Temporal and Habitat Dynamics of Soil Fungal Diversity in Gravel-Sand Mulching Watermelon Fields in the Semi-Arid Loess Plateau of China
文献类型: 外文期刊
作者: Zhou, Wenqing 1 ; Zhou, Xin 2 ; Cai, Lei 2 ; Jiang, Qi 3 ; Zhang, Rong 1 ;
作者机构: 1.Ningxia Acad Agr & Forestry Sci, Inst Plant Protect, Yinchuan, Peoples R China
2.Chinese Acad Sci, Inst Microbiol, State Key Lab Mycol, Beijing, Peoples R China
3.Ningxia Acad Agr & Forestry Sci, Inst Forestry & Grassland Ecol, Yinchuan, Peoples R China
关键词: Fusarium wilt disease; soil fungal diversity; continuous cropping obstacle; gravel-sand mulch; sustainable agriculture
期刊名称:MICROBIOLOGY SPECTRUM ( 影响因子:3.7; 五年影响因子:5.9 )
ISSN: 2165-0497
年卷期: 2023 年 11 卷 3 期
页码:
收录情况: SCI
摘要: Mulching is an important agricultural management tool for increasing watermelon productivity and land-use efficiency because it helps improve water use efficiency and reduce soil erosion. However, there is relatively little available information regarding the effects of long-term continuous monoculture farming on soil fungal communities and related fungal pathogens in arid and semiarid regions. In this study, we characterized the fungal communities of four treatment groups, including gravel-sand-mulched farmland, gravel-sand-mulched grassland, fallow gravel-sand-mulched grassland, and native grassland, using amplicon sequencing. Our results revealed that the soil fungal communities differed significantly between mulched farmland and mulched grassland as well as the fallow mulched grassland. Gravel-sand mulch significantly impaired the diversity and composition of soil fungal communities. Soil fungal communities were more sensitive to gravel-sand mulch in grassland than in other habitats. Long-term continuous monoculture (more than 10 years) led to decreased abundance of Fusarium species, which contains include agronomically important plant pathogens. In the gravel-mulched cropland, some Penicillium and Mortierella fungi were significantly enriched with increasing mulch duration, suggesting potential beneficial properties of those fungi that could be applied to disease control. We also found that long-term gravel mulching in continuous monoculture farming could potentially form disease-suppressive soils and alter soil microbial biodiversity and fertility. Our study provides insights into the exploration of novel agricultural management strategies along with continuous monoculture practice to control watermelon wilt disease by maintaining a more sustainable and healthier soil environment.IMPORTANCE Gravel-sand mulching is a traditional agricultural practice in arid and semiarid regions, providing a surface barrier for soil and water conservation. However, application of such practice in monocropping systems may lead to outbreaks of several devastating plant diseases, such as watermelon Fusarium wilt. Our results with amplicon sequencing suggest that soil fungal communities differ significantly between mulched farmland and mulched grassland and are more sensitive to gravel-sand mulch in grassland. Under continuous monoculture regimens, long-term gravel mulch is not necessarily detrimental and may result in decreased Fusarium abundance. However, some known beneficial soil fungi may be enriched in the gravel-mulch cropland as mulch duration increases. A possible explanation for the reduction in Fusarium abundance may be the formation of disease-suppressive soils. This study provides insight into the need to explore alternative strategies using beneficial microbes for sustainable watermelon wilt control in continuous monocropping system. Gravel-sand mulching is a traditional agricultural practice in arid and semiarid regions, providing a surface barrier for soil and water conservation. However, application of such practice in monocropping systems may lead to outbreaks of several devastating plant diseases, such as watermelon Fusarium wilt.
- 相关文献
作者其他论文 更多>>
-
Chromosome-level genome assembly of Odontothrips loti Haliday (Thysanoptera: Thripidae)
作者:Luo, Yingning;Dai, Wenting;Miao, Miao;Ban, Liping;Wei, Shuhua;Wang, Ying;Zhang, Rong
关键词:
-
Beta diversity of grasshoppers and predatory beetles across steppes is closely associated with altitude and average annual precipitation in Ningxia, northwest China
作者:Zhang, Haixiang;Cao, Ziyu;Wang, Ying;Zhang, Rong;Wei, Shuhua;Zhang, Haixiang;Ban, Liping;Shi, Xiaoyu;Cheng, Rui;Cao, Ziyu
关键词:Ningxia Steppe; Grasshopper; Predatory beetle; Beta diversity; Environmental factors
-
Major quality regulation network of flavonoid synthesis governing the bioactivity of black wolfberry
作者:Du, Youwei;Liu, Yuanyuan;Liu, Guangli;Lu, Yiming;Wang, Shuanghong;Jia, Hongchen;Zhang, Rong;Sun, Guangyu;Du, Youwei;Liu, Yuanyuan;Liu, Guangli;Lu, Yiming;Wang, Shuanghong;Jia, Hongchen;Zhang, Rong;Sun, Guangyu;Ma, Huiya;Gong, Rui;Lan, Yu;Wang, Junru;Ma, Huiya;Zhao, Jianhua;Li, Na
关键词:antioxidant; bioactivity; metabolism regulation; multi-omics; phytochemical
-
Identification of spatial distribution and drivers for grasshopper populations based on geographic detectors
作者:Wei, Shuhua;Liu, Xueqin;Wang, Ying;Sun, Wei;Zhang, Rong;McNeill, Mark Richard;Tu, Xiongbing;Wang, Guangjun;Zhang, Zehua;Ban, Liping
关键词:Grasslands; Geographic detectors; Spatial distribution; Risk area; Interactions
-
Identification of Terpenoid Compounds and Toxicity Assays of Essential Oil Microcapsules from Artemisia stechmanniana
作者:Liu, Chang;Liu, Zhilong;Zhang, Yihan;Song, Xuan;Liu, Chang;Zhang, Rong;Huang, Wenguang
关键词:essential oil; Artemisia stechmanniana; microencapsulation; Lycium barbarum; Aphis gossypii; Frankliniella occidentalis; Bactericera gobica
-
Weak genetic structure of flower thrips Frankliniella intonsa in China revealed by mitochondrial genomes
作者:Liu, Xinzhi;He, Jia;Du, Zhenyong;Cai, Wanzhi;Li, Hu;Liu, Xinzhi;Du, Zhenyong;Cai, Wanzhi;Li, Hu;He, Jia;Zhang, Rong;He, Jia;Zhang, Rong
关键词:Frankliniella intonsa; Population genetic structure; Mitochondrial genome
-
Components and composition of active volatiles attract on Diorhabda tarsalis (Coleoptera: Chrysomelidae) from Glycyrrhiza uralensis (Rosales: Leguminoseae)
作者:Chen, Hong-hao;Tan, Shu-qian;Shi, Wang-peng;Chen, Hong-hao;Tan, Shu-qian;Shi, Wang-peng;Chen, Hong-hao;Tan, Shu-qian;Shi, Wang-peng;Chen, Hong-hao;Zhang, Rong;Wang, Yan;Liu, Xiao-li
关键词:Chinese licorice; leaf beetle; semiochemicals; HIPVs; VOCs