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GS6.1 控制水稻的核大小和植株结构。

GS6.1 controls kernel size and plant architecture in rice.

机构信息

Guangdong Provincial Key Laboratory of Plant Molecular Breeding, State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou, 510642, Guangdong, China.

Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, 510630, Guangdong, China.

出版信息

Planta. 2023 Jul 11;258(2):42. doi: 10.1007/s00425-023-04201-4.

Abstract

A novel QTL GS6.1 increases yield per plant by controlling kernel size, plant architecture, and kernel filling in rice. Kernel size and plant architecture are critical agronomic traits that greatly influence kernel yield in rice. Using the single-segment substitution lines (SSSLs) with an indica cultivar Huajingxian74 as a recipient parent and American Jasmine as a donor parent, we identified a novel quantitative trait locus (QTL), named GS6.1. Near isogenic line-GS6.1 (NIL-GS6.1) produces long and narrow kernels by regulating cell length and width in the spikelet hulls, thus increasing the 1000-kernel weight. Compared with the control, the plant height, panicles per plant, panicle length, kernels per plant, secondary branches per panicle, and yield per plant of NIL-GS6.1 are increased. In addition, GS6.1 regulates the kernel filling rate. GS6.1 controls kernel size by modulating the transcription levels of part of EXPANSINs, kernel filling-related genes, and kernel size-related genes. These results indicate that GS6.1 might be beneficial for improving kernel yield and plant architecture in rice breeding by molecular design.

摘要

一个名为 GS6.1 的新数量性状位点通过控制水稻的粒宽、株型和灌浆来增加单株产量。粒宽和株型是影响水稻粒产量的关键农艺性状。利用以籼稻品种华粳 74 为受体亲本、美国茉莉为供体亲本的单片段代换系(SSSL),我们鉴定到一个新的数量性状位点(QTL),命名为 GS6.1。GS6.1 近等基因系(NIL-GS6.1)通过调节小穗颖壳中的细胞长度和宽度来产生长而窄的籽粒,从而增加千粒重。与对照相比,NIL-GS6.1 的株高、每株穗数、穗长、每株粒数、每穗二次枝梗数和单株产量均增加。此外,GS6.1 还调节灌浆速率。GS6.1 通过调节部分 EXPANSINs、灌浆相关基因和粒宽相关基因的转录水平来控制粒宽。这些结果表明,GS6.1 可能有助于通过分子设计提高水稻的粒产量和株型。

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