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小麦( L.) GH13 家族四个亚家族成员的全基因组鉴定、特征描述和表达分析

Genome-Wide Identification, Characterization, and Expression Analysis of Four Subgroup Members of the GH13 Family in Wheat ( L.).

机构信息

Henan Key Laboratory of Ion-Beam Green Agriculture Bioengineering, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou 450052, China.

State Key Laboratory of Cotton Biology, School of Agricultural Sciences, Zhengzhou University, Zhengzhou 450052, China.

出版信息

Int J Mol Sci. 2024 Mar 17;25(6):3399. doi: 10.3390/ijms25063399.

Abstract

The glycoside hydrolase 13 (GH13) family is crucial for catalyzing α-glucoside linkages, and plays a key role in plant growth, development, and stress responses. Despite its significance, its role in plants remains understudied. This study targeted four GH13 subgroups in wheat, identifying 66 GH13 members from the latest wheat database (IWGSC RefSeq v2.1), including 36 α-amylase (AMY) members, 18 1,4-α-glucan-branching enzyme (SBE) members, 9 isoamylase (ISA) members, and 3 pullulanase (PU) members. Chromosomal distribution reveals a concentration of wheat group 7 chromosomes. Phylogenetic analysis underscores significant evolutionary distance variations among the subgroups, with distinct molecular structures. Replication events shaped subgroup evolution, particularly in regard to AMY members. Subcellular localization indicates AMY member predominance in extracellular and chloroplast regions, while others localize solely in chloroplasts, confirmed by the heterologous expression of and in tobacco. Moreover, 3D structural analysis shows the consistency of GH13 across species. Promoter cis-acting elements are suggested to be involved in growth, stress tolerance, and starch metabolism signaling. The RNA-seq data revealed expression changes under drought and submergence stress, and significant expression variation was observed between strong and weak gluten varieties during seed germination using quantitative real-time PCR (qRT-PCR), correlating with seed starch content. These findings demonstrate the pivotal role of GH13 family gene expression in wheat germination, concerning variety preference and environmental stress. Overall, this study advances the understanding of wheat GH13 subgroups, laying the groundwork for further functional studies.

摘要

糖苷水解酶 13(GH13)家族对于催化α-糖苷键至关重要,在植物生长、发育和应激反应中发挥着关键作用。尽管其意义重大,但它在植物中的作用仍未得到充分研究。本研究针对小麦中的四个 GH13 亚组,从最新的小麦数据库(IWGSC RefSeq v2.1)中鉴定出 66 个 GH13 成员,包括 36 个α-淀粉酶(AMY)成员、18 个 1,4-α-葡聚糖分支酶(SBE)成员、9 个异淀粉酶(ISA)成员和 3 个普鲁兰酶(PU)成员。染色体分布显示出小麦第 7 组染色体的集中。系统发育分析强调了亚组之间显著的进化距离变化,具有不同的分子结构。复制事件塑造了亚组的进化,特别是在 AMY 成员方面。亚细胞定位表明 AMY 成员主要存在于细胞外和叶绿体区域,而其他成员仅存在于叶绿体中,这通过在烟草中异源表达 和 得到证实。此外,3D 结构分析表明 GH13 在不同物种之间具有一致性。启动子顺式作用元件被认为参与生长、应激耐受和淀粉代谢信号转导。RNA-seq 数据显示,干旱和淹没胁迫下 的表达发生变化,在种子萌发过程中,利用定量实时 PCR(qRT-PCR)观察到强筋和弱筋品种之间的 表达存在显著差异,与种子淀粉含量相关。这些发现表明 GH13 家族基因表达在小麦萌发中起着关键作用,涉及品种偏好和环境应激。总的来说,本研究推进了对小麦 GH13 亚组的理解,为进一步的功能研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f3e/10970197/9459772d6f18/ijms-25-03399-g001.jpg

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