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激素和类黄酮信号相关调控miRNA对棉花(棉属)花和纤维发育的协调作用

Coordination of floral and fiber development in cotton (Gossypium) by hormone- and flavonoid-signalling associated regulatory miRNAs.

作者信息

Arora Sakshi, Singh Amarjeet Kumar, Chaudhary Bhupendra

机构信息

School of Biotechnology, Gautam Buddha University, Greater Noida, 201312, India.

Center for Genetic Manipulation of Crop Plants, University of Delhi South Campus, New Delhi, 110021, India.

出版信息

Plant Mol Biol. 2023 May;112(1-2):1-18. doi: 10.1007/s11103-023-01341-9. Epub 2023 Apr 17.

Abstract

Various plant development activities and stress responses are tightly regulated by various microRNAs (miRNA) and their target genes, or transcription factors in a spatiotemporal manner. Here, to exemplify how flowering-associated regulatory miRNAs synchronize their expression dynamics during floral and fiber development in cotton, constitutive expression diminution transgenic lines of auxin-signaling regulatory Gh-miR167 (35S-MIM167) were developed through target mimicry approach. 'Moderate' (58% to 80%)- and 'high' (> 80%)-Gh-miR167 diminution mimic lines showed dosage-dependent developmental deformities in anther development, pollen maturation, and fruit (= boll) formation. Cross pollination of 'moderate' 35S-MIM167 mimic lines with wild type (WT) plant partially restored boll formation and emergence of fiber initials on the ovule surface. Gh-miR167 diminution favored organ-specific transcription biases in miR159, miR166 as well as miR160, miR164, and miR172 along with their target genes during anther and petal development, respectively. Similarly, accumulative effect of percent Gh-miR167 diminution, cross regulation of its target ARF6/8 genes, and temporal mis-expression of hormone signaling- and flavonoid biosynthesis-associated regulatory miRNAs at early fiber initiation stage caused irregular fiber formation. Spatial and temporal transcription proportions of regulatory miRNAs were also found crucial for the execution of hormone- and flavonoid-dependent progression of floral and fiber development. These observations discover how assorted regulatory genetic circuits get organized in response to Gh-miR167 diminution and converge upon ensuing episodes of floral and fiber development in cotton.

摘要

各种植物发育活动和应激反应受到各种微小RNA(miRNA)及其靶基因或转录因子的严格时空调控。在此,为了举例说明与开花相关的调控miRNA如何在棉花的花和纤维发育过程中同步其表达动态,通过靶标模拟方法构建了生长素信号调控的Gh-miR167组成型表达降低转基因系(35S-MIM167)。“中度”(58%至80%)和“高度”(>80%)Gh-miR167降低模拟系在花药发育、花粉成熟和果实(=棉铃)形成方面表现出剂量依赖性发育畸形。“中度”35S-MIM167模拟系与野生型(WT)植株进行异花授粉部分恢复了棉铃形成以及胚珠表面纤维原始细胞的出现。在花药和花瓣发育过程中,Gh-miR167降低分别有利于miR159、miR166以及miR160、miR164和miR172与其靶基因在器官特异性转录上的偏差。同样,在纤维起始早期阶段,Gh-miR167降低百分比的累积效应、其靶标ARF6/8基因的交叉调控以及激素信号和类黄酮生物合成相关调控miRNA的时空错误表达导致纤维形成不规则。还发现调控miRNA的时空转录比例对于激素和类黄酮依赖性的花和纤维发育进程的执行至关重要。这些观察结果揭示了各种调控遗传回路如何响应Gh-miR167降低而组织起来,并汇聚到棉花随后的花和纤维发育过程中。

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