The brown root rot fungus Phellinus noxius affects microbial communities in different root-associated niches of Ficus trees

被引:9
作者
Liu, Tse-Yen [1 ,2 ]
Chen, Chao-Han [2 ]
Yang, Yu-Liang [3 ]
Tsai, Isheng J. [4 ]
Ho, Ying-Ning [5 ,6 ]
Chung, Chia-Lin [1 ]
机构
[1] Natl Taiwan Univ, Dept Plant Pathol & Microbiol, Taipei 10617, Taiwan
[2] Taiwan Forestry Res Inst, Div Forest Protect, Taipei 10066, Taiwan
[3] Acad Sinica, Agr Biotechnol Res Ctr, Taipei 11529, Taiwan
[4] Acad Sinica, Biodivers Res Ctr, Taipei 11529, Taiwan
[5] Natl Taiwan Ocean Univ, Inst Marine Biol, Keelung 20224, Taiwan
[6] Natl Taiwan Ocean Univ, Ctr Excellence Oceans, Keelung 20224, Taiwan
关键词
RHIZOSPHERE MICROBIOME; WOOD DECAY; PLANT MICROBIOTA; RYUKYU ISLANDS; DIVERSITY; SOIL; MYCOPARASITE; SENSITIVITY; COSMOSPORA; GENERATION;
D O I
10.1111/1462-2920.15862
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Brown root rot (BRR) caused by Phellinus noxius is a destructive tree disease in tropical and subtropical areas. To understand how BRR affects the composition of the plant rhizoplane-enriched microbiota, the microbiomes within five root-associated compartments (i.e., bulk soil, old/young root rhizosphere soil, old/young root tissue) of Ficus trees naturally infected by P. noxius were investigated. The level of P. noxius infection was determined by quantitative PCR. Illumina sequencing of the internal transcribed spacer and 16S rRNA revealed that P. noxius infection caused a significant reduction in fungal diversity in the bulk soil, the old root rhizosphere soil, and the old root tissue. Interestingly, Cosmospora was the only fungal genus positively correlated with P. noxius. The abundance and composition of dominant bacterial taxa such as Actinomadura, Bacillus, Rhodoplanes, and Streptomyces differed between BRR-diseased and healthy samples. Furthermore, 838 isolates belonging to 26 fungal and 35 bacterial genera were isolated and tested for interactions with P. noxius. Antagonistic activities were observed for isolates of Bacillus, Pseudomonas, Aspergillus, Penicillium, and Trichoderma. Cellophane overlay and cellulose/lignin utilization assays suggested that Cosmospora could tolerate the secretions of P. noxius and that the degradation of lignin by P. noxius may create suitable conditions for Cosmorpora growth.
引用
收藏
页码:276 / 297
页数:22
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