数字农科院2.0

Microbial composition, assembly, and functional characteristics of generalized and specialized subcommunities under flooded paddy fields: long-term pesticide versus non-pesticide models

文献类型: 外文期刊

作者: Wang, Jing-Wen;Han, Cai-Ting;Wu, Dong-Ming;Zhou, Wei;Gao, Miao;Li, Yu-Shuang

作者机构:

关键词: pesticide pollution;microbial community generalists and specialist;soil health;microbial network;microbial function

期刊名称: FRONTIERS IN MICROBIOLOGY

ISSN:

年卷期: 2025 年 16 卷

页码:

收录情况: SCIE(2025版)

摘要: Background The extensive application of pesticides in agricultural practices is known to affect microbial health and thus eco-multifunctionality in soil. However, previous studies have mainly focused on these effects on whole microbial community in dryland, without considering that in paddy fields under flooded condition, especially lacking the finer insights into subcommunities related to niche fitness.Methods To address this issue, the paddy fields, managed with (HP) and without pesticide application (HH) over 8 years, were selected. Then, the occurrence characteristics, function and assembly of generalized and specialized subcommunities classified by niche fitness were investigated.Results The findings revealed that compared to HP model, the microbiota under HH model displayed higher bacterial diversity in both specialists and generalists, as well as greater fungal diversity in the generalists. However, pesticide residues in HP treatment increased copiotrophic microorganisms (e.g., Gemmatimonadota) in paddy soil, whereas oligotrophic microorganisms (e.g., Proteobacteria and Acidobacteriota) were significantly reduced. This indicated a special response of microflora to pesticide application under flooded condition, challenging the traditional views. Despite these changes, HP treatment also exhibited a substantial rise in pathogenic Fusarium, implying a higher diseases risk for rice. Neutral modeling revealed that both bacterial and fungal communities in HP were primarily driven by deterministic processes. Especially for specialists, it had a homogenization selection and diffusional limitation during community succession, because it was characterized by constrained adaptability, narrow ecological niches and high resource specificity. Regarding microbial networks, HP treatment resulted in lower node degree and closeness centrality compared to HH, leading to a decline in the overall functional capacity of the microbial community. FAPROTAX functional predictions further observed a significant reduction in the genes associated with nitrogen cycle and cellulolysis, while the human disease-related genes were increased in HP treatment. Collectively, these findings reveal that pesticide application in paddy fields significantly impacts microbial community structure and function, with specialized subcommunities being particularly vulnerable. These findings broaden our understanding into assembly principles of specialists and generalists under pesticide application in flooded paddy, which will contribute to the sustainable management for rice cultivation.

分类号:

  • 相关文献

[1]Transitioning towards dynamic, nature-based crop defenses: Dynamic, nature-based crop defenses: KAG Wyckhuys, X-W Wang and M Elkahky. Kris A.G. Wyckhuys,Xiao Wei Wang,Maged Elkahky. 2024

[2]Orchard systems offer low-hanging fruit for low-carbon, biodiversity-friendly farming. Wyckhuys, Kris A. G.,Abram, Paul K.,Barrios, Edmundo,Cancino, Jorge,Collatz, Jana,Fancelli, Marilene,Klein, Alexandra-Maria,Lindell, Catherine A.,Osterman, Julia,Pinto, Maria,Tang, Fiona H. M.,Tena, Alejandro,Elkahky, Maged. 2025

[3]Biochemical and molecular disruptions in hook snout carp induced by co-exposure to lambda-cyhalothrin and difenoconazole. Wang, Dou,An, Xuehua,Lu, Ping,Wang, Xinquan,Mao, Liangang,Tang, Tao,Wang, Yanhua,Liu, Xinju. 2025

[4]Effect of Short-Term Phosphorus Supply on Rhizosphere Microbial Community of Tea Plants. Yang H.,Ji L.,Long L.,Ni K.,Yang X.,Ma L.,Guo S.,Ruan J.. 2022

[5]Biogas Residues Improved Microbial Diversity and Disease Suppression Function under Extent Indigenous Soil Microbial Biomass. Yubin Zhao,Kai Hu,Jiadong Yu,Md Tariful Alam Khan,Yafan Cai,Xiaoling Zhao,Zehui Zheng,Yuegao Hu,Zongjun Cui,Xiaofen Wang. 2023

[6]Iron-nitrogen coupling mediates soil microbial community composition and gene expression during the formation of rusty root in Panax ginseng from three northeast provinces in China. Qiao Jin,Linlin Zhang,Keming Cao,Xiaoxi Pan,Zhengbo Liu,Yiming Guan,Xiangxi Zuo,Yayu Zhang,Qiuxia Wang. 2024

[7]Differential responses of bacteria, fungi, and C, N, P functions to soil acidification in farmland A meta-analysis. Zixu Li,Xinyu Gao,Dandan Li,Jing Gao,Jianhua Li,Zejiang Cai,Nan Sun,Lianhai Wu,Minggang Xu. 2025

[8]Differential responses of bacteria, fungi, and C, N, P functions to soil acidification in farmland: A meta-analysis. Zixu Li,Xinyu Gao,Dandan Li,Jing Gao,Jianhua Li,Zejiang Cai,Nan Sun,Lianhai Wu,Minggang Xu. 2025

[9]Response of Microbial Compositions and Interactions to Biochar Amendment in the Peanut-Planted Soil of the Yellow River Delta, China. Ruixue Sun,Xiangwei You,Yadong Cheng,Deping Gan,Fengyue Suo,Bo Wang,Yiqiang Li. 2022

[10]Deciphering Differences in Microbial Community Diversity between Clubroot-Diseased and Healthy Soils. Kang, Huajun,Chai, Ali,Lin, Zihan,Shi, Yanxia,Xie, Xuewen,Li, Lei,Fan, Tengfei,Xiang, Sheng,Xie, Jianming,Li, Baoju. 2024

[11]Partial substitution of nitrogen fertilizers by organic products of rural waste co-composting impacts on farmland soil quality. Yi Gao,Jiarui Wang,Yihong Ge,Yunhui Lei,Xiaocheng Wei,Yan Xu,Xiangqun Zheng. 2024

[12]Microbial Network Complexity Helps to Reduce the Deep Migration of Chemical Fertilizer Nitrogen Under the Combined Application of Varying Irrigation Amounts and Multiple Nitrogen Sources. Taotao Chen,Erping Cui,Yanbo Zhang,Ge Gao,Hao You,Yurun Tian,Chao Hu,Yuan Liu,Tao Fan,Xiangyang Fan. 2024

[13]Correlation between oral microbiota and dry socket at different time periods on tooth extraction. Yujia Wu,Hujie Lyu,Xuliang Deng,Yong Xin Liu,Ying He,Mingming Xu. 2025

[14]Frequency-dependent maize rotation modulates fungal functions for sustainable soybean production. Yuan, Ming,Wang, Tianshu,Yao, Shuihong,Han, Dongwei,Meng, Yili,Yu, Shuting,Lu, Wencheng. 2025

[15]Effect of tetraconazole application on the soil microbial community. Zhang, Wenwen,Xu, Jun,Dong, Fengshou,Liu, Xingang,Zhang, Ying,Wu, Xiaohu,Zheng, Yongquan,Zhang, Wenwen.

[16]Macro-and/or microplastics as an emerging threat effect crop growth and soil health. Haihe Gao,Qin Liu,Changrong Yan,Karen Mancl,Daozhi Gong,Jiuxing He,Xurong Mei. 2022

[17]Soil health evaluation approaches along a reclamation consequence in Hangzhou Bay, China. Liang Wei,Yonghua Li,Zhenke Zhu,Feng Wang,Xiaoxia Liu,Wenju Zhang,Mouliang Xiao,Gang Li,Jina Ding,Jianping Chen,Yakov Kuzyakov,Tida Ge. 2022

[18]Organic materials with high C/N ratio: more beneficial to soil improvement and soil health. Li, Jiayi,Ren, Tianbao,Li, Yasen,Chen, Nan,Yin, Quanyu,Li, Maosen,Liu, Haobao,Liu, Guoshun. 2022

[19]Effects of continuous cucumber cropping on crop quality and soil fungal community. Kaining Sun,Longyun Fu,Yang Song,Liang Yuan,Haoran Zhang,Dan Wen,Ning Yang,Xiao Wang,Yaoquan Yue,Xuhua Li,Kean Wang. 2021

[20]Effects of continuous cucumber cropping on crop quality and soil fungal community. Kaining Sun,Longyun Fu,Yang Song,Liang Yuan,Haoran Zhang,Dan Wen,Ning Yang,Xiao Wang,Yaoquan Yue,Xuhua Li,Kean Wang. 2021

作者其他论文 更多>>