Response of stream fungi on decomposing leaves to experimental drying

IF 0.9 3区 生物学 Q3 MARINE & FRESHWATER BIOLOGY
Dev K. Niyogi, Chia-Yi Hu, Brett P. Vessell
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引用次数: 3

Abstract

Climate change may lead to increased droughts in the future, which in turn may lead to increased periods of stream drying. We conducted an experiment to test the effects of drying on fungal communities and microbial activity on decaying leaves from a stream. Our experimental setup included immersion of maple leaf cores for 2 weeks in a small stream to allow for the colonization of microbes. Leaves were then subjected for 2 weeks to four treatments: one control, where leaves stayed immersed in the stream, and three drying treatments in different settings (field, lab, and oven). Leaves were then returned to sterile water for 2 weeks of recovery. Microbial respiration declined after all drying treatments compared to the control, with the oven-dried leaves taking the longest time to recover. All drying treatments had similar respiration to each other and the control after 2 weeks of immersion recovery. Fungal communities on the leaves were assessed by polymerase chain reaction amplification of fungal DNA from leaves followed by denaturing gradient gel electrophoresis (DGGE). Most treatments had very similar communities based on phylotypes from DGGE, with little change during drying and recovery compared to immersion controls. However, the oven-dried leaves had a very different community developing during recovery. There were no differences in diversity or richness of DGGE phylotypes among treatments after recovery. Overall, the fungal communities, in our experiment, appeared resilient to the effects of short-term drying, with little change to community structure and relatively fast recovery in activity after rewetting.

分解叶片上的溪流真菌对实验干燥的响应
气候变化可能导致未来更多的干旱,这反过来又可能导致河流干涸的时间增加。我们进行了一项实验,测试了干燥对河流腐叶真菌群落和微生物活性的影响。我们的实验设置包括将枫叶芯浸泡在小溪中2周,以允许微生物定植。在2周的时间里,叶片接受四种处理:一种对照,叶片浸泡在溪流中,三种不同环境(田间、实验室和烘箱)的干燥处理。然后将叶片置于无菌水中2周恢复。与对照相比,所有干燥处理后的微生物呼吸都有所下降,烘箱干燥的叶子需要最长的时间才能恢复。浸泡恢复2周后,各干燥处理间的呼吸量与对照相似。采用聚合酶链反应扩增叶片真菌DNA,再进行变性梯度凝胶电泳(DGGE)鉴定叶片真菌群落。大多数处理的群落基于DGGE的种型非常相似,在干燥和恢复期间与浸泡对照相比变化很小。然而,在恢复过程中,烘干叶片的群落发育却截然不同。恢复后不同处理间DGGE基因型的多样性和丰富度无差异。总体而言,在我们的实验中,真菌群落对短期干燥的影响表现出弹性,群落结构变化不大,再湿润后活性恢复相对较快。
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来源期刊
International Review of Hydrobiology
International Review of Hydrobiology 生物-海洋与淡水生物学
CiteScore
4.10
自引率
10.50%
发文量
15
审稿时长
3 months
期刊介绍: As human populations grow across the planet, water security, biodiversity loss and the loss of aquatic ecosystem services take on ever increasing priority for policy makers. International Review of Hydrobiology brings together in one forum fundamental and problem-oriented research on the challenges facing marine and freshwater biology in an economically changing world. Interdisciplinary in nature, articles cover all aspects of aquatic ecosystems, ranging from headwater streams to the ocean and biodiversity studies to ecosystem functioning, modeling approaches including GIS and resource management, with special emphasis on the link between marine and freshwater environments. The editors expressly welcome research on baseline data. The knowledge-driven papers will interest researchers, while the problem-driven articles will be of particular interest to policy makers. The overarching aim of the journal is to translate science into policy, allowing us to understand global systems yet act on a regional scale. International Review of Hydrobiology publishes original articles, reviews, short communications, and methods papers.
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