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全基因组鉴定与表达谱分析与种子萌发和非生物胁迫响应相关的 HD-Zip 转录因子家族在 中的作用。

Genome-Wide Identification and Expression Profile of the HD-Zip Transcription Factor Family Associated with Seed Germination and Abiotic Stress Response in .

机构信息

Department of Forage Breeding and Cultivation, College of Grassland Science and Technology, Sichuan Agricultural University, Chengdu 611130, China.

Institute of Grassland Sciences, Chongqing Academy of Animal Science, Chongqing 402460, China.

出版信息

Genes (Basel). 2022 Nov 30;13(12):2256. doi: 10.3390/genes13122256.

Abstract

is an ornamental grass, non-food bioenergy crop, and forage with high feeding value. It can adapt to many kinds of soil conditions due to its high level of resistance to various abiotic stresses. However, a low level of seed germination restricts the utilization and application of . It is reported that the Homeodomain-leucine zipper (HD-Zip) gene family participates in plant growth and development and ability to cope with outside environment stresses, which may potentially regulate seed germination and stress resistance in . In this study, a complete overview of genes was conducted, including gene structure, conserved motifs, chromosomal distribution, and gene duplication patterns. A total of 169 members were identified, and the HD-Zip proteins were divided into four subgroups. Inter-chromosomal evolutionary analysis revealed that four pairs of tandem duplicate genes and 72 segmental duplications were detected, suggesting the possible role of gene replication events in the amplification of the gene family. There was an uneven distribution of genes on 19 chromosomes of . Also, evolutionary analysis showed that gene family members had more collinearity with monocotyledons and less with dicotyledons. The gene structure analysis showed that there were 93.5% of proteins with motif 1 and motif 4, while motif 10 was only found in group IV. Based on the cis-elements analysis, it appeared that most of the genes were related to plant growth and development, various hormones, and abiotic stress. Furthermore, qRT-PCR analysis showed that was significantly expressed in seed germination and and were highly expressed under chromium, salt, and drought stress. Results in this study will provide a basis for further exploring the potential role of genes in stress responses and genetic improvement of seed germination.

摘要

是一种观赏草、非食用生物能源作物和具有高饲用价值的饲料。由于其对各种非生物胁迫的高抗性,它可以适应多种土壤条件。然而,低水平的种子发芽限制了 的利用和应用。据报道,同源域亮氨酸拉链(HD-Zip)基因家族参与植物的生长发育和应对外界环境胁迫的能力,这可能潜在地调节 的种子发芽和抗逆性。在这项研究中,对 基因进行了全面概述,包括基因结构、保守基序、染色体分布和基因复制模式。共鉴定出 169 个成员,HD-Zip 蛋白分为四个亚组。染色体间进化分析表明,检测到四对串联重复基因和 72 个片段重复,表明基因复制事件可能在 基因家族的扩增中发挥作用。 在 的 19 条染色体上存在基因不均匀分布。此外,进化分析表明, 基因家族成员与单子叶植物具有更多的共线性,与双子叶植物的共线性较少。基因结构分析表明,有 93.5%的蛋白质具有基序 1 和基序 4,而基序 10 仅在第四组中发现。基于顺式元件分析,似乎大多数基因与植物的生长发育、各种激素和非生物胁迫有关。此外,qRT-PCR 分析表明, 在种子发芽过程中表达显著, 在铬、盐和干旱胁迫下高度表达。本研究的结果将为进一步探索 基因在胁迫响应和 种子发芽遗传改良中的潜在作用提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef4c/9777646/d160f1d15d11/genes-13-02256-g001.jpg

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