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参与细胞分裂素调控途径的RGG1控制水稻粒型。

RGG1, Involved in the Cytokinin Regulatory Pathway, Controls Grain Size in Rice.

作者信息

Tao Yajun, Miao Jun, Wang Jun, Li Wenqi, Xu Yang, Wang Fangquan, Jiang Yanjie, Chen Zhihui, Fan Fangjun, Xu Mengbin, Zhou Yong, Liang Guohua, Yang Jie

机构信息

Institute of Food Crops, Jiangsu Academy of Agricultural Sciences/Nanjing Branch of Chinese National Center for Rice Improvement, Nanjing, 210014, Jiangsu, China.

Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, 225009, Jiangsu, China.

出版信息

Rice (N Y). 2020 Nov 10;13(1):76. doi: 10.1186/s12284-020-00436-x.

Abstract

Heterotrimeric GTP binding proteins (G proteins) and cytokinin play important roles in regulating plant growth and development. However, little is known about the mechanism by which they coordinate the regulation of grain size in rice. We functionally characterized one gene, RGG1, encoding a type-A Gγ subunit. Strong GUS staining was detected in young panicles and spikelets, suggesting a role for this gene in modulating panicle-related trait development. Overexpression of RGG1 in Nipponbare (NIP) and Wuyunjing 30 (WYJ30) significantly decreased plant height, panicle length and grain length by regulating cell division. However, rgg1 mutants generated by the CRISPR/Cas9 system exhibited no obvious phenotypic differences, which may be due to the extremely low expression level of this gene in vivo. The transcriptomes of young panicles of NIP, the NIP-rgg1-2 mutant and the NIP-OE2 overexpression line were sequenced, and the results showed that many differentially expressed genes (DEGs) were associated with the cytokinin biosynthetic pathway. We confirmed this result by measuring the endogenous cytokinin levels and found that cytokinin content was lower in the overexpression lines. Additionally, increased expression of RGG1 decreased sensitivity to low concentrations of 6-benzylaminopurine (6-BA). Our results reveal a novel G protein-cytokinin module controlling grain size in rice and will be beneficial for understanding the mechanisms by which G proteins regulate grain size and plant development.

摘要

异源三聚体GTP结合蛋白(G蛋白)和细胞分裂素在调节植物生长发育中起重要作用。然而,关于它们协调调控水稻粒型的机制却知之甚少。我们对一个编码A型Gγ亚基的基因RGG1进行了功能鉴定。在幼穗和小穗中检测到强烈的GUS染色,表明该基因在调节穗相关性状发育中发挥作用。在日本晴(NIP)和武运粳30(WYJ30)中过表达RGG1通过调节细胞分裂显著降低了株高、穗长和粒长。然而,通过CRISPR/Cas9系统产生的rgg1突变体没有表现出明显的表型差异,这可能是由于该基因在体内的表达水平极低。对NIP、NIP-rgg1-2突变体和NIP-OE2过表达系的幼穗转录组进行测序,结果表明许多差异表达基因(DEG)与细胞分裂素生物合成途径相关。我们通过测量内源细胞分裂素水平证实了这一结果,发现过表达系中的细胞分裂素含量较低。此外,RGG1表达的增加降低了对低浓度6-苄基腺嘌呤(6-BA)的敏感性。我们的结果揭示了一个控制水稻粒型的新型G蛋白-细胞分裂素模块,将有助于理解G蛋白调控粒型和植物发育的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b44/7652983/9cad0e3585cc/12284_2020_436_Fig1_HTML.jpg

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