Amino Acid Metabolism and Transporters in Plant-Pathogen Interactions: Mechanisms and Implications
文献类型: 外文期刊
第一作者: Yao, Xuehui
作者: Yao, Xuehui;Zhang, Yangyong;Sui, Xiaolei
作者机构:
关键词: amino acid homoeostasis; amino acid metabolism; amino acid transporter; BABA; nutrition; plant immunity; plant-pathogen interaction
期刊名称:PLANT CELL AND ENVIRONMENT ( 影响因子:6.3; 五年影响因子:7.7 )
ISSN: 0140-7791
年卷期: 2025 年 48 卷 8 期
页码:
收录情况: SCI
摘要: In the intricate landscape of plant-pathogen interactions, amino acids and their dedicated transporters emerge as pivotal players underpinning immune signalling and metabolic reprogramming. Amino acid metabolism serves as a linchpin in orchestrating systemic defence responses, with transporter-mediated amino acid homoeostasis intricately intertwined with immune pathways. This review synthesizes the dual roles of amino acids, including glutamate, proline, gamma-aminobutyric acid, beta-aminobutyric acid and pipecolic acid, as metabolic intermediates and signalling molecules that modulate defence responses. Complementing this metabolic framework, amino acid transporters, including LHT1 and members of the AAP and UMAMIT family, participate in plant defence against pathogens or provide nutrients to pathogens by regulating the transmembrane transport of amino acids. Their disease resistance or susceptibility functions are closely related to plant tissue-specificity and substrate-specificity. Additionally, this review explores the potential coordinated regulation between amino acid and sugar transporters in the context of plant-pathogen interactions. Looking ahead, future research should focus on resolving transporter mechanisms in resistance, dissecting regulatory hubs linking metabolism and transport, mapping nutrient fluxes at the host-pathogen interface and exploring the subcellular localization and transport direction of transporters to inform precision crop protection strategies.
分类号:
- 相关文献
作者其他论文 更多>>
-
Rapid introgression of the clubroot resistance gene CRa into cabbage skeleton inbred lines through marker assisted selection
作者:Zhang, Na;Zhu, Mingzhao;Qiu, Yuting;Fang, Zhiyuan;Zhuang, Mu;Zhang, Yangyong;Lv, Honghao;Ji, Jialei;Yang, Limei;Wang, Yong;Zhu, Mingzhao;Hou, Xilin
关键词:Clubroot; Breeding; Backcross; Marker assisted selection
-
Molecular regulation and domestication of parthenocarpy in cucumber
作者:Nie, Jing;Lin, Tao;Lv, Lijun;Shi, Yuzi;Guo, Yicong;Zhang, Qian;Li, Hujian;Yang, Zhen;Li, Wenbo;Xu, Lingjun;Ma, Nan;Sui, Xiaolei;Nie, Jing;Wu, Sheng;Sun, Chuanqing;Huang, Hongyu;Zhang, Lidong;Li, Yuhe;Kong, Weiliang;Wu, Sheng;Zhang, Zhonghua;Sun, Chuanqing
关键词:
-
Genome-wide identification of the ECERIFERUM (CER) gene family in cabbage and critical role of BoCER4.1 in wax biosynthesis
作者:Cao, Wenxue;Liu, Feng;Cao, Wenxue;Wang, Caihong;Yang, Limei;Zhang, Yangyong;Zhuang, Mu;Lv, Honghao;Wang, Yong;Ji, Jialei;Sun, Huagang;Ji, Jialei
关键词:Cabbage; CER gene family; Cuticular wax synthesis; Drought resistance; BoCER4
-
Multi-Time Point Transcriptome Analysis and Functional Validation Revealed Bol4CL41 Negatively Regulates Black Rot Resistance in Cabbage
作者:Ma, Hongxue;Fang, Zhiyuan;Yu, Jingquan;Hu, Zhangjian;Ma, Hongxue;Deng, Siping;Kong, Congcong;Zhang, Yulun;Zhao, Tong;Ji, Jialei;Wang, Yong;Zhang, Yangyong;Zhuang, Mu;Yang, Limei;Fang, Zhiyuan;Lv, Honghao;Kong, Congcong;Lebedeva, Marina;Taranov, Vasiliy;Artemyeva, Anna M.
关键词:multi-time point transcriptome; cabbage; black rot;
4CL gene family; functional validation -
Rapid design of transgene-free cabbage with desired anthocyanin contents via HI-Edit
作者:Li, Hongrun;Shen, Jiaming;Zhao, Xinyu;Ji, Jialei;Wang, Yong;Yang, Limei;Zhuang, Mu;Zhang, Yangyong;Lv, Honghao;Liu, Liwang
关键词:
-
Transcriptome and Metabolome Analyses Offer New Insights into Bolting Time Regulation in Broccoli
作者:Kuang, Linqian;Huang, Ke;Kuang, Linqian;Zhang, Yue;Zhang, Nan;Zhang, Yangyong;Lv, Honghao;Wang, Yong;Zhuang, Mu;Yang, Limei;Li, Zhansheng;Ji, Jialei
关键词:broccoli; bolting time; transcriptome; metabolome; floral pathway; sugar signal; hormone signaling
-
Transcriptome Analysis of Cabbage Near-Isogenic Lines Reveals the Involvement of the Plant Defensin Gene PDF1.2 in Fusarium Wilt Resistance
作者:Zhao, Cunbao;Liu, Xing;Zhou, Ailing;Ji, Jialei;Wang, Yong;Zhuang, Mu;Zhang, Yangyong;Yang, Limei;Lv, Honghao;Ma, Lisong;Chellappan, Biju V.;Artemyeva, Anna M.
关键词:cabbage; near-isogenic lines;
Fusarium oxysporum f. sp.conglutinans ; plant hormones; plant defensin protein