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KAP 基因突变会影响水稻的粒型和产量。

Mutation of KAP, which encodes a keratin-associated protein, affects grain size and yield production in rice.

机构信息

Key Laboratory of High Magnetic Field and Ion Beam Physical Biology, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, China.

University of Science and Technology of China, Hefei, China.

出版信息

Physiol Plant. 2024 Sep-Oct;176(5):e14528. doi: 10.1111/ppl.14528.

DOI:10.1111/ppl.14528
PMID:39284757
Abstract

Grain size and shape are critical agronomic traits that directly impact rice grain yield. Identifying genes that control these traits can provide new strategies for yield improvement. In this study, we characterized a rice mutant, reduced grain length (rgl), which exhibited decreased grain length due to reduced cell proliferation. Map-based cloning identified a base deletion in OsRGL2, a gene encoding a keratin-associated protein (KAP), as the cause of the mutant phenotype. CRISPR-Cas9-generated OsRGL2 knockout mutants also displayed reduced grain length, confirming its role. OsRGL2 transcripts were detected in various tissues, with relative higher gene expression in young panicles, and OsRGL2 was localized to the plasma membrane. Overexpression of OsRGL2 increased grain size by promoting cell proliferation in the spikelet hull and significantly enhanced grain yield per plant. Importantly, OsRGL2 was found to interact with RGB1, indicating that OsRGL2 positively regulates grain size and yield through its interaction with RGB1. Additionally, OsRGL2 regulated the expression of cell cycle-related genes, further elucidating its role in grain development. These findings demonstrate that OsRGL2 is a positive regulator of grain size in rice, and manipulating its expression may offer a novel strategy for enhancing rice grain yield.

摘要

粒型和粒长是影响水稻粒重的重要农艺性状,鉴定控制这些性状的基因可为产量改良提供新的策略。本研究中,我们对一个水稻突变体 reduced grain length(rgl)进行了表型鉴定,该突变体由于细胞增殖减少而导致粒长变短。图位克隆鉴定表明, OsRGL2 基因的一个碱基缺失是突变体表型的原因, OsRGL2 基因编码一个角蛋白相关蛋白(KAP)。CRISPR-Cas9 产生的 OsRGL2 敲除突变体也表现出粒长变短,证实了其功能。 OsRGL2 转录本在各种组织中均有检测到,在幼穗中相对较高, OsRGL2 定位于质膜。过表达 OsRGL2 通过促进小穗颖壳细胞增殖增加粒长,显著提高单株粒重。重要的是,发现 OsRGL2 与 RGB1 相互作用,表明 OsRGL2 通过与 RGB1 的相互作用正向调控粒长和产量。此外, OsRGL2 还调控细胞周期相关基因的表达,进一步阐明了其在籽粒发育中的作用。这些发现表明, OsRGL2 是水稻粒长的正调控因子,操纵其表达可能为提高水稻粒重提供新策略。

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