Light-Driven Changes in Macrophyte Tissue Quality Affect the Composition of Associated Microbial Communities.

IF 3.3 3区 生物学 Q2 ECOLOGY
Mandy Velthuis, Luca Zoccarato, Annelies J Veraart, Michael T Monaghan, Elisabeth Funke, Piet Verdonschot, Hans-Peter Grossart, Sabine Hilt
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Abstract

Microbial biofilms are important components in macrophyte decomposition, and their composition depends on the decomposition stage and host plant quality. Here, we investigated how macrophyte tissue quality (i.e., C:N:P stoichiometry and phenolic contents) influences epiphytic microbial biofilms during litter decomposition. Consecutive experiments were conducted to (1) modify the C:N:P stoichiometry and phenolic content of the freshwater macrophyte Elodea nuttallii by manipulating light and nutrient availability and (2) test how the modified tissue quality affected epiphytic microbial biofilm diversity and community composition before and during macrophyte decomposition. Our results showed that shading led to lower C:N ratios (28.6 to 12.6) and higher phenolic content (10.8 to 19.2 µg/mg dry weight). Simultaneously, shading affected the epiphytic bacterial and fungal community composition, and these shifts correlated with the macrophyte C:N ratio. While no effects of macrophyte tissue quality on decomposition rates were observed, the epiphytic bacterial community composition on the litter was significantly affected by light treatment, time, and their interaction. Bacterial community composition shifted from a high abundance of Comamonadaceae to a more diverse community over time. Overall bacterial diversity was lower on the litter grown in the shaded mesocosms. Fungal diversity and community composition during litter decomposition were not affected by litter quality. Overall, our results reveal a structuring role of macrophyte tissue quality on its associated microbial biofilm and uniquely show a continuation of light-driven changes in epiphytic bacterial community composition after exposure. We conclude that light-driven changes in C:N stoichiometry are a crucial factor in shaping epiphytic microbial communities during macrophyte decomposition.

大型植物组织质量的光驱动变化影响相关微生物群落的组成。
微生物生物膜是大型植物分解的重要组成部分,其组成取决于分解阶段和寄主植物的品质。在这里,我们研究了凋落物分解过程中大型植物组织质量(即C:N:P化学计量和酚含量)对附生微生物生物膜的影响。通过调节光照和养分有效性,对淡水大植藻C:N:P化学计量和酚类含量进行了调整;对大植藻分解前和分解过程中组织质量的变化对附生微生物生物膜多样性和群落组成的影响进行了研究。结果表明,遮荫降低了碳氮比(28.6 ~ 12.6),提高了酚含量(10.8 ~ 19.2µg/mg干重)。遮荫影响了附生细菌和真菌的群落组成,这些变化与大型植物的C:N比值相关。虽然大型植物组织质量对凋落物分解速率没有影响,但光照处理、时间及其相互作用对凋落物附生细菌群落组成有显著影响。随着时间的推移,细菌群落组成从高丰度的共生菌科转变为更多样化的群落。在阴影中生的凋落物中,细菌的总体多样性较低。凋落物质量不影响凋落物分解过程中真菌多样性和群落组成。总的来说,我们的研究结果揭示了大型植物组织质量对其相关微生物生物膜的结构作用,并独特地显示了暴露后附生细菌群落组成的持续光驱动变化。我们得出结论,在大型植物分解过程中,光驱动C:N化学计量的变化是形成附生微生物群落的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Microbial Ecology
Microbial Ecology 生物-海洋与淡水生物学
CiteScore
6.90
自引率
2.80%
发文量
212
审稿时长
3-8 weeks
期刊介绍: The journal Microbial Ecology was founded more than 50 years ago by Dr. Ralph Mitchell, Gordon McKay Professor of Applied Biology at Harvard University in Cambridge, MA. The journal has evolved to become a premier location for the presentation of manuscripts that represent advances in the field of microbial ecology. The journal has become a dedicated international forum for the presentation of high-quality scientific investigations of how microorganisms interact with their environment, with each other and with their hosts. Microbial Ecology offers articles of original research in full paper and note formats, as well as brief reviews and topical position papers.
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