Fermentation of Foc TR4-infected bananas and Trichoderma spp

枯萎病 木霉菌 生物 镰刀菌 纤维素酶 根际 园艺 接种 芭蕉科 生物病虫害防治 农学 生物技术 植物 尖孢镰刀菌 细菌 生物化学 纤维素 遗传学
作者
Jing Yang,B. Li,S.W. Liu,Manosh Kumar Biswas,S. Liu,Yuerong Wei,Cunwu Zuo,Guiming Deng,Ruibin Kuang,Chongjiang Hu,Ganjun Yi,C Y Li
出处
期刊:Genetics and Molecular Research [Research Foundation of Ribeirão Preto]
卷期号:15 (4) 被引量:2
标识
DOI:10.4238/gmr15048494
摘要

Fusarium wilt (also known as Panama disease) is one of the most destructive banana diseases, and greatly hampers the global production of bananas. Consequently, it has been very detrimental to the Chinese banana industry. An infected plant is one of the major causes of the spread of Fusarium wilt to nearby regions. It is essential to develop an efficient and environmentally sustainable disease control method to restrict the spread of Fusarium wilt. We isolated Trichoderma spp from the rhizosphere soil, roots, and pseudostems of banana plants that showed Fusarium wilt symptoms in the infected areas. Their cellulase activities were measured by endoglucanase activity, β-glucosidase activity, and filter paper activity assays. Safety analyses of the Trichoderma isolates were conducted by inoculating them into banana plantlets. The antagonistic effects of the Trichoderma spp on the Fusarium pathogen Foc tropical Race 4 (Foc TR4) were tested by the dual culture technique. Four isolates that had high cellulase activity, no observable pathogenicity to banana plants, and high antagonistic capability were identified. The isolates were used to biodegrade diseased banana plants infected with GFP-tagged Foc TR4, and the compost was tested for biological control of the infectious agent; the results showed that the fermentation suppressed the incidence of wilt and killed the pathogen. This study indicates that Trichoderma isolates have the potential to eliminate the transmission of Foc TR4, and may be developed into an environmentally sustainable treatment for controlling Fusarium wilt in banana plants.
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