GhXB38D represses cotton fibre elongation through ubiquitination of ethylene biosynthesis enzymes GhACS4 and GhACO1

Author:

Song Qingwei1,Gao Wanting1,Du Chuanhui1,Sun Wenjie1,Wang Jin2,Zuo Kaijing1ORCID

Affiliation:

1. Single Cell Research Center, School of Agriculture and Biology Shanghai Jiao Tong University Shanghai China

2. Biotechnology Research Institute Chinese Academy of Agricultural Sciences Beijing China

Abstract

SummaryEthylene plays an essential role in the development of cotton fibres. Ethylene biosynthesis in plants is elaborately regulated by the activities of key enzymes, 1‐aminocyclopropane‐1‐carboxylate oxidase (ACO) and 1‐aminocyclopropane‐1‐carboxylate synthase (ACS); however, the potential mechanism of post‐translational modification of ACO and ACS to control ethylene synthesis in cotton fibres remains unclear. Here, we identify an E3 ubiquitin ligase, GhXB38D, that regulates ethylene biosynthesis during fibre elongation in cotton. GhXB38D gene is highly expressed in cotton fibres during the rapid elongation stage. Suppressing GhXB38D expression in cotton significantly enhanced fibre elongation and length, accompanied by the up‐regulation of genes associated with ethylene signalling and fibre elongation. We demonstrated that GhXB38D interacts with the ethylene biosynthesis enzymes GhACS4 and GhACO1 in elongating fibres and specifically mediates their ubiquitination and degradation. The inhibition of GhXB38D gene expression increased the stability of GhACS4 and GhACO1 proteins in cotton fibres and ovules, resulting in an elevated concentration of ethylene. Our findings highlight the role of GhXB38D as a regulator of ethylene synthesis by ubiquitinating ACS4 and ACO1 proteins and modulating their stability. GhXB38D acts as a negative regulator of fibre elongation and serves as a potential target for enhancing cotton fibre yield and quality through gene editing strategy.

Publisher

Wiley

Subject

Plant Science,Agronomy and Crop Science,Biotechnology

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