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COI1 F-box 蛋白调节玉米中 DELLA 蛋白水平、生长和光合效率。

COI1 F-box proteins regulate DELLA protein levels, growth, and photosynthetic efficiency in maize.

机构信息

Boyce Thompson Institute, Ithaca, NY 14853, USA.

Crop Genome Editing, Regulatory Science, Bayer Crop Science, Chesterfield, MO 63017, USA.

出版信息

Plant Cell. 2024 Sep 3;36(9):3237-3259. doi: 10.1093/plcell/koae161.

Abstract

The F-box protein Coronatine Insensitive (COI) is a receptor for the jasmonic acid signaling pathway in plants. To investigate the functions of the 6 maize (Zea mays) COI proteins (COI1a, COI1b, COI1c, COI1d, COI2a, and COI2b), we generated single, double, and quadruple loss-of-function mutants. The pollen of the coi2a coi2b double mutant was inviable. The coi1 quadruple mutant (coi1-4x) exhibited shorter internodes, decreased photosynthesis, leaf discoloration, microelement deficiencies, and accumulation of DWARF8 and/or DWARF9, 2 DELLA family proteins that repress the gibberellic acid (GA) signaling pathway. Coexpression of COI and DELLA in Nicotiana benthamiana showed that the COI proteins trigger proteasome-dependent DELLA degradation. Many genes that are downregulated in the coi1-4x mutant are GA-inducible. In addition, most of the proteins encoded by the downregulated genes are predicted to be bundle sheath- or mesophyll-enriched, including those encoding C4-specific photosynthetic enzymes. Heterologous expression of maize Coi genes in N. benthamiana showed that COI2a is nucleus-localized and interacts with maize jasmonate zinc-finger inflorescence meristem domain (JAZ) proteins, the canonical COI repressor partners. However, maize COI1a and COI1c showed only partial nuclear localization and reduced binding efficiency to the tested JAZ proteins. Together, these results show the divergent functions of the 6 COI proteins in regulating maize growth and defense pathways.

摘要

F-box 蛋白 CoronatineInsensitive (COI) 是植物中茉莉酸信号通路的受体。为了研究 6 个玉米(Zea mays)COI 蛋白(COI1a、COI1b、COI1c、COI1d、COI2a 和 COI2b)的功能,我们生成了单、双和四重功能丧失突变体。coi2a coi2b 双突变体的花粉不育。coi1 四重突变体(coi1-4x)表现出节间变短、光合作用减弱、叶片褪色、微量元素缺乏以及 DWARF8 和/或 DWARF9 的积累,DWARF8 和/或 DWARF9 是抑制赤霉素(GA)信号通路的 2 个 DELLA 家族蛋白。COI 和 DELLA 在 Nicotiana benthamiana 中的共表达表明,COI 蛋白触发蛋白酶体依赖性 DELLA 降解。在 coi1-4x 突变体中下调的许多基因是 GA 诱导的。此外,在 coi1-4x 突变体中下调的大多数基因编码的蛋白质被预测为束鞘或叶肉丰富,包括那些编码 C4 特异性光合酶的基因。玉米 Coi 基因在 N. benthamiana 中的异源表达表明,COI2a 定位于细胞核,并与玉米茉莉酸锌指花序分生组织域(JAZ)蛋白相互作用,JAZ 蛋白是 COI 的典型抑制子伙伴。然而,玉米 COI1a 和 COI1c 仅显示部分核定位和对测试 JAZ 蛋白的结合效率降低。总之,这些结果表明 6 个 COI 蛋白在调节玉米生长和防御途径方面具有不同的功能。

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