Trichoderma spp. Genes Involved in the Biocontrol Activity Against Rhizoctonia solani

茄丝核菌 木霉菌 生物 抗菌 杀菌剂 生物病虫害防治 有益生物体 生物技术 园艺 微生物 细菌 遗传学
作者
Aqleem Abbas,Mustansar Mubeen,Hongxia Zheng,Muhammad Aamir Sohail,Qaiser Shakeel,Manoj Kumar Solanki,Yasir Iftikhar,Sagar Sharma,Brijendra Kumar Kashyap,Sarfaraz Hussain,Maria del Carmen Zuñiga Romano,Ernesto A. Moya-Elizondo,Lei Zhou
出处
期刊:Frontiers in Microbiology [Frontiers Media]
卷期号:13: 884469-884469 被引量:90
标识
DOI:10.3389/fmicb.2022.884469
摘要

Rhizoctonia solani is a pathogen that causes considerable harm to plants worldwide. In the absence of hosts, R. solani survives in the soil by forming sclerotia, and management methods, such as cultivar breeding, crop rotations, and fungicide sprays, are insufficient and/or inefficient in controlling R. solani . One of the most challenging problems facing agriculture in the twenty-first century besides with the impact of global warming. Environmentally friendly techniques of crop production and improved agricultural practices are essential for long-term food security. Trichoderma spp. could serve as an excellent example of a model fungus to enhance crop productivity in a sustainable way. Among biocontrol mechanisms, mycoparasitism, competition, and antibiosis are the fundamental mechanisms by which Trichoderma spp. defend against R. solani , thereby preventing or obstructing its proliferation. Additionally, Trichoderma spp. induce a mixed induced systemic resistance (ISR) or systemic acquired resistance (SAR) in plants against R. solani , known as Trichoderma -ISR. Stimulation of every biocontrol mechanism involves Trichoderma spp. genes responsible for encoding secondary metabolites, siderophores, signaling molecules, enzymes for cell wall degradation, and plant growth regulators. Rhizoctonia solani biological control through genes of Trichoderma spp. is summarized in this paper. It also gives information on the Trichoderma -ISR in plants against R. solani . Nonetheless, fast-paced current research on Trichoderma spp. is required to properly utilize their true potential against diseases caused by R. solani .
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