杀菌剂
氟哌啶醇
生物
戊唑醇
菌丝体
园艺
索拉尼镰刀菌
枯萎病
镰刀菌
接种
枯萎病
分生孢子
病菌
马铃薯葡萄糖琼脂
植物
尖孢镰刀菌
微生物学
琼脂
细菌
遗传学
作者
Shichao Liu,Ruibing Liu,Bo Chu,Zhuang Li,Qianqian Meng,Yafeng Gou,Chao Xue,Tian Tian,Pengyun Chen,Fei Wei,Siwei Wen,Yanan Liu,Shiwei Sun,Shengfeng Gao
标识
DOI:10.1002/jobm.202300183
摘要
Abstract Fusarium wilt has occurred in the main Piper nigrum cultivation regions, which seriously affects the yield and quality of P. nigrum . To identify the pathogen of this disease, the diseased roots were collected from a demonstration base in Hainan Province. The pathogen was obtained by tissue isolation method and confirmed by pathogenicity test. Based on the morphological observation, sequence analyses of TEF1‐α nuclear gene, Fusarium solani was identified as the pathogen causing P. nigrum Fusarium wilt and induced symptoms on inoculated plants, including chlorosis, necrotic spots, wilt, drying, and root rot. The experiments for the antifungal activity showed that all the 11 fungicides selected in this study showed certain inhibitory effects on the colony growth of F. solani , where 2% kasugamycin AS, 45% prochloraz EW, 25 g·L −1 fludioxonil SC and 430 g·L −1 tebuconazole SC exhibited relative higher inhibitory effects with EC 50 as 0.065, 0.205, 0.395, and 0.483 mg·L −1 , respectively, and were selected to perform SEM analysis and test in seeds in vitro. The SEM analysis showed that kasugamycin, prochloraz, fludioxonil, and tebuconazole might have exerted their antifungal effect by damaging F. solani mycelia or microconidia. These preparations were applied as a seed coating of P. nigrum Reyin‐1 . The kasugamycin treatment was most effective in reducing the harmful impact of F. solani on the seed germination. These results presented herein provide useful guidance for the effective control of P. nigrum Fusarium wilt.
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