数字农科院2.0

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

文献类型: 外文期刊

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

作者机构:

关键词: NADPH oxidase;gene family;drought stress;salt stress;expression analysis

期刊名称: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES

ISSN: 1661-6596

年卷期: 2025 年 26 卷 6 期

页码:

收录情况: SCIE(2025版)

摘要: The plant respiratory burst oxidase homologs (RBOHs) 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 RBOH family members have been identified across a wide range of plant species, the functions and characteristics of the RBOH gene family in oats remain poorly understood. In this study, 35 members of the RBOH gene family in the oat genome were identified using bioinformatics approaches. Conserved motif and gene structure analyses revealed that most AsRBOH genes contain Motif4 and Motif5. Phylogenetic tree analysis demonstrated that the AsRBOHs can be classified into five distinct subfamilies. Synteny analysis indicated that AsRBOHs 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 AsRBOHs. Expression analysis using qRT-PCR showed that 28 AsRBOH genes were upregulated under drought stress, while 18 were downregulated under salt stress. Notably, the genes 7DG1382190 and 7AG1225850 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 AsRBOH gene family in oats, offering insights that could contribute to the improvement and innovation of oat varieties and germplasm.

分类号:

  • 相关文献

[1]Comprehensive genome-wide identification and expression analysis of the EPF/EPFL gene family in oat. Qingxue Jiang,Lin Ma,Siyuan Guo,Xinyue Zhou,Zhipeng Zhang,Yanhong Cui,Jun Tang,Dengxia Yi,Xuemin Wang. 2025

[2]Genome-wide identification and analysis of the MADS-box gene family in apple. Tian, Yi,Dong, Qinglong,Ji, Zhirui,Chi, Fumei,Cong, Peihua,Zhou, Zongshan.

[3]Genome-wide identification of SWEET genes reveals their roles during seed development in peanuts. Yang Li,Mengjia Fu,Jiaming Li,Jie Wu,Zhenyang Shua,Tiantian Chen,Wen Yao,Dongxin Huai. 2024

[4]Genome-Wide Analysis of Callose Synthase (CALS) Genes in Cabbage (Brassica oleracea var. capitata L.): Identification and Expression Profiling During Hyaloperonospora parasitica Infection. Li, Jiamin,Wu, Yuankang,Yao, Xuehui,Yang, Limei,Zhuang, Mu,Lv, Honghao,Wang, Yong,Ji, Jialei,Zhang, Yangyong. 2025

[5]Molecular Evolution of Plant SULTR Proteins and Expression Analysis of HvSULTR Under Heat Stress in Barley. Chunmeng Zhu,Xuan Chen,Li Hao,Wessam A. Abdelrady,Tao Tong,Fenglin Deng,Fanrong Zeng,Zhong Hua Chen,Xiaojian Wu,Wei Jiang. 2025

[6]Changes of antioxidative enzymes and cell membrane osmosis in tomato colonized by arbuscular mycorrhizae under NaCl stress. ZhongQun, He,ChaoXing, He,ZhiBin, Zhang,ZhiRong, Zou,HuaiSong, Wang.

[7]Identification of the bZIP Gene Family and Investigation of Their Response to Drought Stress in Dendrobium catenatum. Wang P.,Li Y.,Zhang T.,Kang Y.,Li W.,Wang J.,Yu W.,Zhou Y.. 2023

[8]An alfalfa (Medicago sativa L.) ethylene response factor gene, MsERF11, enhances salt tolerance in transgenic Arabidopsis. Chen, Tingting,Yang, Qingchuan,Ding, Wang,Chen, Tingting,Zhang, Xinquan,Gruber, Margaret. 2012

[9]Expression of an alfalfa (Medicago sativa L.) ethylene response factor gene MsERF8 in tobacco plants enhances resistance to salinity. Chen, Tingting,Sun, Yan,Chen, Tingting,Yang, Qingchuan,Kang, Junmei,Ding, Wang,Zhang, Tiejun,Chen, Tingting,Zhang, Xinquan,Gruber, Margaret.

[10]Genome-wide identification and characterization of the trehalose-6-phosphate synthetase (Tps) gene family in watermelon (citrullus lanatus) and their transcriptional responses to salt stress. Gaopeng Yuan,Junpu Liu,Guolin An,Weihua Li,Wenjing Si,Dexi Sun,Yingchun Zhu. 2022

[11]Two Aquaporin Genes, GhPIP2;7 and GhTIP2;1, Positively Regulate the Tolerance of Upland Cotton to Salt and Osmotic Stresses. Anhui Guo,Jianfeng Hao,Ying Su,Bin Li,Nan Zhao,Meng Zhu,Yi Huang,Baoming Tian,Gongyao Shi,Jinping Hua. 2022

[12]Genome-Wide Investigation and Co-Expression Network Analysis of SBT Family Gene in Gossypium. Tianxi Xue,Lisen Liu,Xinyi Zhang,Zhongqiu Li,Minghao Sheng,Xiaoyang Ge,Wenying Xu,Zhen Su. 2023

[13]Cotton STARD Gene Family: Characterization, Evolution, and Expression Profiles During Salt Stress. Ruifeng Cui,Jiuguang Sun,Shuyan Li,Yupeng Cui,Cun Rui,Minshan Sun,Wuwei Ye. 2025

[14]Genome-wide identification analysis of aldo–keto reductase gene family in cotton and GhAKR40 role in salt stress tolerance. Yiman Liu,Qiankun Liu,Yuqing Hou,Guangxing Zhang,Jiangping Han,Zhaoguo Li,Aziz Khan,Zhongli Zhou,Xiaoyan Cai,Yanchao Xu,Jie Zheng,Fang Liu. 2025

[15]Identification of the NPF gene family in melon and functional analysis of CmNPF7.3 in conferring salt tolerance. Bing Xue,Ming Li,Yang Xue,Linlong Zhang,Fangfang Wang,Jie Li,Shengjie Zhao,Zhenyu Huang,Zhihong Xu,Pingyong Wang. 2025

[16]Genetic Dissection for Leaf Correlative Traits of Rice (Oryza sativa L.)Under Drought Stress. Guo Longbiao,Qian Qian,Zeng Dali,Dong Guojun,Teng Sheng,Zhu Lihuang. 2004

[17]Inducible and constitutive expression of an elicitor gene Hrip1 from Alternaria tenuissima enhances stress tolerance in Arabidopsis. Qiu, De-Wen,Zeng, Hong-Mei,Guo, Li-Hua,Yang, Xiu-Fen,Liu, Zheng.

[18]Comparative proteomic analysis of alfalfa revealed new salt and drought stress-related factors involved in seed germination. Ma, Qiaoli,Kang, Junmei,Zhang, Kun,Wang, Tenghua,Sun, Yan,Kang, Junmei,Long, Ruicai,Zhang, Tiejun,Yang, Qingchuan,Ma, Qiaoli,Xiong, Junbo.

[19]Isolation and characterization of induced genes under drought stress at the flowering stage in maize (Zea mays). Li, Hui-Yong,Wang, Tian-Yu,Shi, Yun-Su,Fu, Jun-Jie,Song, Yan-Chun,Wang, Guo-Ying,Li, Yu.

[20]Simultaneous Overexpression of the HhERF2 and PeDREB2a Genes Enhanced Tolerances to Salt and Drought in Transgenic Cotton. Li, JinBo,Dong, XueNi,Shao, JiRong,Li, JinBo,Dong, XueNi,Lei, Zhi,Li, YongLiang,Yang, PeiYang,Tao, Fei,Wu, YanMin,Zhao, Liang,Li, Shi-Gang,Du, LinFeng.

作者其他论文 更多>>