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首页> 外文期刊>Egyptian Journal of Biological Pest Control >Biocontrol potential of Streptomyces sp. CACIS-1.5CA against phytopathogenic fungi causing postharvest fruit diseases
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Biocontrol potential of Streptomyces sp. CACIS-1.5CA against phytopathogenic fungi causing postharvest fruit diseases

机译:streptomyces sp的生物控制潜力。 Cacis-1.5ca抗植物疗法真菌,导致采后果实疾病

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Fungi are one of the microorganisms that cause most damage to fruits worldwide, affecting their quality and consumption. Chemical controls with pesticides are used to diminish postharvest losses of fruits. However, biological control with microorganisms or natural compounds is an increasing alternative to protect fruits and vegetables. In this study, the antifungal effect of Streptomyces sp. CACIS-1.5CA on phytopathogenic fungi that cause postharvest tropical fruit rot was investigated. Antagonistic activity was evaluated in vitro by the dual confrontation over fungal isolates obtained from grape, mango, tomato, habanero pepper, papaya, sweet orange, and banana. The results showed that antagonistic activity of the isolate CACIS-1.5CA was similar to the commercial strain Streptomyces lydicus WYEC 108 against the pathogenic fungi Colletotrichum sp., Alternaria sp., Aspergillus sp., Botrytis sp., Rhizoctonia sp., and Rhizopus sp. with percentages ranging from 30 to 63%. The bioactive extract obtained from CACIS-1.5 showed a strong inhibition of fungal spore germination, with percentages ranging from 92 to 100%. Morphological effects as irregular membrane border, deformation, shrinkage, and collapsed conidia were observed on the conidia. Molecularly, the biosynthetic clusters of genes for the polyketide synthase (PKS) type I, PKS type II, and NRPS were detected in the genome of Streptomyces sp. CACIS-1.5CA. This study presented a novel Streptomyces strain as a natural alternative to the use of synthetic fungicides or other commercial products having antagonistic microorganisms that were used in the postharvest control of phytopathogenic fungi affecting fruits.
机译:真菌是一种微生物之一,对全世界的水果造成大部分损坏,影响他们的质量和消费。用杀虫剂的化学对照用于减少水果的采后损失。然而,具有微生物或天然化合物的生物对照是保护水果和蔬菜的越来越多的替代方案。在这项研究中,Streptomyces sp的抗真菌效应。 CACIS-1.5CA对植物疗法真菌进行研究,导致采后热带水果腐蚀。通过从葡萄,芒果,番茄,哈瓦那辣椒,番木瓜,甜橙和香蕉获得的真菌分离株的双对抗进行拮抗活性。结果表明,孤立的Cacis-1.5ca的拮抗活性与抗病原真菌Colletottrichum sp的商业菌株链霉菌108类似于致病性真菌。,alercaria sp.,aspergillus sp。,botrytis sp。,Rhizoctonia sp。和根瘤菌sp。和Rhizopus sp 。百分比范围为30%至63%。从Cacis-1.5获得的生物活性提取物显示出对真菌孢子萌发的强烈抑制,其百分比为92-100%。在分析中观察到形态学效应作为不规则膜边框,变形,收缩和倒塌的分枝。分子量,在链霉素SP的基因组中检测到聚酮合酶(PKS)I类,PKS II型,PKS II型的生物合成基因簇。 Cacis-1.5ca。本研究向新型链霉菌菌株呈现为使用合成杀菌剂或具有拮抗微生物的其他商业产品的自然替代品,这些商业产品用于影响水果的植物致病性真菌的采后对照。

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