Sugars altered fungal community composition and caused high network complexity in a Fusarium wilt pathogen-infested soil
文献类型: 外文期刊
作者: Ren, Gaidi 1 ; Meng, Tianzhu 1 ; Ma, Yan 1 ;
作者机构: 1.Jiangsu Acad Agr Sci, Inst Agr Sci & Environm, Nanjing 210014, Jiangsu, Peoples R China
2.Minist Agr, Key Lab Agroenvironm Downstream Yangtze Plain, Nanjing 210014, Jiangsu, Peoples R China
3.Jiangsu Univ, Sch Environm & Safety Engn, Nanjing 212013, Jiangsu, Peoples R China
关键词: Root exudate; Sugar; Fusarium wilt pathogen; Fungal community; Microbial network; Keystone species
期刊名称:BIOLOGY AND FERTILITY OF SOILS ( 影响因子:6.432; 五年影响因子:6.332 )
ISSN: 0178-2762
年卷期: 2020 年 56 卷 3 期
页码:
收录情况: SCI
摘要: Despite the quantitative dominance of sugars within root exudates and their ecological importance in regulating plant disease development, it is not well understood how specific sugars influence the fate of fungal pathogens, the fungal community composition and, in particular, the fungal interactions in soil. In this study, a microcosm incubation experiment was conducted by adding four low-molecular-weight sugars to a Fusarium wilt pathogen-infested natural soil (i.e., Low-FO soil) and the soil further receiving Fusarium wilt pathogen inocula (i.e., High-FO soil) to understand the changes in fungal community composition and fungal interactions. Despite living in soils where multiple microbes coexist, after the addition of sugar, Fusarium wilt pathogen was selectively enriched, and sugar allowed it to sustain its dominance over time. Concurrently, the fungal richness became lower, and the fungal community composition was altered throughout 42 days of incubation. The Humicola-affiliated OTU600 showed a more rapid biomass increase than this pathogen after the addition of sugars in the Low-FO soil at some time points, and also increased over time in the High-FO soil. The community network in sugar-added soils was more complex and connected than in those without added sugar, indicating greater fungal interactions and niche-sharing. The Fusarium wilt pathogen formed positive or no connections with the keystone taxa in sugar-spiked networks in almost all cases. This suggests that the keystone taxa may have promoted or not constrained the wilt pathogen, representing a potential mechanism enabling this pathogen to vigorously proliferate after the addition of sugar.
- 相关文献
作者其他论文 更多>>
-
Changes in soil organic carbon components and microbial community following spent mushroom substrate application
作者:Yang, Guiting;Ma, Yan;Ma, Xiaochi;Wang, Xuanqing;Lu, Chao;Luo, Jia;Guo, Dejie;Ma, Yan;Ma, Yan;Xu, Wenyi
关键词:spent mushroom substrate; SOC fraction; microbial community; function prediction; C-13 NMR
-
Antibiotics and antibiotic resistance change bacterial community compositions in marine sediments
作者:Kong, Ming;Wang, Wanzhong;Zhang, Yu;Ma, Yan;Fang, Hao;Zhang, Shuai;Shi, Gaoling;Yan, Yan
关键词:Antibiotics; Antibiotic -resistant bacteria; Extracellular antibiotic -resistant genes; Bacterial communities; Marine sediments
-
Distribution and effects of microplastics as carriers of heavy metals in river surface sediments
作者:Wang, Changyuan;Liu, Xin;Ma, Qianqian;Xing, Shuyu;Yuan, Lubin;Ma, Yan;Wang, Changyuan;Ma, Yan;Wang, Changyuan;Ma, Yan
关键词:Season; River; Abundance; Microplastics; Metal; Sediment
-
Changes of microbiome in response to sugars in a wilt pathogen-infested soil
作者:Ren, Gaidi;Wang, Guangfei;Guo, Dejie;Lu, Chao;Ma, Yan;Ren, Gaidi;Wang, Guangfei;Guo, Dejie;Lu, Chao;Ma, Yan;Ren, Gaidi;Ren, Gaidi;Ma, Yan
关键词:Root exudate; Sugar; Fusarium oxysporum f. sp. niveum; Microbial community structure; Molecular ecological network; Keystone taxa
-
Effects of long-term organic fertilizer substitutions on soil nitrous oxide emissions and nitrogen cycling gene abundance in a greenhouse vegetable field
作者:Xu, Wenyi;Zhao, Dufeng;Ma, Yan;Yang, Guiting;Liu, Xinhong;Luo, Jia;Xu, Wenyi;Zhao, Dufeng;Ma, Yan;Yang, Guiting;Liu, Xinhong;Luo, Jia;Xu, Wenyi;Ambus, Per Lennart;Zhao, Dufeng;Ma, Yan;Luo, Jia
关键词:Organic fertilizers; Chemical fertilizers; Soil pH; Gene abundance; Soil nitrate(NO3--N); Nitrous oxide(N2O) emissions
-
Spent mushroom substrate as a substitute for chemical fertilizer changes N-cycling genes and reduces N2O emission in different textured soils
作者:Yang, Guiting;Ma, Yan;Xu, Wenyi;Ma, Xiaochi;Lu, Chao;Ma, Yan;Ma, Yan;Xu, Wenyi
关键词:Spent mushroom substrates; N2O emissions; Functional genes; Real-time Qpcr
-
Shelf-life enhancement of bio-inoculants through synergistic effects of encapsulation technology and osmotic protectants
作者:Hu, Mi;Hei, Ruo-nan;Guo, De-jie;Luo, Jia;Lu, Chao;Xu, Wen-long;Zhang, Zhi-yang;Xiao, Qing-bo;Ma, Yan;Hu, Mi;Hei, Ruo-nan;Guo, De-jie;Luo, Jia;Lu, Chao;Xu, Wen-long;Zhang, Zhi-yang;Xiao, Qing-bo;Ma, Yan
关键词:Microbial encapsulation; Hydrogel; Osmotic protectant; Salt stress; Fertilizer