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全基因组鉴定和分析 PIN 基因家族揭示了其在 L. 的发育和各种胁迫条件下的作用。

Genome-Wide Identification and Characterization of PIN-FORMED (PIN) Gene Family Reveals Role in Developmental and Various Stress Conditions in L.

机构信息

Department of Life Science, College of Life Science and Biotechnology, Dongguk University, Goyang 10326, Korea.

Krishi Vigyan Kendra, Swami Keshwanand Rajasthan Agricultural University, Bikaner 334603, India.

出版信息

Int J Mol Sci. 2021 Jul 9;22(14):7396. doi: 10.3390/ijms22147396.

Abstract

PIN-FORMED (PIN) genes play a crucial role in regulating polar auxin distribution in diverse developmental processes, including tropic responses, embryogenesis, tissue differentiation, and organogenesis. However, the role of PIN-mediated auxin transport in various plant species is poorly understood. Currently, no information is available about this gene family in wheat ( L.). In the present investigation, we identified the PIN gene family in wheat to understand the evolution of PIN-mediated auxin transport and its role in various developmental processes and under different biotic and abiotic stress conditions. In this study, we performed genome-wide analysis of the PIN gene family in common wheat and identified 44 TaPIN genes through a homology search, further characterizing them to understand their structure, function, and distribution across various tissues. Phylogenetic analyses led to the classification of TaPIN genes into seven different groups, providing evidence of an evolutionary relationship with and . A gene exon/intron structure analysis showed a distinct evolutionary path and predicted the possible gene duplication events. Further, the physical and biochemical properties, conserved motifs, chromosomal, subcellular localization, transmembrane domains, and three-dimensional (3D) structure were also examined using various computational approaches. Cis-elements analysis of TaPIN genes showed that TaPIN promoters consist of phytohormone, plant growth and development, and stress-related cis-elements. In addition, expression profile analysis also revealed that the expression patterns of the TaPIN genes were different in different tissues and developmental stages. Several members of the TaPIN family were induced during biotic and abiotic stress. Moreover, the expression patterns of TaPIN genes were verified by qRT-PCR. The qRT-PCR results also show a similar expression with slight variation. Therefore, the outcome of this study provides basic genomic information on the expression of the TaPIN gene family and will pave the way for dissecting the precise role of TaPINs in plant developmental processes and different stress conditions.

摘要

PIN 基因在调节不同发育过程中的极性生长素分布方面发挥着关键作用,包括向性反应、胚胎发生、组织分化和器官发生。然而,PIN 介导的生长素运输在各种植物物种中的作用知之甚少。目前,关于小麦(L.)中这个基因家族的信息尚不清楚。在本研究中,我们鉴定了小麦中的 PIN 基因家族,以了解 PIN 介导的生长素运输的进化及其在不同发育过程中的作用以及在不同生物和非生物胁迫条件下的作用。在这项研究中,我们通过同源搜索对普通小麦中的 PIN 基因家族进行了全基因组分析,鉴定出 44 个 TaPIN 基因,并对其进行了进一步的特征描述,以了解它们的结构、功能和在各种组织中的分布。系统发育分析将 TaPIN 基因分为七个不同的组,为与 和 的进化关系提供了证据。基因外显子/内含子结构分析表明存在明显的进化途径,并预测了可能的基因复制事件。此外,还使用各种计算方法进一步研究了 TaPIN 基因的物理和生化特性、保守基序、染色体、亚细胞定位、跨膜结构域和三维(3D)结构。TaPIN 基因的顺式元件分析表明,TaPIN 启动子包含植物激素、植物生长和发育以及与胁迫相关的顺式元件。此外,表达谱分析还表明,TaPIN 基因在不同组织和发育阶段的表达模式不同。一些 TaPIN 家族成员在生物和非生物胁迫下被诱导。此外,通过 qRT-PCR 验证了 TaPIN 基因的表达模式。qRT-PCR 结果也显示出相似的表达模式,略有差异。因此,这项研究的结果为 TaPIN 基因家族的表达提供了基本的基因组信息,并为解析 TaPIN 在植物发育过程和不同胁迫条件下的精确作用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1bc/8303626/d3c5285c0b36/ijms-22-07396-g001.jpg

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