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首页> 外文期刊>Current Microbiology: An International Journal >Fungistatic intensity of agricultural soil against fungal agents and phylogenetic analysis on the actinobacteria involved.
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Fungistatic intensity of agricultural soil against fungal agents and phylogenetic analysis on the actinobacteria involved.

机译:农业土壤对真菌的抑菌强度及所涉及放线菌的系统发育分析。

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摘要

A total of 287 agricultural soil samples collected from 26 provinces or autonomous regions of China were tested on their ability to suppress the conidial germination of nine biocontrol fungal agents. These soil samples showed great differences in the degree to inhibit the germination of conidia (22.8% < mean inhibition rate < 97.5%), but all exhibited fungistatic activities above the moderate levels (mean inhibition rate > 50%) to most of tested fungi. Ten soil samples that have stronger fungistatic intensity (germination inhibition rate > 68.3%) to the target fungi, Trichoderma viride and Paecilomyces lilacinus, were selected to evaluate their soil actinobacteria involved fungistasis in soil. Of the 1,000 isolates from those soil samples, 345 actinobacteria exhibited fungistatic activity to conidial germination of T. viride and P. lilacinus with germination inhibition rates higher than 10%. Sequences encoding 16S rRNA gene of the 345 actinobacteria were analyzed by ARDRA and resulted 44 different ARDRA types. Fifty-six isolates, at least one from each unique ARDRA type, were selected for 16S rDNA sequencing and phylogenetic analysis. Results indicated that the actinobacteria involved in the soil fungistasis had close phylogenetic relationship with the members of Sterptomycetaceae, Microbacteriaceae, Micrococcaceae, and Nocardiacea.
机译:测试了从中国26个省或自治区收集的287个农业土壤样品的抑制9种生防真菌剂的孢子萌发的能力。这些土壤样品在抑制分生孢子萌发的程度上表现出很大差异(22.8%<平均抑制率<97.5%),但对于大多数测试真菌,它们均显示出高于中等水平(平均抑制率> 50%)的抑菌活性。选择十个对目标真菌具有较强的抑菌强度(发芽抑制率> 68.3%)的土壤样品绿色木霉和淡紫色拟青霉,以评估其土壤放线菌与真菌的关系在土壤中。从这些土壤样品中分离出的1,000株菌株中,有345株放线菌对T分生孢子萌发具有抑菌活性。 viride 和 P。紫丁香,发芽抑制率高于10%。通过ARDRA分析了345个放线菌的16S rRNA基因编码序列,得出了44种不同的ARDRA类型。选择了56种分离株,每种独特的ARDRA类型中至少一种,进行16S rDNA测序和系统发育分析。结果表明,参与土壤真菌侵染的放线菌与弓形菌科,细小菌科,微球菌科和诺卡氏菌的亲缘关系密切。

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