数字农科院2.0

Roles of Arbuscular mycorrhizal Fungi as a Biocontrol Agent in the Control of Plant Diseases

文献类型: 外文期刊

作者: Wenfeng Weng;Jun Yan;Meiliang Zhou;Xin Yao;Aning Gao;Chao Ma;Jianping Cheng;Jingjun Ruan

作者机构:

关键词: Arbuscular mycorrhizal fungi;biocontrol;disease resistance;mechanism

期刊名称: Microorganisms

ISSN: 2076-2607

年卷期: 2022 年 10.0 卷 7 期

页码:

摘要: Arbuscular mycorrhizal fungi (AMF) are a class of beneficial microorganisms that are widely distributed in soil ecosystems and can form symbionts with 80% of terrestrial higher plants, and improve the nutritional status of plants. The use of AMF as a biocontrol method to antagonize soil-borne pathogens has received increasing interest from phytopathologists and ecologists. In this paper, the mechanisms of resistance to diseases induced by AMF and the application of AMF to plant fungal, bacterial, and nematode diseases have been summarized. This study aimed to enhance the potential use of AMF as a biological control method to prevent plant diseases in the future. Root morphological alteration characteristics were explained, including the influence of AMF on root structure, function, and the regulation of AMF via secondary metabolites. AMF can improve the rhizosphere environment by influencing the physical and chemical proprieties of soil, enhancing the growth of other beneficial microorganisms, and by competing with pathogenic microorganisms. Two microorganism types may compete for the same invasive sites in root systems and regulate nutrition distribution. AMF can induce the host plant to form defense systems, including improving phytohormone concentrations, inducing signal substrate production, gene expression regulation, and enhancing protein production.

分类号:

  • 相关文献

[1]Arbuscular mycorrhizal fungi enhance disease resistance of Salvia miltiorrhiza to Fusarium wilt. Chunjuan Pu,Yang Ge,Guang Yang,Han Zheng,Wei Guan,Zhi Chao,Ye Shen,Sha Liu,Meilan Chen,Luqi Huang. 2022

[2]黄金梨黑心病形成机理及防控技术研究. 王文辉,王志华,佟伟,张志云,姜修成,贾晓辉. 2008

[3]Crop Diversity Facilitates Soil Aggregation I.n Relation To Soil M icrobial Community Composition Driven By Intercropping. Wang, Cheng-bao,Wang, Ping,Li, Long,Tian, Xiu-li,Li, Xiao-fei,Ding, Guo-chun,Christie, Peter,Yang, Si-cun,Tian, Xiu-li,Bao, Xing-guo. 2019

[4]Mycorrhizal symbiosis enhances tolerance to NaCl stress through selective absorption but not selective transport of K+ over Na+ in trifoliate orange. Wu, Qiang-Sheng,Zou, Ying-Ning,He, Xin-Hua,He, Xin-Hua. 2013

[5]Effects of AM Inoculation and Organic Amendment, Alone or in Combination, on Growth, P Nutrition, and Heavy-Metal Uptake of Tobacco in Pb-Cd-Contaminated Soil. Wang, Fa Yuan,Wang, Ling,Shi, Zhao Yong,Li, You Jun,Wang, Fa Yuan,Song, Zhi Mei. 2012

[6]Interactions between Bt transgenic crops and arbuscular mycorrhizal fungi: a new urgent issue of soil ecology in agroecosystems. Du Lianfeng,Liu Wenke.

[7]Physiological and photosynthetic responses of melon (Cucumis melo L.) seedlings to three Glomus species under water deficit. Huang, Zhi,Zou, Zhirong,Li, Jianming,Huang, Zhi,He, Chaoxing,Zhang, Zhibin,Huang, Zhi,He, Zhongqun.

[8]Arbuscular mycorrhizae improve low temperature tolerance in cucumber via alterations in H2O2 accumulation and ATPase activity. Liu, Airong,Chen, Shuangchen,Chang, Rui,Chen, Haoran,Ahammed, Golam Jalal,Lin, Xiaomin,Chen, Shuangchen,Liu, Dilin,He, Chaoxing. 2014

[9]Arbuscular mycorrhizal fungi (AMF) increase growth and secondary metabolism in cucumber subjected to low temperature stress. Jin, Wenjuan,Liu, Airong,Zhang, Shaojie,Wang, Fenghua,Lin, Xiaomin,He, Chaoxing,Liu, Dilin. 2013

[10]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.

[11]Soil phosphorus fractions and arbuscular mycorrhizal fungi diversity following long-term grazing exclusion on semi-arid steppes in Inner Mongolia. Guo, Yanjun,Du, Qingfeng,Ni, Yu,Zhang, Zhen,Li, Guangdi,Ren, Weibo,Hou, Xiangyang.

[12]Relationships between Glomalin-Related Soil Protein in Water-Stable Aggregate Fractions and Aggregate Stability in Citrus Rhizosphere. Wu, Qiang-Sheng,Cao, Ming-Qin,Zou, Ying-Ning,Wang, Shuang,Li, Yan,He, Xin-Hua,He, Xin-Hua. 2013

[13]Co-application of chitooligosaccharides and arbuscular mycorrhiza fungi reduced greenhouse gas fluxes in saline soil by improving the rhizosphere microecology of soybean. Junqing Ma,Yi Xie,Jiali Sun,Ping Zou,Siqi Ma,Yuan Yuan,Shakeel Ahmad,Xia Yang,Changliang Jing,Yiqiang Li. 2023

[14]Am Fungi Facilitate The Competitive G.rowth Of Two Invasive P lant Species, Ambrosia Artemisiifolia And Bidens Pilosa. Li, Qiao,Wan, Fanghao,Shi, Qing,Li, Qiao,Yerger, Ellen Heininger,Zhang, Fengjuan,Chen, Xue. 2018

[15]Nitrogen Uptake, Not Transfer of Carbon and Nitrogen by CMN, Explains the Effect of AMF on the Competitive Interactions Between Flaveria bidentis and Native Species. Chen X.,Li Q.,Wang L.,Meng Y.,Jiao S.,Yin J.,Xu H.,Zhang F.. 2021

[16]Host-specific effects of arbuscular mycorrhizal fungi on two caragana species in desert grassland. Xin Guo,Zhen Wang,Jing Zhang,Ping Wang,Yaoming Li,Baoming Ji. 2021

[17]Arbuscular mycorrhizal fungi enhance nutrient acquisition and reduce aluminum toxicity in Lespedeza formosa under acid rain. He, Xiaobin,Shao, Changliang,Wu, Aiping,Xia, Lina,Li, Tiantian,Pei, Jia,Zhang, Naili,Wang, Yanhong. 2022

[18]Effects of arbuscular mycorrhizal fungi on crop growth and soil N2O emissions in the legume system. Ling Wang,Yunlong Liu,Xiangcheng Zhu,Yi Zhang,Huiyi Yang,Steven Dobbie,Xin Zhang,Aixing Deng,Haoyu Qian,Weijian Zhang. 2021

[19]Arbuscular mycorrhizal fungi enhance the growth of the exotic species Ambrosia artemisiifolia. Kong, Lingjie,Chen, Xue,Yerger, Ellen Heininger,Li, Qiao,Chen, Fengxin,Xu, Haiyun,Zhang, Fengjuan. 2022

[20]Soil sodicity affected the arbuscular mycorrhizal community and its interactions with bacteria in the Western Songnen Plain. Jiang, Nana,Guo, Quankuan,Yu, Yang,Guan, Yupeng,Yang, Wei. 2022

作者其他论文 更多>>