低温环境和微生境对雪活弹蛾微生物群的影响

IF 5 2区 农林科学 Q1 SOIL SCIENCE
Cao Hao , Yunga Wu , Ting-Wen Chen , Nadieh de Jonge , Guoliang Xu , Donghui Wu , Jeppe Lund Nielsen
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引用次数: 0

摘要

与动物相关的微生物群为其宿主提供必要的服务,它们在无雪期间得到了广泛的研究;然而,恶劣环境下土壤动物的微生物群,特别是弹线虫,一种能够耐受零下温度并在积雪覆盖地区保持活跃的土壤微节肢动物的关键群体,目前还没有得到很好的了解。本研究采用16S rRNA基因扩增子测序方法,对广泛分布于中国东北地区的弹线虫(Desoria ruseki)肠道菌群进行了研究。我们的研究结果表明,与雪和凋落物中发现的微生物群落相比,线虫的潜在共生微生物群和食物微生物群不表现出距离衰减模式。与雪活跃弹蛾种群相关的微生物群落在不同地点差异显著,雪对微生物群落的影响大于凋落物。积雪中总碳、总氮、铵态氮和硝态氮是影响线虫食物菌群的关键因子,而凋落物中总碳对线虫潜在共生菌群的影响显著。与炭疽菌相关的细菌,如Lautropia、链霉菌、分枝杆菌、Marmoricola和Fridmanniella对理化性质的变化有反应。研究结果表明,与雪活弹虫相关的不同微生物群在微生境条件下表现出不同的驱动模式。本研究结果可以提高我们对雪区土壤节肢动物肠道微生物群的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental and microhabitat influences on microbiota of snow-active Collembola in sub-zero temperatures
Animal-associated microbiotas provide essential services to their host and they have been extensively studied during the snow free periods; however, the microbiotas of soil animals in harsh environments, particularly Collembola, a key group of soil microarthropods tolerating sub-zero temperatures and remaining active in snow-covered regions, are not well understood yet. In this study, we investigated the gut microbiota of the Collembola species Desoria ruseki, which is widely distributed in Northeast China, using 16S rRNA gene amplicon sequencing from different sites. Our findings revealed that the potential symbiotic microbiota and food microbiota of Collembola did not exhibit a distance-decay pattern, in contrast to the microbial communities found in snow and litter. The microbial communities associated with snow-active Collembola populations differed significantly among sites with snow being more influential than litter in shaping microbial communities. Total carbon, total nitrogen, ammonium nitrogen and nitrate nitrogen in snow were key factors influencing the food microbiota of Collembola, while total carbon in litter significantly affected their potential symbiotic microbiota. Collembola-associated bacteria, such as Lautropia, Streptomyces, Mycobacterium, Marmoricola, and Fridmanniella responded to changes in physicochemical properties. Our results suggest that different microbial groups associated with snow-active Collembola show distinct driving patterns by microhabitat conditions. The findings of this study can improve our understanding of the gut microbiota assembly of soil arthropods active in snowy regions.
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来源期刊
Applied Soil Ecology
Applied Soil Ecology 农林科学-土壤科学
CiteScore
9.70
自引率
4.20%
发文量
363
审稿时长
5.3 months
期刊介绍: Applied Soil Ecology addresses the role of soil organisms and their interactions in relation to: sustainability and productivity, nutrient cycling and other soil processes, the maintenance of soil functions, the impact of human activities on soil ecosystems and bio(techno)logical control of soil-inhabiting pests, diseases and weeds.
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