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编码水稻 strictosidine 合酶的基因对于水稻花药角质层形成和花粉外壁图案化是必需的。

, encoding a rice strictosidine synthase, is required for anther cuticle formation and pollen exine patterning in rice.

作者信息

Chen Dai-Bo, Zhou Ran, Wang Hui-Min, Zhang Pei-Pei, Yang Zheng-Fu, Xuan Dan-Dan, Zhang Ying-Xin, Zhan Xiao-Deng, Cao Li-Yong, Cheng Shi-Hua, Sun Lian-Ping

机构信息

State Key Laboratory of Rice Biology and Breeding, National Center of Rice Improvement, China National Rice Research Institute, Hangzhou, China.

National Nanfan Research Institute (Sanya), Chinese Academy of Agricultural Sciences, Sanya, China.

出版信息

Front Plant Sci. 2025 Jan 20;15:1508828. doi: 10.3389/fpls.2024.1508828. eCollection 2024.

Abstract

The formation of the anther wall and the development of pollen processes, central to rice fertility and yield, are highly dependent on the synthesis and accumulation of lipid polymers. Although several regulatory factors related to lipid biosynthesis during pollen wall development have been identified, the molecular mechanisms controlling these processes remain poorly understood. In this study, a male-sterile rice mutant, , was identified, characterized by normal vegetative growth but complete male sterility due to delayed programmed cell death (PCD) in tapetal cells and defects in anther cuticle and pollen exine formation. Map-based cloning revealed that is a new allele of the strictosidine synthase-like gene, . Functional analysis, including complementation and CRISPR/Cas9-based gene editing, confirmed that the 2-nucleotide deletion in the is responsible for the male sterility phenotype. is homologous to the maize , the core recessive nuclear sterile gene of maize Seed Production Technology (SPT), and localizes to the endoplasmic reticulum and plays a conserved role in anther development and pollenformation. Gene expression analysis revealed a significant downregulation of key genes involved in anther development and sporopollenin biosynthesis in anthers. Furthermore, lipid profiling demonstrated a marked reduction in both wax and cutin content. These findings establish as a critical regulator of fatty acid synthesis and highlight its role in anther cuticle formation and pollen exine development. The findings of this study provide valuable insights into the molecular regulation of lipid biosynthesis during rice male reproductive development and offer potential applications for hybrid rice breeding.

摘要

花药壁的形成和花粉发育过程对于水稻的育性和产量至关重要,它们高度依赖于脂质聚合物的合成和积累。尽管在花粉壁发育过程中已经鉴定出了几种与脂质生物合成相关的调控因子,但控制这些过程的分子机制仍知之甚少。在本研究中,鉴定出了一个雄性不育水稻突变体,其营养生长正常,但由于绒毡层细胞程序性细胞死亡(PCD)延迟以及花药角质层和花粉外壁形成缺陷而导致完全雄性不育。图位克隆表明,该突变体是类Strictosidine合酶基因的一个新等位基因。功能分析,包括互补实验和基于CRISPR/Cas9的基因编辑,证实了该基因中的2个核苷酸缺失是导致雄性不育表型的原因。该基因与玉米的核心隐性核不育基因玉米种子生产技术(SPT)中的同源,定位于内质网,并在花药发育和花粉形成中发挥保守作用。基因表达分析显示,该突变体花药中参与花药发育和孢粉素生物合成的关键基因显著下调。此外,脂质分析表明蜡质和角质含量均显著降低。这些发现确立了该基因作为脂肪酸合成的关键调节因子,并突出了其在花药角质层形成和花粉外壁发育中的作用。本研究结果为水稻雄性生殖发育过程中脂质生物合成的分子调控提供了有价值的见解,并为杂交水稻育种提供了潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bdd/11789761/b4d5852d0270/fpls-15-1508828-g001.jpg

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