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棉花 BLH1 和 KNOX6 通过调控亚麻酸生物合成来拮抗调节纤维伸长。

Cotton BLH1 and KNOX6 antagonistically modulate fiber elongation via regulation of linolenic acid biosynthesis.

机构信息

College of Life Sciences, Shihezi University, Shihezi 832003, China.

College of Life Sciences, Shaanxi Normal University, Xi'an 710062, China.

出版信息

Plant Commun. 2024 Jul 8;5(7):100887. doi: 10.1016/j.xplc.2024.100887. Epub 2024 Mar 26.

Abstract

BEL1-LIKE HOMEODOMAIN (BLH) proteins are known to function in various plant developmental processes. However, the role of BLHs in regulating plant cell elongation is still unknown. Here, we identify a BLH gene, GhBLH1, that positively regulates fiber cell elongation. Combined transcriptomic and biochemical analyses reveal that GhBLH1 enhances linolenic acid accumulation to promote cotton fiber cell elongation by activating the transcription of GhFAD7A-1 via binding of the POX domain of GhBLH1 to the TGGA cis-element in the GhFAD7A-1 promoter. Knockout of GhFAD7A-1 in cotton significantly reduces fiber length, whereas overexpression of GhFAD7A-1 results in longer fibers. The K2 domain of GhKNOX6 directly interacts with the POX domain of GhBLH1 to form a functional heterodimer, which interferes with the transcriptional activation of GhFAD7A-1 via the POX domain of GhBLH1. Overexpression of GhKNOX6 leads to a significant reduction in cotton fiber length, whereas knockout of GhKNOX6 results in longer cotton fibers. An examination of the hybrid progeny of GhBLH1 and GhKNOX6 transgenic cotton lines provides evidence that GhKNOX6 negatively regulates GhBLH1-mediated cotton fiber elongation. Our results show that the interplay between GhBLH1 and GhKNOX6 modulates regulation of linolenic acid synthesis and thus contributes to plant cell elongation.

摘要

BEL1 类同源结构域(BLH)蛋白已知在各种植物发育过程中发挥作用。然而,BLH 在调节植物细胞伸长中的作用尚不清楚。在这里,我们鉴定了一个 BLH 基因,GhBLH1,它正向调节纤维细胞伸长。综合转录组学和生化分析表明,GhBLH1 通过结合 GhBLH1 的 POX 结构域到 GhFAD7A-1 启动子中的 TGGA 顺式元件,增强亚油酸的积累,从而激活 GhFAD7A-1 的转录,促进棉花纤维细胞伸长。在棉花中敲除 GhFAD7A-1 显著降低纤维长度,而过表达 GhFAD7A-1 则导致纤维更长。GhKNOX6 的 K2 结构域直接与 GhBLH1 的 POX 结构域相互作用,形成功能异源二聚体,通过 GhBLH1 的 POX 结构域干扰 GhFAD7A-1 的转录激活。GhKNOX6 的过表达导致棉花纤维长度显著降低,而 GhKNOX6 的敲除则导致棉花纤维更长。对 GhBLH1 和 GhKNOX6 转基因棉花系的杂种后代的检查提供了证据,表明 GhKNOX6 负调控 GhBLH1 介导的棉花纤维伸长。我们的结果表明,GhBLH1 和 GhKNOX6 之间的相互作用调节亚油酸合成的调节,从而有助于植物细胞伸长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b053/11287173/b5fc7962f324/gr1.jpg

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