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Regulatory networks of coresident subgenomes during rapid fiber cell elongation in upland cotton

作者:Lan Yang, Wenqiang Qin, Xi Wei, Rui Liu, Jiaxiang Yang, Zhi Wang, Qingdi Yan, Yihao Zhang, Wei Hu, Xiao Han, Chenxu Gao, Jingjing Zhan, Baibai Gao, Xiaoyang Ge, Fuguang Li, Zhaoen Yang · 发表于:Plant Communications · 年份:2024 · DOI:10.1016/j.xplc.2024.101130 · 被引用次数:8 · 研究领域:Research in Cotton Cultivation

Cotton, an intriguing plant species shaped by polyploidization, evolution, and domestication, holds particular interest due to the complex mechanisms governing fiber traits across its two subgenomes. However, the regulatory elements or transcriptional networks between subgenomes during fiber elongation remain to be fully clarified. Here, we analyzed 1462 cotton fiber samples to reconstruct the gene-expression regulatory networks that influence fiber cell elongation. Inter-subgenome expression quantitative trait loci (eQTLs) largely dictate gene transcription, with a notable tendency for the D subgenome to regulate A-subgenome eGenes. This regulation reveals synchronized homoeologous gene expression driven by co-localized eQTLs and divergent patterns that diminish genetic correlations, thus leading to preferential expression in the A and D subgenomes. Hotspot456 emerged as a key regulator of fiber initiation and elongation, and artificial selection of trans-eQTLs in hotspot456 that positively regulate KCS1 has facilitated cell elongation. Experiments designed to clarify the roles of trans-eQTLs in improved fiber breeding confirmed the inhibition of GhTOL9 by a specific trans-eQTL via GhWRKY28, which negatively affects fiber elongation. We propose a model in which the GhWRKY28-GhTOL9 module regulates this process through the ESCRT (endosomal sorting complex required for transport) pathway. This research significantly advances our understanding of cotton's evolutionary and domes...