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首页> 外文期刊>Applied Microbiology >Structural and Functional Dynamics of Soil Microbes following Spruce Beetle Infestation
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Structural and Functional Dynamics of Soil Microbes following Spruce Beetle Infestation

机译:云杉甲虫侵扰后土壤微生物的结构和功能动态

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As the range of bark beetles expands into new forests and woodlands, the need to understand their effects on multiple trophic levels becomes increasingly important. To date, much attention has been paid to the aboveground processes affected by bark beetle infestation, with a focus on photoautotrophs and ecosystem level processes. However, indirect effects of bark beetle on belowground processes, especially the structure and function of soil microbiota remains largely a black box. Our study examined the impacts of bark beetle-induced tree mortality on soil microbial community structure and function using high-throughput sequencing of the soil bacterial and fungal communities and measurements of extracellular enzyme activities. The results suggest bark beetle infestation affected edaphic conditions through increased soil water content, pH, electrical conductivity, and carbon/nitrogen ratio and altered bulk and rhizosphere soil microbial community structure and function. Finally, increased enzymatic activity suggests heightened microbial decomposition following bark beetle infestation. With this increase in enzymatic activity, nutrients trapped in organic substrates may become accessible to seedlings and potentially alter the trajectory of forest regeneration. Our results indicate the need for incorporation of microbial processes into ecosystem level models.IMPORTANCE Belowground impacts of bark beetle infestation have not been explored as thoroughly as their aboveground counterparts. In order to accurately model impacts of bark beetle-induced tree mortality on carbon and nutrient cycling and forest regeneration, the intricacies of soil microbial communities must be examined. In this study, we investigated the structure and function of soil bacterial and fungal communities following bark beetle infestation. Our results show bark beetle infestation to impact soil conditions, as well as soil microbial community structure and function.
机译:随着树皮甲虫的范围扩展到新的森林和林地,需要了解他们对多种营养水平的影响变得越来越重要。迄今为止,已支付给受树皮甲虫侵扰影响的地上进程的关注,重点是光拍和生态系统级流程。然而,树皮甲虫对地下过程的间接影响,特别是土壤微生物群的结构和功能仍然是一个黑匣子。我们的研究检测了树皮甲虫诱导的树质死亡对土壤微生物群落结构的影响,使用土壤细菌和真菌社区的高通量测序和细胞外酶活性的测量。结果表明树皮甲虫侵扰通过增加土壤含水量,pH,导电性和碳/氮率和改变的散装和根际土壤微生物群落结构和功能来影响辅助病症。最后,增加的酶活性提出了吠甲虫侵扰后的微生物分解提高。随着酶活性的这种增加,捕获在有机基材中的营养物质可能可用于幼苗,并且可能改变森林再生的轨迹。我们的结果表明,需要将微生物过程纳入生态系统级模型。分别在树皮甲虫侵扰的地下尚未被彻底地作为他们的地上同行彻底探讨。为了准确模拟树皮甲虫诱导的树质死亡对碳和营养循环和森林再生的影响,必须检查土壤微生物群落的复杂性。在这项研究中,我们研究了树皮甲虫侵扰后土壤细菌和真菌社区的结构和功能。我们的结果显示皮甲甲虫侵扰,以影响土壤条件,以及土壤微生物群落结构和功能。

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