The rice genome has other two OsPPKL1 homologs, OsPPKL2 and OsPPKL3. Transgenic studies showed that OsPPKL1 and OsPPKL3 function as negative regulators of grain length, whereas OsPPKL2 as a positive regulator. The Kelch domains are essential for the OsPPKL1 biological function. Field trials showed that the application of the qgl3 allele could significantly increase grain yield in both inbred and hybrid rice varieties, due to its favorable effect on grain length, filling, and weight.
机译:谷物的大小和形状是决定水稻籽粒产量的重要组成部分,它们受数量性状基因座(QTL)的控制。在这里,我们报告的主要粒长QTL,qGL3的克隆和功能表征,其编码具有Kelch样重复结构域(OsPPKL1)的假定蛋白质磷酸酶。我们发现了一个罕见的等位基因qgl3,该基因在OsPPKL1的第二个Kelch域的保守AVLDT基序中通过天冬氨酸向谷氨酸的转变而导致长粒表型。水稻基因组具有其他两个OsPPKL1同源物OsPPKL2和OsPPKL3。转基因研究表明,OsPPKL1和OsPPKL3充当晶粒长度的负调控因子,而OsPPKL2充当晶粒正调控因子。 Kelch域对于OsPPKL1的生物学功能至关重要。田间试验表明,qgl3等位基因的应用对自交和杂交水稻品种均具有显着的增产作用,因为它对粒长,充实和重量具有有利影响。

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