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Biological Control of Post-Harvest Banana Diseases Using Antagonistic Bacteria in Thailand

机译:在泰国拮抗细菌的收获后香蕉疾病的生物学控制

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Gros Michel banana is an important economically tropical fruit. It is easy to grow and highly nutritious with increasing demand in the market. This research was conducted to study the type of microorganisms that cause of Gros Michel banana disease in Thailand and determine inhibition rate of post-harvest banana diseases using antagonistic bacteria. The study also includes methods to prevent diseases and prolong the shelf life of Gros Michel banana by using antagonist microorganism. The results showed that Curvularia sp., Nigrospora sp., Fusarium sp. and Colletotrichum circinasns (Berk.) Voglino were found in Thai Gros Michel banana farm. However, the Percentage Inhibition of Radial Growth (%PIRG), UN1 has the highest inhibition efficiency of Curvularia sp. (80%), followed by B23 that inhibited at 66.67% of Fusarium sp. and the highest % PIRG at 3 mL (91.60%) tested by dual culture method. The results showed that B23 and UN1 were able to inhibit growth of Curvularia sp. more than 85% of PIRG at 2 mL and 3 mL respectively. It can reduce the use of chemicals for more than 250 ppm. Analysis Identify the type of microorganisms by biochemical characteristics using API found that B23 and UN1 were similar to those of Bacillus subtilis/amyloliquefaciens at 96.6% and 99.6% respectively. The study of biological control from this research can be further developed in banana field in order to reduce the use of chemical, develop disease prevention method, and extend the shelf life of Gros Michel banana by using antagonist bacteria.
机译:Gros Michel Banana是一个重要的经济上热带水果。随着市场需求的增加,易于增长和高度营养。进行了该研究,以研究泰国GROS MICHEL香蕉病的原因和确定使用拮抗细菌的收获后香蕉疾病的抑制率。该研究还包括通过使用拮抗性微生物预防疾病并延长GroS Michel Banana的保质期的方法。结果表明,Curvularia Sp。,尼可孢子菌。,Fusarium sp。和Colletotrichum Circinasns(伯克。)Voglino在泰国Groch Michel Banana Farm。然而,径向生长(%PiRG)的抑制率,UN1具有最高的Curvularia SP的抑制效率。 (80%),其次是B23,抑制镰刀菌的66.67%。通过双培养方法测试的3mL(91.60%)的最高%PiRG。结果表明,B23和UN1能够抑制Curvularia SP的生长。超过85%的PiRG分别为2毫升和3毫升。它可以减少化学品的使用超过250ppm。分析通过使用API​​鉴定生物化学特性的微生物类型,发现B23和UN1类似于枯草芽孢杆菌/淀粉醇素分别为96.6%和99.6%。可以在香蕉场中进一步开发来自该研究的生物控制的研究,以减少化学品,开发疾病预防方法的使用,并通过使用拮抗剂细菌来延长Gros Michel Banana的保质期。

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