中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Land-use type strongly shapes community composition, but not always diversity of soil microbes in tropical China

文献类型:期刊论文

作者Cai, Zhi-quan; Zhang, Yong-hong; Yang, Chun; Wang, Shu
刊名CATENA
出版日期2018
卷号165期号:x页码:369-380
关键词Microbial Community Microbial Diversity Land-use Types High-throughput Sequencing Forest Succession
ISSN号0341-8162
英文摘要Forest secondary succession and conversion to an agricultural use are rapidly altering tropical forests, and this alteration has consequences on soil microbial communities. Using high-throughput sequencing of 16S rRNA genes and internal transcribed spacer regions, we compared bacteria and fungi community composition and diversity in soils between the three stages of forest succession (primary forest, PF; secondary forest, SF; pioneer plant community dominated by Macaranga denticulate trees, PP) and two agricultural drylands (rubber plantation, RP; Plukenetia volubilis plantation, PV) in Xishuangbanna, a tropical region of China, and identified the factors associated with the shift in community composition across the five land-use types. The results indicated that the most abundant bacterial genera (Bacillus, Kitasatospora, Nitrospira and Streptacidiphilus) were found at differentially relative abundances among the five land-use types. Through the analysis of indicator species, several bacterial species were significantly associated with the PP site; one to four species were significantly associated to the other sites. Strikingly, almost all fungal genera had site-specific characteristic. Soil properties, especially pH and available P and K, were associated with microbial community composition. Across the three stages of forest succession, bacterial and fungal richness and bacterial alpha diversity had the lowest levels in the earliest stage (PP), but there were no significant differences in microbial richness or diversity between the late stages (PF vs. SF). Compared to PF and SF with their similar bacterial and fungal diversity, the agricultural drylands (RP and PV) had higher bacterial richness but lower fungal richness, indicating that both PF and SF can act as reservoirs for the recolonisation of forest-associated microbes. Overall, these results showed a distinct difference in soil microbe taxonomic composition, especially in fungi, among the various land-use types, even at a very small geographical scale (<4 km), but no great difference of microbial diversity was found between the late stages of forest succession and agricultural drylands. Tropical forest succession and forest conversion to agricultural drylands strongly affect the distribution of microbial species, whereas microbial diversity may not always tightly follow the same successional trajectories.
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语种英语
公开日期2018-06-07
源URL[http://ir.xtbg.org.cn/handle/353005/10860]  
专题西双版纳热带植物园_药用植物栽培技术组
推荐引用方式
GB/T 7714
Cai, Zhi-quan,Zhang, Yong-hong,Yang, Chun,et al. Land-use type strongly shapes community composition, but not always diversity of soil microbes in tropical China[J]. CATENA,2018,165(x):369-380.
APA Cai, Zhi-quan,Zhang, Yong-hong,Yang, Chun,&Wang, Shu.(2018).Land-use type strongly shapes community composition, but not always diversity of soil microbes in tropical China.CATENA,165(x),369-380.
MLA Cai, Zhi-quan,et al."Land-use type strongly shapes community composition, but not always diversity of soil microbes in tropical China".CATENA 165.x(2018):369-380.

入库方式: OAI收割

来源:西双版纳热带植物园

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