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首页> 外文期刊>PLoS One >Biological control of Erwinia mallotivora , the causal agent of papaya dieback disease by indigenous seed-borne endophytic lactic acid bacteria consortium
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Biological control of Erwinia mallotivora , the causal agent of papaya dieback disease by indigenous seed-borne endophytic lactic acid bacteria consortium

机译:Erwinia Mallotivora的生物学控制,土着种子传播内生乳酸菌联盟的木瓜沉浸病的因果因子

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Dieback disease caused by Erwinia mallotivora is a major threat to papaya plantation in Malaysia. The current study was conducted to evaluate the potential of endophytic lactic acid bacteria (LAB) isolated from papaya seeds for disease suppression of papaya dieback. Two hundred and thirty isolates were screened against E . mallotivora BT-MARDI, and the inhibitory activity of the isolates against the pathogen was ranging from 11.7–23.7 mm inhibition zones. The synergistic experiments revealed that combination of W . cibaria PPKSD19 and Lactococcus lactis subsp. lactis PPSSD39 increased antibacterial activity against the pathogen. The antibacterial activity was partially due to the production of bacteriocin-like inhibitory substances (BLIS). The nursery experiment confirmed that the application of bacterial consortium W . cibaria PPKSD19 and L . lactis subsp. lactis PPSSD39 significantly reduced disease severity to 19% and increased biocontrol efficacy to 69% of infected papaya plants after 18 days of treatment. This study showed that W . cibaria PPKSD19 and L . lactis subsp. lactis PPSSD39 are potential candidate as biocontrol agents against papaya dieback disease.
机译:Erwinia Mallotivora引起的沉浸病是对马来西亚番木瓜种植园的重大威胁。进行了目前的研究,以评估内生乳酸菌(实验室)与木瓜种子中分离的疾病抑制的潜力抑制。筛选了两百三十个分离物。 MALLOTIVORA BT-MARDI和对病原体的分离物的抑制活性范围为11.7-23.7mm抑制区。协同实验表明w的组合。 Cibaria ppksd19和乳球菌乳酸亚皮。乳酸pPSSD39增加了对病原体的抗菌活性。抗菌活性部分由于产生含有细菌素的抑制物质(BLI)的产生。苗圃实验证实,施用细菌联盟W. cibaria ppksd19和l。乳酸亚水。乳酸PPSSD39显着降低疾病严重程度至19%,并在治疗18天后增加了69%的受感染的木瓜植物的生物控制效率。这项研究表明w。 cibaria ppksd19和l。乳酸亚水。 Lactis PPSSD39是潜在候选者作为针对木瓜死皮疾病的生物控制剂。

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