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一种定位于细胞壁的细胞分裂素/嘌呤核苷核酶参与了. 的质外体细胞分裂素代谢。

A cell wall-localized cytokinin/purine riboside nucleosidase is involved in apoplastic cytokinin metabolism in .

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.

RIKEN Center for Sustainable Resource Science, Tsurumi, Yokohama 230-0045, Japan.

出版信息

Proc Natl Acad Sci U S A. 2023 Sep 5;120(36):e2217708120. doi: 10.1073/pnas.2217708120. Epub 2023 Aug 28.

Abstract

In the final step of cytokinin biosynthesis, the main pathway is the elimination of a ribose-phosphate moiety from the cytokinin nucleotide precursor by phosphoribohydrolase, an enzyme encoded by a gene named LONELY GUY (LOG). This reaction accounts for most of the cytokinin supply needed for regulating plant growth and development. In contrast, the LOG-independent pathway, in which dephosphorylation and deribosylation sequentially occur, is also thought to play a role in cytokinin biosynthesis, but the gene entity and physiological contribution have been elusive. In this study, we profiled the phytohormone content of chromosome segment substitution lines of and searched for genes affecting the endogenous levels of cytokinin ribosides by quantitative trait loci analysis. Our approach identified a gene encoding an enzyme that catalyzes the deribosylation of cytokinin nucleoside precursors and other purine nucleosides. The cytokinin/purine riboside nucleosidase 1 (CPN1) we identified is a cell wall-localized protein. Loss-of-function mutations () were created by inserting a -retrotransposon that altered the cytokinin composition in seedling shoots and leaf apoplastic fluid. The mutation also abolished cytokinin riboside nucleosidase activity in leaf extracts and attenuated the -zeatin riboside-responsive expression of cytokinin marker genes. Grain yield of the mutants declined due to altered panicle morphology under field-grown conditions. These results suggest that the cell wall-localized LOG-independent cytokinin activating pathway catalyzed by CPN1 plays a role in cytokinin control of rice growth. Our finding broadens our spatial perspective of the cytokinin metabolic system.

摘要

在细胞分裂素生物合成的最后一步中,主要途径是通过磷酸核糖水解酶(一种由命名为孤独男孩(LOG)的基因编码的酶)从细胞分裂素核苷酸前体中消除核糖磷酸部分。该反应占调节植物生长和发育所需的大部分细胞分裂素供应。相比之下,LOG 非依赖性途径,其中去磷酸化和去核糖基化依次发生,也被认为在细胞分裂素生物合成中发挥作用,但基因实体和生理贡献一直难以捉摸。在这项研究中,我们对 和染色体片段替换系的植物激素含量进行了分析,并通过数量性状位点分析搜索了影响内源性细胞分裂素核苷水平的基因。我们的方法鉴定了一个编码酶的基因,该酶催化细胞分裂素核苷前体和其他嘌呤核苷的去核糖基化。我们鉴定的细胞分裂素/嘌呤核苷核酶 1(CPN1)是一种定位于细胞壁的蛋白质。通过插入改变幼苗芽和叶片质外体液中细胞分裂素组成的 -逆转座子,创建了功能丧失突变体 ()。 突变还削弱了叶片提取物中的细胞分裂素核苷核酶活性,并减弱了 -玉米素核苷响应的细胞分裂素标记基因的表达。在田间生长条件下,由于穗部形态的改变,突变体的粒产量下降。这些结果表明,CPN1 催化的定位于细胞壁的 LOG 非依赖性细胞分裂素激活途径在细胞分裂素对水稻生长的调控中起作用。我们的发现拓宽了我们对细胞分裂素代谢系统的空间视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06c5/10483608/8f8c0cce608a/pnas.2217708120fig01.jpg

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