首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Cotton (Gossypium hirsutum) Myo-Inositol-1-Phosphate Synthase (GhMIPS1D) Gene Promotes Root Cell Elongation in Arabidopsis
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A Cotton (Gossypium hirsutum) Myo-Inositol-1-Phosphate Synthase (GhMIPS1D) Gene Promotes Root Cell Elongation in Arabidopsis

机译:棉花(陆地棉)肌醇-1-磷酸合酶(GhMIPS1D)基因促进拟南芥中的根细胞伸长。

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摘要

Myo-inositol-1-phosphate synthase (MIPS, EC 5.5.1.4) plays important roles in plant growth and development, stress responses, and cellular signal transduction. MIPS genes were found preferably expressed during fiber cell initiation and early fast elongation in upland cotton (Gossypium hirsutum), however, current understanding of the function and regulatory mechanism of MIPS genes to involve in cotton fiber cell growth is limited. Here, by genome-wide analysis, we identified four GhMIPS genes anchoring onto four chromosomes in G. hirsutum and analyzed their phylogenetic relationship, evolutionary dynamics, gene structure and motif distribution, which indicates that MIPS genes are highly conserved from prokaryotes to green plants, with further exon-intron structure analysis showing more diverse in Brassicales plants. Of the four GhMIPS members, based on the significant accumulated expression of GhMIPS1D at the early stage of fiber fast elongating development, thereby, the GhMIPS1D was selected to investigate the function of participating in plant development and cell growth, with ectopic expression in the loss-of-function Arabidopsis mips1 mutants. The results showed that GhMIPS1D is a functional gene to fully compensate the abnormal phenotypes of the deformed cotyledon, dwarfed plants, increased inflorescence branches, and reduced primary root lengths in Arabidopsis mips1 mutants. Furthermore, shortened root cells were recovered and normal root cells were significantly promoted by ectopic expression of GhMIPS1D in Arabidopsis mips1 mutant and wild-type plants respectively. These results serve as a foundation for understanding the MIPS family genes in cotton, and suggest that GhMIPS1D may function as a positive regulator for plant cell elongation.
机译:肌醇-1-磷酸合酶(MIPS,EC 5.5.1.4)在植物生长发育,胁迫响应和细胞信号转导中起重要作用。发现MIPS基因优选在陆地棉(陆地棉)的纤维细胞起始和早期快速伸长期间表达,但是,目前对MIPS基因参与棉纤维细胞生长的功能和调控机制的了解是有限的。在这里,通过全基因组分析,我们确定了四个GhMIPS基因锚定在陆地棉的四个染色体上,并分析了它们的系统发生关系,进化动力学,基因结构和基序分布,这表明MIPS基因从原核生物到绿色植物都高度保守,进一步的外显子-内含子结构分析表明,十字花科植物具有更多的多样性。在四个GhMIPS成员中,基于GhMIPS1D在纤维快速伸长发育的早期阶段的显着累积表达,因此,选择GhMIPS1D来研究参与植物发育和细胞生长的功能,而异位表达在损失中-功能的拟南芥mips1突变体。结果表明,GhMIPS1D是一个功能基因,可以完全补偿拟南芥mips1突变体中变形子叶,矮化植物,增加花序分支和减少初级根长度的异常表型。此外,异位表达GhMIPS1D分别在拟南芥mips1突变体和野生型植物中恢复了缩短的根细胞,并显着促进了正常根细胞。这些结果为理解棉花中的 MIPS 家族基因奠定了基础,并暗示 GhMIPS1D 可能是植物细胞伸长的正调控因子。

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