OsPPG encodes a pseudouridine-5′-phosphate glycosidase and regulates rice spikelet development

Rui Chen, Dagang Tian, Yarong Lin, Jiaqing Huang, Qinqin Yang, Yupei Li, Huaqing Liu, Shaohua Yang, Jingyang Chen, Shufen Zhou, Feng Wang, Shubiao Zhang
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Abstract

Florets are the basic structural units of spikelets, and their morphogenesis determines the yield and quality of rice grains. However, whether and how pseudouridine-5′-phosphate glycosidase participates in rice spikelet development remains an open question. In this study, we identified a novel gene, , which encodes a peroxisome-localized pseudouridine-5′-phosphate glycosidase and regulates the development of rice spikelets. mutants exhibited abnormal sterile lemma, lemma, palea, lodicule, stamens, and pistils; male sterility; shorter panicles; and reduced plant height. was found to regulate several genes, thereby affecting the morphogenesis of rice spikelets. Furthermore, metabolomics revealed that the gene was involved in the decomposition of pseudouridine via the pyrimidine metabolism pathway and may affect the jasmonic acid signaling pathway. These results suggest that OsPPG is a key regulator of rice spikelet development.
OsPPG 编码一种假尿嘧啶-5′-磷酸糖苷酶,调控水稻小穗的发育
小花是稻穗的基本结构单元,其形态发生决定着稻谷的产量和品质。然而,假尿嘧啶-5′-磷酸糖苷酶是否以及如何参与水稻小穗的发育仍是一个未决问题。本研究发现了一个新基因Ⅴ,它编码一种过氧物酶体定位的假尿苷-5′-磷酸糖苷酶,并调控水稻小穗的发育。突变体表现出异常的不育外稃、外稃、内稃、鳞茎、雄蕊和雌蕊;雄性不育;圆锥花序较短;以及植株高度降低。此外,代谢组学研究发现,该基因通过嘧啶代谢途径参与假尿嘧啶的分解,并可能影响茉莉酸信号途径。这些结果表明,OsPPG 是水稻小穗发育的关键调控因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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