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揭示全基因组中的完整双特异性磷酸酶基因(DUSPs)并研究GH_A11G3500抗性的表达模式 。 不过你提供的原文最后“against.”后面内容不完整,这可能会影响对整体准确意思的理解。

Revealing the Complete Bispecific Phosphatase Genes (DUSPs) across the Genome and Investigating the Expression Patterns of GH_A11G3500 Resistance against .

作者信息

Deng Yahui, Deng Xiaojuan, Zhao Jieyin, Ning Shuo, Gu Aixing, Chen Quanjia, Qu Yanying

机构信息

College of Agronomy, Xinjiang Agricultural University, 311 Nongda East Road, Urumqi 830052, China.

出版信息

Int J Mol Sci. 2024 Apr 19;25(8):4500. doi: 10.3390/ijms25084500.

Abstract

DUSPs, a diverse group of protein phosphatases, play a pivotal role in orchestrating cellular growth and development through intricate signaling pathways. Notably, they actively participate in the MAPK pathway, which governs crucial aspects of plant physiology, including growth regulation, disease resistance, pest resistance, and stress response. DUSP is a key enzyme, and it is the enzyme that limits the rate of cell metabolism. At present, complete understanding of the DUSP gene family in cotton and its specific roles in resistance to (VW) remains elusive. To address this knowledge gap, we conducted a comprehensive identification and analysis of four key cotton species: , , , and . The results revealed the identification of a total of 120 DUSP genes in the four cotton varieties, which were categorized into six subgroups and randomly distributed at both ends of 26 chromosomes, predominantly localized within the nucleus. Our analysis demonstrated that closely related DUSP genes exhibited similarities in terms of the conserved motif composition and gene structure. A promoter analysis performed on the GhDUSP gene promoter revealed the presence of several cis-acting elements, which are associated with abiotic and biotic stress responses, as well as hormone signaling. A tissue expression pattern analysis demonstrated significant variations in GhDUSP gene expression under different stress conditions, with roots exhibiting the highest levels, followed by stems and leaves. In terms of tissue-specific detection, petals, leaves, stems, stamens, and receptacles exhibited higher expression levels of the GhDUSP gene. The gene expression analysis results for GhDUSPs under stress suggest that DUSP genes may have a crucial role in the cotton response to stress in cotton. Through Virus-Induced Gene Silencing (VIGS) experiments, the silencing of the target gene significantly reduced the resistance efficiency of disease-resistant varieties against (VW). Consequently, we conclude that -mediated bispecific phosphorylated genes may serve as key regulators in the resistance of to (VW). This study presents a comprehensive structure designed to provide an in-depth understanding of the potential biological functions of cotton, providing a strong foundation for further research into molecular breeding and resistance to plant pathogens.

摘要

双特异性磷酸酶(DUSPs)是一类多样的蛋白质磷酸酶,通过复杂的信号通路在协调细胞生长和发育中发挥关键作用。值得注意的是,它们积极参与丝裂原活化蛋白激酶(MAPK)途径,该途径控制植物生理学的关键方面,包括生长调节、抗病性、抗虫性和应激反应。DUSP是一种关键酶,是限制细胞代谢速率的酶。目前,对棉花中DUSP基因家族及其在抗黄萎病(VW)中的具体作用仍缺乏全面了解。为了填补这一知识空白,我们对四个关键棉花品种进行了全面鉴定和分析:陆地棉、海岛棉、亚洲棉和草棉。结果显示,在这四个棉花品种中共鉴定出120个DUSP基因,它们被分为六个亚组,随机分布在26条染色体的两端,主要定位于细胞核内。我们的分析表明,密切相关 的DUSP基因在保守基序组成和基因结构方面表现出相似性。对GhDUSP基因启动子进行的启动子分析表明,存在几个与非生物和生物应激反应以及激素信号传导相关的顺式作用元件。组织表达模式分析表明,在不同应激条件下GhDUSP基因表达存在显著差异,根中的表达水平最高,其次是茎和叶。在组织特异性检测方面,花瓣、叶、茎、雄蕊和花托中GhDUSP基因的表达水平较高。应激条件下GhDUSPs的基因表达分析结果表明,DUSP基因可能在棉花对胁迫的反应中起关键作用。通过病毒诱导基因沉默(VIGS)实验,靶基因的沉默显著降低了抗病品种对黄萎病(VW)的抗性效率。因此,我们得出结论,VW介导的双特异性磷酸化基因可能是棉花抗黄萎病(VW)的关键调节因子。本研究提出了一个全面的结构,旨在深入了解棉花的潜在生物学功能,为进一步开展分子育种和植物病原菌抗性研究提供了坚实基础。

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