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番茄中NADPH氧化酶基因家族的全基因组鉴定与表达谱分析

Genome-Wide Identification and Expression Profile Analysis of the NADPH Oxidase Gene Family in L.

作者信息

Jiang Qingxue, Zhou Xinyue, Tang Jun, Yi Dengxia, Ma Lin, Wang Xuemin

机构信息

Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Int J Mol Sci. 2025 Mar 13;26(6):2576. doi: 10.3390/ijms26062576.

Abstract

The plant respiratory burst oxidase homologs () are crucial enzymes responsible for the production of reactive oxygen species (ROS) in plants, playing a pivotal role in regulating various aspects of plant growth, development, and stress responses. While family members have been identified across a wide range of plant species, the functions and characteristics of the gene family in oats remain poorly understood. In this study, 35 members of the gene family in the oat genome were identified using bioinformatics approaches. Conserved motif and gene structure analyses revealed that most genes contain Motif4 and Motif5. Phylogenetic tree analysis demonstrated that the can be classified into five distinct subfamilies. Synteny analysis indicated that share the highest number of syntenic gene pairs with wheat. Additionally, cis-regulatory element analysis identified several elements associated with drought and hypoxia-specific responses in . Expression analysis using qRT-PCR showed that 28 genes were upregulated under drought stress, while 18 were downregulated under salt stress. Notably, the genes and were found to be involved in both drought and salt stress responses. In conclusion, these findings provide a valuable foundation for future functional studies of the gene family in oats, offering insights that could contribute to the improvement and innovation of oat varieties and germplasm.

摘要

植物呼吸爆发氧化酶同源物()是负责植物中活性氧(ROS)产生的关键酶,在调节植物生长、发育和应激反应的各个方面发挥着关键作用。虽然已在广泛的植物物种中鉴定出家族成员,但燕麦中基因家族的功能和特征仍知之甚少。在本研究中,利用生物信息学方法在燕麦基因组中鉴定出了35个基因家族成员。保守基序和基因结构分析表明,大多数基因包含基序4和基序5。系统发育树分析表明,可分为五个不同的亚家族。共线性分析表明,与小麦共享的共线性基因对数量最多。此外,顺式调控元件分析确定了几个与中的干旱和缺氧特异性反应相关的元件。使用qRT-PCR进行的表达分析表明,28个基因在干旱胁迫下上调,而18个基因在盐胁迫下下调。值得注意的是,发现基因和参与干旱和盐胁迫反应。总之,这些发现为燕麦基因家族未来的功能研究提供了有价值的基础,提供了有助于燕麦品种和种质改良与创新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cd6/11942474/0b394e7a98c2/ijms-26-02576-g001.jpg

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