从有机胡萝卜生产中分离出潜在的根瘤菌拮抗交替丝核菌

Nita Noviyanti, S. Purwantisari, Agung Suprihadi
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引用次数: 0

摘要

根瘤真菌可以作为生物制剂来对付感染胡萝卜植物的植物病原体交替丝核菌。有机土地中的根瘤菌更为丰富。本研究旨在从有机胡萝卜根瘤菌中分离出能够抑制交替丝核菌生长的真菌,并确定分离出的根瘤菌抑制交替丝核菌的能力,以确定潜在的生物防治剂来防治交替丝核菌。这项研究于 2023 年 1 月至 6 月期间在迪波内戈罗大学生物技术和基础生物学实验室进行。研究方法包括调查地点、土壤取样、根瘤真菌分离、病原真菌分离、创建生长曲线、致病性试验、拮抗试验和真菌鉴定。本研究采用完全随机设计(CRD),并在 5%的显著性水平上使用方差分析和邓肯事后检验进行分析。从有机胡萝卜植物根瘤菌中分离出 13 个真菌,包括 6 个属:青霉属、曲霉属、白僵菌属、霉菌属、毛霉属和单胞菌属。拮抗试验显示,8 种拮抗分离物,包括青霉属(WO1、WO6、WO10)、白癣菌属(WO5)、霉属(WO7)、毛霉属(WO9)和曲霉属(WO11、WO13),其中 WO1、WO6、WO10 和 WO11 的抑制率为中等(44.12-57.84%),而 WO5、WO7、WO9 和 WO13 的抑制率较高(64.29-76.06%)。这八种分离物表现出拮抗机制,包括抗生素作用(WO1、WO5、WO6、WO7、WO10 和 WO11)和寄生作用(WO9 和 WO13)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation of Potential Antagonistic Rhizosphere Fungi against Alternaria alternata from Organic Carrot Productions
Rhizospheric fungi can have serve as biological agents against plant pathogens Alternaria alternata, which infects carrot plants. Rhizospheric fungi are more abundant in organic lands. This study aims to isolate fungi from organic carrot’s rhizosphere that are able to suppress A. alternata’s growth and determine isolate rhizospheric fungi ability to inhibit A. alternata to identify potential biological control agents against A. alternata. This research was conducted at the Laboratory of Biotechnology and Basic Biology, Diponegoro University, between January–June 2023. Research methods include survey location, soil sampling, rhizospheric fungi isolation, pathogenic fungi isolation, creating growth curve, pathogenicity tests, antagonism tests, and fungi identification. This study used a complete randomized design (CRD) and was analyzed using ANOVA at the 5% level of significance and Duncan's hoc-posttest. Fungi isolation from organic carrot plant’s rhizosphere resulted in 13 isolates consisting of six genera: Penicillium, Aspergillus, Paecilomyces, Myrothecium, Trichoderma, and Simplicillium. The antagonism test showed that eight antagonistic isolates, including the genus Penicillium (WO1, WO6, WO10), Paecilomyces (WO5), Myrothecium (WO7), Trichoderma (WO9), and Aspergillus (WO11, WO13), where WO1, WO6, WO10, and WO11 have a medium percentage of inhibition (44.12-57.84%), while WO5, WO7, WO9, and WO13 have a high percentage of inhibition (64.29-76.06%). The eight isolates showed antagonism mechanisms, including antibiosis (WO1, WO5, WO6, WO7, WO10, and WO11) and parasitism (WO9 and WO13). 
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