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RLB(RICE LATERAL BRANCH)招募 PRC2 介导的 OsCKX4 上的 H3K27 三甲基化来调节侧枝分枝。

RLB (RICE LATERAL BRANCH) recruits PRC2-mediated H3K27 tri-methylation on OsCKX4 to regulate lateral branching.

机构信息

State Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 311400, China.

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan 430062, China.

出版信息

Plant Physiol. 2022 Jan 20;188(1):460-476. doi: 10.1093/plphys/kiab494.

Abstract

Lateral branches such as shoot and panicle are determining factors and target traits for rice (Oryza sativa L.) yield improvement. Cytokinin promotes rice lateral branching; however, the mechanism underlying the fine-tuning of cytokinin homeostasis in rice branching remains largely unknown. Here, we report the map-based cloning of RICE LATERAL BRANCH (RLB) encoding a nuclear-localized, KNOX-type homeobox protein from a rice cytokinin-deficient mutant showing more tillers, sparser panicles, defected floret morphology as well as attenuated shoot regeneration from callus. RLB directly binds to the promoter and represses the transcription of OsCKX4, a cytokinin oxidase gene with high abundance in panicle branch meristem. OsCKX4 over-expression lines phenocopied rlb, which showed upregulated OsCKX4 levels. Meanwhile, RLB physically binds to Polycomb repressive complex 2 (PRC2) components OsEMF2b and co-localized with H3K27me3, a suppressing histone modification mediated by PRC2, in the OsCKX4 promoter. We proposed that RLB recruits PRC2 to the OsCKX4 promoter to epigenetically repress its transcription, which suppresses the catabolism of cytokinin, thereby promoting rice lateral branching. Moreover, antisense inhibition of OsCKX4 under the LOG promoter successfully increased panicle size and spikelet number per plant without affecting other major agronomic traits. This study provides insight into cytokinin homeostasis, lateral branching in plants, and also promising target genes for rice genetic improvement.

摘要

侧枝如茎和穗是水稻(Oryza sativa L.)产量提高的决定因素和目标性状。细胞分裂素促进水稻侧枝分枝;然而,细胞分裂素在水稻分枝中精细调控的机制在很大程度上尚不清楚。在这里,我们报道了 RICE LATERAL BRANCH(RLB)的图位克隆,它编码一个核定位的 KNOX 型同源盒蛋白,来自一个表现出更多分蘖、更稀疏穗、小花形态缺陷以及愈伤组织再生能力减弱的水稻细胞分裂素缺陷突变体。RLB 直接结合到启动子上并抑制 OsCKX4 的转录,OsCKX4 是一个在穗分枝分生组织中丰度较高的细胞分裂素氧化酶基因。OsCKX4 过表达系表现出 rlb 的表型,表现为 OsCKX4 水平上调。同时,RLB 与 Polycomb repressive complex 2(PRC2)的组成部分 OsEMF2b 发生物理结合,并与 H3K27me3 共定位,H3K27me3 是由 PRC2 介导的抑制性组蛋白修饰。我们提出 RLB 将 PRC2 招募到 OsCKX4 启动子上,从而对其进行表观遗传抑制转录,抑制细胞分裂素的分解代谢,从而促进水稻侧枝分枝。此外,在 LOG 启动子下反义抑制 OsCKX4 成功增加了每株的穗大小和小穗数,而不影响其他主要农艺性状。本研究为细胞分裂素的动态平衡、植物的侧枝分枝提供了深入的了解,也为水稻遗传改良提供了有前途的目标基因。

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