对芒果(Mangifera indica)中的双组分系统(TCS)基因家族成员进行的计算分析和表达谱分析表明了它们在应激反应中的作用。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-06-01 DOI:10.1071/FP24055
Muhammad Sadaqat, Kinza Fatima, Farrukh Azeem, Tayyaba Shaheen, Mahmood-Ur- Rahman, Tehreem Ali, Wafa Abdullah I Al-Megrin, Muhammad Tahir Ul Qamar
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引用次数: 0

摘要

双组分系统(TCS)基因家族是植物中最重要的信号转导家族之一,参与调控各种非生物胁迫、细胞生长和分裂。为了了解 TCS 基因在芒果(Mangifera indica)中的作用,研究人员对芒果中的 TCS 基因家族进行了全面分析,最终确定了 65 个 MiTCS 基因。系统进化分析将 MiTCS 分成三组(组氨酸激酶、含组氨酸磷酸转移蛋白和反应调节因子)和 11 个亚组。在 MiTCSs 中发现了 1 个串联重复和 23 对节段重复。启动子分析表明,MiTCSs 包含大量与环境胁迫、激素反应、光信号和植物发育有关的顺式元件。基因本体分析表明,它们参与了各种生物过程和分子功能,特别是信号转导。蛋白-蛋白相互作用分析表明,MiTCS 蛋白之间存在相互作用。在不同组织和多种胁迫(干旱、寒冷和疾病)下的表达模式表明,不同条件下各种基因的表达水平各不相同。MiTCSs的三维结构预测表明,同类成员之间存在结构上的保守性。这些信息可进一步用于改良栽培品种的开发,并为深入了解 TCS 基因家族的功能奠定基础。
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Computational analysis and expression profiling of two-component system (TCS) gene family members in mango (Mangifera indica) indicated their roles in stress response.

The two-component system (TCS) gene family is among the most important signal transduction families in plants and is involved in the regulation of various abiotic stresses, cell growth and division. To understand the role of TCS genes in mango (Mangifera indica ), a comprehensive analysis of TCS gene family was carried out in mango leading to identification of 65 MiTCS genes. Phylogenetic analysis divided MiTCSs into three groups (histidine kinases, histidine-containing phosphotransfer proteins, and response regulators) and 11 subgroups. One tandem duplication and 23 pairs of segmental duplicates were found within the MiTCSs . Promoter analysis revealed that MiTCSs contain a large number of cis -elements associated with environmental stresses, hormone response, light signalling, and plant development. Gene ontology analysis showed their involvement in various biological processes and molecular functions, particularly signal transduction. Protein-protein interaction analysis showed that MiTCS proteins interacted with each other. The expression pattern in various tissues and under many stresses (drought, cold, and disease) showed that expression levels varied among various genes in different conditions. MiTCSs 3D structure predictions showed structural conservation among members of the same groups. This information can be further used to develop improved cultivars and will serve as a foundation for gaining more functional insights into the TCS gene family.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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