Wen Yunmin, Li Meng, Yang Shuzhen, Peng Litao, Fan Gang, Kang Huilin
College Key Laboratory of Environment Correlative Dietology, Ministry of Education, Wuhan 430070, China.
College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
J Fungi (Basel). 2024 Aug 14;10(8):573. doi: 10.3390/jof10080573.
In this study, antagonistic endophytic fungi were isolated from postharvest chestnut fruits; endophytic antagonistic fungi and their combination of inhibitory effects on the fungal pathogen were evaluated. A total of 612 endophytic fungi were isolated from 300 healthy chestnut kernels, and 6 strains out of them including NS-3, NS-11, NS-38, NS-43, NS-56, and NS-58 were confirmed as antagonistic endophytic fungi against ; these were separately identified as , , , , and . Some mixed antagonistic endophytic fungi, such as NS-3-38, NS-11-38, NS-43-56, and NS-56-58-38, exhibited a much stronger antifungal activity against than that applied individually. Among them, the mixture of NS-3-38 showed the highest antifungal activity, and the inhibition rate was up to 86.67%. The fermentation broth of NS-3, NS-38, and their combinations exhibited an obvious antifungal activity against , and the ethyl acetate phase extract of NS-3-38 had the strongest antifungal activity, for which the inhibitory rate was up to 90.19%. The NS-3-38 fermentation broth combined with a chitosan coating significantly reduced incidence in chestnuts from 100% to 19%. Furthermore, the fruit decay and weight loss of chestnuts during storage were significantly decreased by the NS-3-38 fermentation broth mixture along with a chitosan coating. Therefore, a mixture of and could be used as a potential complex biocontrol agent to control postharvest fruit decay in chestnuts.
在本研究中,从采后板栗果实中分离出拮抗内生真菌;评估了内生拮抗真菌及其组合对真菌病原体的抑制作用。从300颗健康板栗仁中总共分离出612株内生真菌,其中6株,包括NS - 3、NS - 11、NS - 38、NS - 43、NS - 56和NS - 58,被确认为对[具体病原体未提及]的拮抗内生真菌;这些分别被鉴定为[具体菌种未提及]、[具体菌种未提及]、[具体菌种未提及]、[具体菌种未提及]、[具体菌种未提及]和[具体菌种未提及]。一些混合的拮抗内生真菌,如NS - 3 - 38、NS - 11 - 38、NS - 43 - 56和NS - 56 - 58 - 38,对[具体病原体未提及]表现出比单独使用时更强的抗真菌活性。其中,NS - 3 - 38的混合物表现出最高的抗真菌活性,抑制率高达86.67%。NS - 3、NS - 38及其组合的发酵液对[具体病原体未提及]表现出明显的抗真菌活性,NS - 3 - 38的乙酸乙酯相提取物具有最强的抗真菌活性,其抑制率高达90.19%。NS - 3 - 38发酵液与壳聚糖涂层相结合,显著降低了板栗的[具体病害未提及]发病率,从100%降至19%。此外,NS - 3 - 38发酵液混合物与壳聚糖涂层一起显著降低了板栗在储存期间的果实腐烂和重量损失。因此,[具体菌种未提及]和[具体菌种未提及]的混合物可用作控制板栗采后果实腐烂的潜在复合生物防治剂。