COP9 SIGNALOSOME SUBUNIT 5A facilitates POLYAMINE OXIDASE 5 degradation to regulate strawberry plant growth and fruit ripening

Yun Huang, Jiahui Gao, Guiming Ji, Wenjing Li, Jiaxue Wang, Qinghua Wang, Yuanyue Shen, Jiaxuan Guo, Fan Gao
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Abstract

Polyamines (PAs), such as putrescine, spermidine, and spermine, are essential for plant growth and development. However, the post-translational regulation of PA metabolism remains unknown. Here, we report the COP9 SIGNALOSOME SUBUNIT 5A (FvCSN5A) mediates the degradation of the POLYAMINE OXIDASE 5 (FvPAO5), which catalyzes the conversion of spermidine/spermine to produce H2O2 in strawberry (Fragaria vesca). FvCSN5A is localized in the cytoplasm and nucleus, is ubiquitously expressed in strawberry plants, and is rapidly induced during fruit ripening. FvCSN5A RNA interference (RNAi) transgenic strawberry lines exhibit pleiotropic effects on plant development, fertility, and fruit ripening due to altered PA and H2O2 homeostasis, similar to FvPAO5 transgenic overexpression lines. Moreover, FvCSN5A interacts with FvPAO5 in vitro and in vivo, and the ubiquitination and degradation of FvPAO5 are impaired in FvCSN5A RNAi lines. Additionally, FvCSN5A interacts with cullin 1 (FvCUL1), a core component of the E3 ubiquitin-protein ligase complex. Transient genetic analysis in cultivated strawberry (Fragaria × ananassa) fruits showed that inhibiting FaPAO5 expression could partially rescue the ripening phenotype of FaCSN5A RNAi fruits. Taken together, our results suggest that the CSN5A-CUL1-PAO5 signaling pathway responsible for PA and H2O2 homeostasis is crucial for strawberry vegetative and reproductive growth in particular fruit ripening. Our findings present a promising strategy for improving crop yield and quality.
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COP9信号体亚基5A促进多胺氧化酶5降解,调控草莓植株生长和果实成熟
多胺(PAs),如腐胺、亚精胺和精胺,是植物生长发育所必需的。然而,翻译后对PA代谢的调控尚不清楚。在此,我们报道了COP9信号体亚基5A (FvCSN5A)介导多胺氧化酶5 (FvPAO5)的降解,而多胺氧化酶5在草莓(Fragaria vesca)中催化亚精胺/精胺转化为H2O2。FvCSN5A定位于细胞质和细胞核,在草莓植物中普遍表达,在果实成熟过程中被快速诱导。FvCSN5A RNA干扰(RNAi)转基因草莓品系与FvPAO5转基因过表达品系类似,由于PA和H2O2稳态的改变,在植株发育、育性和果实成熟方面表现出多效性效应。此外,FvCSN5A在体外和体内均与FvPAO5相互作用,FvCSN5A RNAi细胞系中FvPAO5的泛素化和降解功能受损。此外,FvCSN5A与cullin 1 (FvCUL1)相互作用,cullin 1是E3泛素蛋白连接酶复合物的核心成分。对栽培草莓果实的瞬时遗传分析表明,抑制FaPAO5的表达可以部分挽救FaCSN5A RNAi果实的成熟表型。综上所述,我们的研究结果表明,负责PA和H2O2稳态的CSN5A-CUL1-PAO5信号通路对草莓的营养和生殖生长至关重要,特别是果实成熟。我们的发现为提高作物产量和质量提供了一个有希望的策略。
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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ProteinA/G Immunoprecipitation Kit
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