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地中海绿海龟筑巢海滩的微生物群落:生物发光生态板方法在海滩污染中的应用。

The microbial community in a green turtle nesting beach in the Mediterranean: application of the Biolog EcoPlate approach for beach pollution.

机构信息

Department of Medical Services and Techniques, Vocational School of Health Services, Giresun University, 28200, Giresun, Turkey.

Department of Biology, Faculty of Sciences, Hacettepe University, 06800, Ankara, Turkey.

出版信息

Environ Sci Pollut Res Int. 2021 Sep;28(36):49685-49696. doi: 10.1007/s11356-021-14196-8. Epub 2021 May 3.

DOI:10.1007/s11356-021-14196-8
PMID:33942264
Abstract

This study aims to characterize the microbial community and its relationship with heavy metal pollution in the beaches of Sugözü, an important nesting site for the green turtle. Heavy metal concentrations of sand samples from subregions of Sugözü were determined using ICP-MS. The microbial community was analyzed using the Biolog® EcoPlate. The relationship between microbial catalytic activity and heavy metal levels were analyzed using canonical correspondence analysis. Levels of Al, Fe, Mn, and Cr were quite high (4332.34, 13,764.77, 590.98, and 48.21 mg/kg, respectively). The microbial community in subregions with high levels of metals was found to use carboxylic acid as a carbon source. Bioactivity, substrate utilization, diversity, and evenness values indicated negative correlations concentrations of Al, Fe, and Cr (-0.820, -0.508, and -0.560, respectively). It was also found that microbial diversity decreased in the subregions where heavy metal concentration increased. Embryonic deaths were found highest at early stage (0.1 to 0.2 eggs) and lowest at middle stage for whole study sites by inspecting a total 6408 eggs of 63 green turtle nests. The Biolog EcoPlate was firstly applied to determine pollution, and our findings clearly demonstrate the applicability and effectiveness of this method in assessing nesting beaches.

摘要

本研究旨在描述苏古兹海滩的微生物群落及其与重金属污染的关系,苏古兹海滩是绿海龟的重要筑巢地。使用 ICP-MS 测定苏古兹海滩各分区的沙样中重金属浓度。使用 Biolog® EcoPlate 分析微生物群落。使用典范对应分析(CCA)分析微生物催化活性与重金属水平之间的关系。Al、Fe、Mn 和 Cr 的含量非常高(分别为 4332.34、13764.77、590.98 和 48.21mg/kg)。结果发现,金属含量较高的分区中微生物群落利用羧酸作为碳源。生物活性、底物利用率、多样性和均匀度值与 Al、Fe 和 Cr 浓度呈负相关(分别为-0.820、-0.508 和-0.560)。此外,还发现微生物多样性在重金属浓度增加的分区中降低。通过检查 63 个绿海龟巢穴的 6408 个卵,发现在整个研究区域中,胚胎死亡率在早期(0.1 到 0.2 个卵)最高,在中期最低。Biolog EcoPlate 最初被用于确定污染,我们的研究结果清楚地证明了该方法在评估筑巢海滩方面的适用性和有效性。

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