数字农科院2.0

Crop antiviral defense: Past and future perspective

文献类型: 外文期刊

作者: Yang, Zhirui;Li, Guangyao;Zhang, Yongliang;Li, Fangfang;Zhou, Tao;Ye, Jian;Wang, Xianbing;Zhang, Xiaoming;Sun, Zongtao;Tao, Xiaorong;Wu, Ming;Wu, Jianguo;Li, Yi

作者机构:

关键词: crops;antiviral defense;RNA silencing;autophagy;ubiquitin proteasome system

期刊名称: SCIENCE CHINA-LIFE SCIENCES

ISSN: 1674-7305

年卷期: 2024 年

页码:

收录情况: SCIE(2024版) ; ; CSCD(2023-2024年度) ; ; 科技核心(2024版)

摘要: Viral pathogens not only threaten the health and life of humans and animals but also cause enormous crop yield losses and contribute to global food insecurity. To defend against viral pathogens, plants have evolved an intricate immune system to perceive and cope with such attacks. Although most of the fundamental studies were carried out in model plants, more recent research in crops has provided new insights into the antiviral strategies employed by crop plants. We summarize recent advances in understanding the biological roles of cellular receptors, RNA silencing, RNA decay, hormone signaling, autophagy, and ubiquitination in manipulating crop host-mediated antiviral responses. The potential functions of circular RNAs, the rhizosphere microbiome, and the foliar microbiome of crops in plant-virus interactions will be fascinating research directions in the future. These findings will be beneficial for the development of modern crop improvement strategies.

分类号:

  • 相关文献

[1]Dissectingthemoleculargeneticbasisofshadeavoidanceresponseinhigherplants:frommodelspeciestocrops. YurongXie,HaiWang,YongpingZhao,王海洋. 2015

[2]The Ubiquitin-Proteasome System Facilitates Membrane Fusion and Uncoating during Coronavirus Entry. Xiao Yuan,Xiaoman Zhang,Huan Wang,Xiang Mao,Yingjie Sun,Lei Tan,Cuiping Song,Xusheng Qiu,Chan Ding,Ying Liao. 2023

[3]The effect of increased atmospheric carbon dioxide concentration on emissions of nitrous oxide, carbon dioxide and methane from a wheat field in a semi-arid environment in northern China. Lam, Shu Kee,Norton, Rob,Chen, Deli,Lin, Erda,Norton, Rob.

[4]Tripartite Interactions Between Jasmonic/Salicylic Acid P.athways, Western Flower Thrips, A nd Thrips-Transmitted Tomato Zonate Spot Virus Infection In Capsicuum Annuum. Zheng, Xue,Zhao, Lihua,Zheng, Limin,Zheng, Kuanyu,Zhang, Jie,Gao, Yulin,Chen, Yongdui,Zhao, Xingyue,Mu, Ye,Chen, Yong. 2019

[5]Two viral proteins translated from one open reading frame target different layers of plant defense. Mei, Yuzhen,Hu, Tao,Wang, Yaqin,Lozano-Duran, Rosa,Yang, Xiuling,Zhou, Xueping. 2024

[6]Bacterial Symbiont Mediates Aphid Antiviral Systems to Inhibit the Propagation of a New Pathogenic Densovirus in Chinese Wheat Aphid, Sitobion miscanthi. Li, Tong,Chen, Jing,Yang, Gongqiang,Wu, Yuqing,Zhou, Juan,Xu, Pengjun,Ren, Feirong,Li, Minghui,Wu, Xujin,Qiao, Gexia. 2024

[7]A novel strategy to enhance resistance to Cucumber mosaic virus in tomato by grafting to transgenic rootstocks. Bai Miao,Chen Wen-ting,Yang Gun-shun,Xie Bing-yan. 2016

[8]Improved Pathogenicity of a Beet Black Scorch Virus Variant by Low Temperature and Co-infection with its Satellite RNA. Xu, Jin,Liu, Deshui,Zhang, Yongliang,Wang, Ying,Han, Chenggui,Li, Dawei,Yu, Jia-Lin,Wang, Xian-Bing,Xu, Jin. 2016

[9]High-Level Accumulation of Exogenous Small RNAs Not Affecting Endogenous Small RNA Biogenesis and Function in Plants. Shen Wan-xia,Zhou Chang-yong,Shen Wan-xia,Smith, Neil A.,Wang Ming-bo,Shen Wan-xia,Zhou Chang-yong. 2014

[10]Genome-wide identification of Dicer-like, Argonaute and RNA-dependent RNA polymerase gene families and their expression analyses in response to viral infection and abiotic stresses in Solanum lycopersicum. Mao, Zhen-Chuan,Kang, Hou-Xiang,Chen, Guo-Hua,Yang, Yu-Hong,Xie, Bing-Yan,Bai, Miao,Yang, Guo-Shun,Chen, Wen-Ting.

[11]Sgs3 Cooperates With Rdr6 In T.riggering Geminivirus-Induced Gene Silencing A nd In Suppressing Geminivirus Infection In Nicotiana Benthamiana. Wang, Yaqin,Li, Fangfang,Li, Fangfang,Zhou, Xueping,Zhou, Xueping. 2017

[12]Durable field resistance to wheat yellow mosaic virus in transgenic wheat containing the antisense virus polymerase gene. Chen, Ming,Ma, Youzhi,Du, Lipu,Ye, Xingguo,Pang, Junlan,Zhang, Xinmei,Li, Liancheng,Xu, Huijun,Sun, Liying,Chen, Jiong,Andika, Ida B.,Chen, Jianping.

[13]RNA-dependent RNA polymerase 1 delays the accumulation of viroids in infected plants. 李帅,,张志想,,周常勇,,李世访. 2021

[14]P25 and P37 proteins encoded by firespike leafroll-associated virus are viral suppressors of RNA silencing. Wang Y.,Liu H.,Wang Z.,Guo Y.,Hu T.,Zhou X.. 2022

[15]Identification Of The Potential Virulence F.actors And Rna Silencing S uppressors Of Mulberry Mosaic Dwarf-Associated Geminivirus. Yang, XL,Ren, YX,Sun, SS,Wang, DX,Zhang, FF,Li, DW,Li, SF,Zhou, XP. 2018

[16]Characterization of small interfering RNAs derived from pepper mild mottle virus in infected pepper plants by high-throughput sequencing. Yubing Jiao,Xiuxiang Zhao,Kaiqiang Hao,Xinran Gao,Dan Xing,Zhiping Wang,Mengnan An,Zihao Xia,Yuanhua Wu. 2022

[17]Argonaute 1 and 5 proteins play crucial roles in the defence against cucumber green mottle mosaic virus in watermelon. Liu, Mei,Wu, Huijie,Hong, Ni,Kang, Baoshan,Peng, Bin,Liu, Liming,Gu, Qinsheng. 2023

[18]Knockout of SlDCL2b attenuates the resistance of tomato to potato spindle tuber viroid infection. Yuhong Zhang,Xiaxia Tian,Huiyuan Xu,Binhui Zhan,Changyong Zhou,Shifang Li,Zhixiang Zhang. 2024

[19]Hop Stunt Viroid Expression and Host Responses in Arabidopsis thaliana. Xiaxia Tian,Binhui Zhan,Lingzhu He,Changyong Zhou,Yunlong Ma,Shifang Li,Zhixiang Zhang. 2025

[20]Resistance and tolerance to viroid infection: status and prospects. Naoi, Takashi,Zhang, Zhixiang,Adkar-Purushothama, Charith Raj,Perreault, Jean-Pierre,Sano, Teruo. 2025

作者其他论文 更多>>