Genome-Wide Analysis of the JAZ Gene Family in Potato and Functional Verification of StJAZ23 Under Drought Stress
文献类型: 外文期刊
第一作者: Pu, Zhuanfang
作者: Pu, Zhuanfang;Wang, Yihao;Wang, Xiangdong;Shi, Ningfan;Yao, Panfeng;Liu, Yuhui;Bai, Jiangping;Bi, Zhenzhen;Sun, Chao;Qin, Tianyuan
作者机构:
关键词:
potato;
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:4.9; 五年影响因子:5.7 )
ISSN: 1661-6596
年卷期: 2025 年 26 卷 5 期
页码:
收录情况: SCI
摘要: The JASMONATE-ZIM DOMAIN (JAZ) repressors are crucial proteins in the jasmonic acid signaling pathway that play a significant role in plant growth, development and response to abiotic stress (such as drought, heat, salinity, and low temperature). In this study, we identified 26 potato JAZ genes and classified the corresponding predicted proteins into five subfamilies. All potato JAZ proteins exhibited the expected conserved TIFY (TIF[F/Y] XG) and JAZ domains. Additionally, we identified several stress-responsive cis-regulatory elements, notably ABRE and ARE in the promoters of the JAZ gene family. Whole transcriptome and gene family expression analysis identified StJAZ23 as a key gene responding to drought stress in the root tissues of the Atlantic (Atl) and Qingshu 9 (QS9) potato cultivars. The StJAZ23 gene was cloned, and subcellular localization analysis suggested that the StJAZ23 protein was mainly localized in the nucleus and cell membrane. This study confirmed that StJAZ23 plays a role in drought stress by analyzing several StJAZ23 overexpression (OE-3, OE-5, and OE-6) and RNA interference (RNAi-3, RNAi-6, and RNAi-13) transgenic potato lines. The OE lines displayed significantly increased StJAZ23 expression compared to wild-type (WT) plants, while RNAi lines exhibited significantly reduced expression. The total root length, root tip count, and root surface area were significantly enhanced in OE lines under drought stress, compared to WT plants, whereas RNAi lines showed significant reductions. StJAZ23 overexpression also increased the activities of SOD, POD, CAT, and root vigor under drought stress and JA and ABA hormone levels were also significantly increased in roots under drought stress. These results highlight the positive role of the StJAZ23 gene in enhancing potato resilience to drought stress.
分类号:
- 相关文献
作者其他论文 更多>>
-
Establishment of a CRISPR-Cas9-Mediated Genome Editing System in Flax
作者:Wang, Chunming;Sun, Chao;Shi, Li;Bai, Yongsheng;Yu, Weichang;Zhou, Jiannan;Liu, Shuai;Wang, Chunming;Yu, Weichang
关键词:
-
BnaEFR1 and BnaEFR2 genes play key roles in elf18-triggered immunity in Brassica napus L.
作者:Cui, Junmei;Qin, Jiangyuan;Wei, Jiaping;Zhu, Shujun;Sa, Ermei;Wei, Hongyan;Zheng, Guoqiang;Fang, Yan;Wu, Zefeng;Yao, Panfeng;Liu, Zigang;Wang, Jinxiong
关键词:Elf18; Efr; Immune responses; Phosphorylation; B. napus
-
TEA5K: a high-resolution and liquid-phase multiple-SNP array for molecular breeding in tea plant
作者:Liu, Dingding;Zhang, Chenyu;Ye, Yuanyuan;Mei, Piao;Gong, Yang;Zhao, Xuecheng;Ding, Shiqi;Chen, Jiedan;Chen, Liang;Ma, Chunlei;Liu, Zhen;Sun, Chao;Chen, Liang
关键词:Genotyping by target sequencing; Cultivar identification; Genetic evolution; Genetic maps; Gene mapping
-
Transcriptomics-proteomics analysis reveals StCOMT1 regulates drought, alkali and combined stresses in potato
作者:Zhang, Ruyan;Wang, Yong;Kang, Yichen;Du, Yunyun;Wang, Xingxing;Jiao, Shujuan;Yang, Xinyu;Qin, Shuhao;Zhang, Weina;Liu, Yuhui;Yang, Xinyu
关键词:Potato; Drought-alkali stress; Transcriptome; Proteome; COMT
-
TRIM5α/Cyclophilin A-Modified MDBK Cells for Lentiviral-Based Gene Editing
作者:Wo, Lijing;Qi, Shuhui;Guo, Yongqi;Sun, Chao;Yin, Xin
关键词:MDBK; TRIM5 alpha; CypA
-
24-Epibrassinolide Improves Potato (Solanum tuberosum L.) Tolerance to Alkaline Salt Stress by Regulating Antioxidant Defence and Photosynthetic Properties
作者:Wang, Yong;Zhang, Ruyan;Wang, Xingxing;Jiao, Shujuan;Zhang, Weina;Kang, Yichen;Li, Ming;Xie, Jiali;Qin, Shuhao;Yang, Xinyu;Liu, Yuhui
关键词:24-Epibrassinolide; alkaline salt stress; antioxidant system; photosynthetic characteristics; potato
-
The impact of biodegradable plastics on methane and carbon dioxide emissions in soil ecosystems: a Fourier transform infrared spectroscopy approach
作者:Wang, Yihao;Jiao, Leizi;Zhao, Chunjiang;Dong, Wentao;Gong, Wenwen;Dong, Daming;Wang, Yihao
关键词: