棉花GhMAX2通过释放ghs1fa介导的脂肪酸生物合成抑制,促进单细胞纤维伸长。

IF 5.3 2区 生物学 Q1 PLANT SCIENCES
Yaru Sun, Shuangxia Jin, Guoli Song
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引用次数: 0

摘要

关键信息:棉花GhMAX2通过介导GhS1FA的降解来正向调节纤维伸长,而GhKCS9的表达则通过转录抑制。己糖内酯(SLs)被认为能促进棉纤维的发育。然而,SL信号传导与纤维细胞伸长之间的确切分子关系尚不清楚。在本研究中,我们研究了F-box E3连接酶MORE AXILLARY GROWTH2 (MAX2)在陆地棉花中调控纤维发育的作用。GhMAX2b和GhMAX2f是SL信号转导的关键元件,它们的功能缺失导致光纤长度明显缩短。生化分析表明,GhMAX2b/f触发转录抑制因子GhS1FA的泛素化和随后的降解,GhS1FA是这些E3连接酶的底物。此外,GhS1FA通过直接结合3-酮酰基辅酶a合成酶9 (GhKCS9)启动子内的W-box元件并抑制其表达来抑制脂肪酸的生物合成。总之,我们提出GhMAX2b/f促进纤维伸长,可能部分独立于GhD53降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cotton GhMAX2 promotes single-celled fiber elongation by releasing the GhS1FA-mediated inhibition of fatty acid biosynthesis.

Key message: Cotton GhMAX2 positively regulates fiber elongation by mediating the degradation of GhS1FA, which transcriptionally represses GhKCS9 expression. Strigolactones (SLs) are known to promote cotton fiber development. However, the precise molecular relationship between SL signaling and fiber cell elongation remains unclear. In this study, we investigate the role of F-box E3 ligase MORE AXILLARY GROWTH2 (MAX2) in upland cotton in relation to the regulation of fiber development. GhMAX2b and GhMAX2f act as key components for SL signal transduction, with their loss-of-function leading to a notable reduction in fiber length. Biochemical analysis showed that GhMAX2b/f trigger the ubiquitination and subsequent degradation of the transcription repressor strigolactone-1-factor-At (GhS1FA), which function as a substrate for these E3 ligases. Furthermore, GhS1FA inhibits fatty acids biosynthesis by directly binding to the W-box element within the promoter of 3-ketoacyl-CoA synthases 9 (GhKCS9) and repressing its expression. In summary, we propose that GhMAX2b/f promote fiber elongation, potentially operating partially independently of GhD53 degradation.

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来源期刊
Plant Cell Reports
Plant Cell Reports 生物-植物科学
CiteScore
10.80
自引率
1.60%
发文量
135
审稿时长
3.2 months
期刊介绍: Plant Cell Reports publishes original, peer-reviewed articles on new advances in all aspects of plant cell science, plant genetics and molecular biology. Papers selected for publication contribute significant new advances to clearly identified technological problems and/or biological questions. The articles will prove relevant beyond the narrow topic of interest to a readership with broad scientific background. The coverage includes such topics as: - genomics and genetics - metabolism - cell biology - abiotic and biotic stress - phytopathology - gene transfer and expression - molecular pharming - systems biology - nanobiotechnology - genome editing - phenomics and synthetic biology The journal also publishes opinion papers, review and focus articles on the latest developments and new advances in research and technology in plant molecular biology and biotechnology.
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