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稻蛙共作模式下青蛙密度和水稻生长阶段对稻田及肠道微生物群落的影响

Frog Density and Growth Stage of Rice Impact Paddy Field and Gut Microbial Communities in Rice-Frog Co-Cropping Models.

作者信息

Zhu Zhangyan, Li Ran, Ma Yunshuang, Yu Anran, Zheng Rongquan

机构信息

Provincial Key Laboratory of Wildlife Biotechnology and Conservation and Utilization, Zhejiang Normal University, Jinhua 321004, China.

Xingzhi College, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Microorganisms. 2025 Jul 20;13(7):1700. doi: 10.3390/microorganisms13071700.

Abstract

The black-spotted frog () is a common economic species in the rice-frog ecological cropping mode. The present study investigated microbial community structures in paddy water and black-spotted frog's guts across rice monoculture and low-/high-density rice-frog co-cropping systems at four rice growth stages. Proteobacteria dominate in paddy water, while frog guts are enriched in Firmicutes and Actinobacteriota. The frog density shows no impact on the α-diversity, but rice growth stages significantly alter the Shannon, Simpson, and Pielou_e indices ( < 0.01). Co-cropping may promote amino acid synthesis, elemental cycling, and stress tolerance in paddy water microbiota, which are more diverse than gut microbiota. Strong correlations exist between paddy water and gut microbiotas, with being linked to gut diversity ( < 0.05). Low-density co-cropping enhances , which is beneficial for pest control and stabilizes gut microbiota. The results of this study offer insights for managing rice-frog systems based on rice growth stages.

摘要

黑斑侧褶蛙是稻蛙生态种植模式中常见的经济物种。本研究调查了在四个水稻生长阶段,单季稻种植以及低密度/高密度稻蛙共作系统中稻田水和黑斑侧褶蛙肠道中的微生物群落结构。变形菌门在稻田水中占主导地位,而蛙肠道中厚壁菌门和放线菌门更为丰富。蛙的密度对α多样性没有影响,但水稻生长阶段显著改变了香农指数、辛普森指数和皮洛均匀度指数(P<0.01)。共作可能促进稻田水微生物群中的氨基酸合成、元素循环和胁迫耐受性,稻田水微生物群比肠道微生物群更加多样。稻田水和肠道微生物群之间存在强相关性,稻田水微生物群与肠道多样性相关(P<0.05)。低密度共作增强了这一点,这有利于害虫控制并稳定肠道微生物群。本研究结果为基于水稻生长阶段管理稻蛙系统提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb55/12300932/353c323f94f9/microorganisms-13-01700-g001.jpg

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