The Effects of Roundup™ on Benthic Microbial Assemblages

IF 1.7 Q3 ECOLOGY
Ecologies Pub Date : 2022-11-24 DOI:10.3390/ecologies3040041
Shannon P. Weatherley, Hannah Laird, Caitlyn M. Gatley-Montross, Sarah B. Whorley
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引用次数: 0

Abstract

Given the wide usage of Roundup, a common herbicide, the impacts of its presence in ecological communities are of great interest. Many studies have investigated the effects of glyphosate, the active ingredient in Roundup, on different factions of an ecosystem including on animals, plants, microorganisms, and nutrients. The current study expanded upon these works using Roundup instead of glyphosate to provide a realistic application in which to observe the development of microbial assemblages and nutrient composition in two different habitats. Winogradsky columns were prepared using benthic material from a ditch and a pond. Varying concentrations of Roundup were introduced to the columns at the beginning of the study and microbial growth and nutrient compositions from each column were measured weekly. The results indicate that the presence of Roundup has varying effects on microorganisms and nutrients. While photosynthetic microbes were negatively impacted, a shift in the microbial composition to heterotrophic microbes indicates that these microorganisms were able to utilize some ingredients in Roundup as a nutrient source. Additionally, the temporal analysis of nutrient compositions indicated that microbes metabolize glyphosate starting with the phosphate moiety even when the other compounds in Roundup are present. While these trends were observed in both benthic habitats, the composition of the ecological community can affect its ability to utilize the ingredients in Roundup as a nutrient source.
农达™对底栖微生物群落的影响
农达是一种常见的除草剂,由于其广泛使用,其对生态群落的影响引起了人们的极大兴趣。许多研究调查了草甘膦(农达中的活性成分)对生态系统不同部分的影响,包括对动物、植物、微生物和营养物质的影响。目前的研究扩展了这些工作,使用农达代替草甘膦,以提供一个现实的应用,观察微生物组合和营养成分在两种不同栖息地的发展。Winogradsky柱是用来自沟渠和池塘的底栖生物材料制备的。在研究开始时,将不同浓度的农达引入柱中,每周测量每个柱的微生物生长和营养成分。结果表明,农达的存在对微生物和营养物质有不同的影响。虽然光合微生物受到负面影响,但微生物组成向异养微生物的转变表明,这些微生物能够利用农达中的某些成分作为营养来源。此外,营养成分的时间分析表明,即使存在农达中的其他化合物,微生物也会从磷酸盐部分开始代谢草甘膦。虽然在这两个底栖生物栖息地都观察到这些趋势,但生态群落的组成可能会影响其利用农达成分作为营养来源的能力。
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
CiteScore
1.80
自引率
0.00%
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