Song Lisha, Jiang Ni, Wei Shugen, Lan Zuzai, Pan Limei
Guangxi Botanical Garden of Medicinal Plants, Nanning, China.
Mycobiology. 2020 Feb 11;48(1):37-43. doi: 10.1080/12298093.2020.1716604. eCollection 2020.
A serious leaf disease caused by was found during the cultivation of in Jingxi, Rong'an, and Donglan Counties in Guangxi Province, which inflicted huge losses to plant productivity. Biological control gradually became an effective control method for plant pathogens. Many studies showed that the application of actinomycetes in biological control has been effective. Therefore, it may be of great significance to study the application of actinomycetes on controlling the diseases caused by . Strains of antifungal actinomycetes capable of inhibiting were identified, isolated and screened from healthy plants tissues and the rhizospheres in soils containing . In this study, 15 actinomycetes strains were isolated and among these, strains JT-2F, DT-3F, and JJ-3F, appeared to show antagonistic effects against anthracnose of . The strains JT-2F and DT-3F were isolated from soil, while JJ-3F was isolated from plant stems. The antagonism rate of strain JT-2F was 86.75%, which was the highest value among the three strains. Additionally, the JT-2F strain also had the strongest antagonistic activity when the antagonistic activities were tested against seven plant pathogens. Strain JT-2F is able to produce proteases and cellulase to degrade the protein and cellulose components of cell walls of , respectively. This results in mycelia damage which leads to inhibition of the growth of . Strain JT-2F was identified as based on morphological traits and 16S rDNA sequence analysis.
在广西靖西、融安和东兰县种植[植物名称]的过程中,发现了一种由[病原体名称]引起的严重叶部病害,这给植物生产力造成了巨大损失。生物防治逐渐成为控制植物病原体的一种有效方法。许多研究表明,放线菌在生物防治中的应用已取得成效。因此,研究放线菌在控制由[病原体名称]引起的病害方面的应用可能具有重要意义。从含有[病原体名称]的健康植物组织和根际土壤中鉴定、分离和筛选出了能够抑制[病原体名称]的抗真菌放线菌菌株。在本研究中,分离出了15株放线菌菌株,其中JT - 2F、DT - 3F和JJ - 3F菌株对[植物名称]炭疽病表现出拮抗作用。JT - 2F和DT - 3F菌株从土壤中分离得到,而JJ - 3F菌株从植物茎中分离得到。JT - 2F菌株的拮抗率为86.75%,是这三个菌株中最高的值。此外,在对七种植物病原体进行拮抗活性测试时,JT - 2F菌株也具有最强的拮抗活性。JT - 2F菌株能够产生蛋白酶和纤维素酶,分别降解[病原体名称]细胞壁的蛋白质和纤维素成分。这导致菌丝体受损,从而抑制了[病原体名称]的生长。基于形态特征和16S rDNA序列分析,JT - 2F菌株被鉴定为[放线菌具体种类]。