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从枣中分离具有生防潜力的内生菌及其对枣缩果病病原菌链格孢的抑制作用。

Identification of endophytes with biocontrol potential from Ziziphus jujuba and its inhibition effects on Alternaria alternata, the pathogen of jujube shrunken-fruit disease.

机构信息

College of Forestry, Hebei Agricultural University, Baoding, Hebei, People's Republic of China.

Department of Plant Protection, Henan Institute of Science and Technology, Xinxiang, Henan, People's Republic of China.

出版信息

PLoS One. 2018 Jun 26;13(6):e0199466. doi: 10.1371/journal.pone.0199466. eCollection 2018.

Abstract

Endophytic strains were isolated from different parts of a healthy "Dongzao" jujube (Ziziphus jujuba Mill. 'Dongzao') to find biocontrol agents against jujube shrunken-fruit disease caused by Alternaria alternata. The strains were screened using A. alternata strain CN193 as the target pathogen. The nutrient competition for all isolates was studied using the dual culture, and their inhibitive capability was tested by measuring the inhibition width of filter paper disks with filtrate. Influence of filtrate from the selected strains with strong inhibition of mycelial growth on spore germination was studied with hanging drop method on concavity slides. Colonization in the jujube leaves was assayed using a rifampicin-resistant mutant of strain St-zn-34 as the screening marker. Strains were identified based on their morphological, physiological, and biochemical characteristics, 16S rDNA sequencing, and phylogenetic analysis. A total of 81 endophytic strains were isolated from the stems, leaves, flowers, and fruits of winter jujube. Among these isolates, 14 strains showed strong antagonism against A. alternata. Further study showed that the filtrate of strains St-zn-9 and St-zn-34 could inhibit the mycelial growth of A. alternata, and the widths of their inhibition zone reached 6.14±0.03 mm and 8.27±0.09 mm, respectively. However, strain St-zn-34 showed stronger inhibition on spore germination than strain St-zn-9. St-zn-34 could significantly reduce the spore germination rate of A. alternata, and the spore did not germinate at all or the germ tube was very short. A rifampicin resistant-derivative of wild-type strain St-zn-34, which was designated as St-zn-34r, was obtained by transferring the strains to media with stepwise-increased rifampicin. Colonization assays indicated that St-zn-34r could colonize in jujube leaves, and the population of St-zn-34r was 1.2×103 CFU/g FW after inoculation for 30 days. Except for its salt tolerance, St-zn-34 was the closest to those of Bacillus subtilis. Thus, the strain was identified as B. subtilis.

摘要

从健康的“冬枣”枣(Ziziphus jujuba Mill. 'Dongzao')的不同部位分离出内生菌株,以寻找防治由交链格孢菌引起的枣缩果病的生防剂。使用交链格孢菌菌株 CN193 作为靶病原菌筛选菌株。通过双层培养研究所有分离物的营养竞争,并用滤纸圆盘滤液测量抑制宽度来测试其抑制能力。使用凹面载玻片上的悬滴法研究具有强抑菌作用的选定菌株的滤液对孢子萌发的影响。使用 rifampicin 抗性突变体菌株 St-zn-34 作为筛选标记来测定在枣叶中的定殖。根据形态、生理和生化特征、16S rDNA 测序和系统发育分析对菌株进行鉴定。从冬枣的茎、叶、花和果实中分离出 81 株内生菌。在这些分离物中,有 14 株对交链格孢菌表现出强烈的拮抗作用。进一步的研究表明,菌株 St-zn-9 和 St-zn-34 的滤液可以抑制交链格孢菌的菌丝生长,其抑制带的宽度分别达到 6.14±0.03mm 和 8.27±0.09mm。然而,菌株 St-zn-34 对孢子萌发的抑制作用强于菌株 St-zn-9。St-zn-34 可显著降低交链格孢菌孢子的萌发率,孢子完全不萌发或芽管极短。通过将菌株转移到含逐步增加 rifampicin 的培养基中,获得了野生型菌株 St-zn-34 的 rifampicin 抗性衍生物,命名为 St-zn-34r。定殖试验表明,St-zn-34r 能够在枣叶中定殖,接种 30 天后 St-zn-34r 的种群数为 1.2×103 CFU/g FW。除了耐盐性外,St-zn-34 与枯草芽孢杆菌最为接近。因此,该菌株被鉴定为枯草芽孢杆菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2caf/6019103/05514dd7ff26/pone.0199466.g001.jpg

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