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首页> 外文期刊>Frontiers in Plant Science >Molecular Characterization and Expression Profiling of Brachypodium distachyon L. Cystatin Genes Reveal High Evolutionary Conservation and Functional Divergence in Response to Abiotic Stress
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Molecular Characterization and Expression Profiling of Brachypodium distachyon L. Cystatin Genes Reveal High Evolutionary Conservation and Functional Divergence in Response to Abiotic Stress

机译: Brachypodium distachyon L。Cystatin基因的分子表征和表达谱揭示了对非生物胁迫的高度进化保守性和功能差异

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Cystatin is a class of proteins mainly involved in cysteine protease inhibition and plant growth and development, as well as tolerance under various abiotic stresses. In this study, we performed the first comprehensive analysis of the molecular characterization and expression profiling in response to various abiotic stresses of the cystatin gene family in Brachypodium distachyon , a novel model plant for Triticum species with huge genomes. Comprehensive searches of the Brachypodium genome database identified 25 B. distachyon cystatin ( BdC ) genes that are distributed unevenly on chromosomes; of these, nine and two were involved in tandem and segmental duplication events, respectively. All BdC genes had similar exon/intron structural organization, with three conserved motifs similar to those from other plant species, indicating their high evolutionary conservation. Expression profiling of 10 typical BdC genes revealed ubiquitous expression in different organs at varying expression levels. BdC gene expression in seedling leaves was particularly highly induced by various abiotic stresses, including the plant hormone abscisic acid and various environmental cues (cold, H_(2)O_(2), CdCl_(2), salt, and drought). Interestingly, most BdC genes were significantly upregulated under multiple abiotic stresses, including BdC15 under all stresses, BdC7-2 and BdC10 under five stresses, and BdC7-1, BdC2-1, BdC14 , and BdC12 under four stresses. The putative metabolic pathways of cytastin genes in response to various abiotic stresses mainly involve the aberrant protein degradation pathway and reactive oxygen species (ROS)-triggered programmed cell death signaling pathways. These observations provide a better understanding of the structural and functional characteristics of the plant cystatin gene family.
机译:胱抑素是一类蛋白质,主要参与半胱氨酸蛋白酶的抑制和植物的生长发育,以及在各种非生物胁迫下的耐受性。在这项研究中,我们对Brachypodium distachyon中的cystatin基因家族的各种非生物胁迫进行了分子表征和表达谱分析的首次综合分析,这是一种具有巨大基因组的小麦属植物的新型模型植物。对Brachypodium基因组数据库的全面搜索发现了25个B. distachyon cystatin(BdC)基因,它们在染色体上分布不均。其中,有9个和2个分别参与了串联和分段复制事件。所有BdC基因都具有相似的外显子/内含子结构组织,具有三个保守的基序,这些基序与其他植物物种的基序相似,表明它们的高度进化保守性。 10个典型BdC基因的表达谱显示了在不同器官中不同表达水平的普遍表达。各种非生物胁迫,包括植物激素脱落酸和各种环境提示(冷,H_(2)O_(2),CdCl_(2),盐和干旱)特别强烈地诱导了幼苗叶片中BdC基因的表达。有趣的是,大多数BdC基因在多种非生物胁迫下均显着上调,包括在所有胁迫下的BdC15,在五个胁迫下的BdC7-2和BdC10以及在四个胁迫下的BdC7-1,BdC2-1,BdC14和BdC12。胞质蛋白基因对各种非生物胁迫的响应的假定代谢途径主要涉及异常的蛋白降解途径和活性氧(ROS)触发的程序性细胞死亡信号传导途径。这些观察提供了对植物胱抑素基因家族的结构和功能特征的更好的理解。

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