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Temporal changes in gene expression and genotype frequency of the ornithine decarboxylase gene in native silverside Basilichthys microlepidotus: Impact of wastewater reduction due to implementation of public policies

机译:天然银侧小拟青鱼中鸟氨酸脱羧酶基因的基因表达和基因型频率的时间变化:公共政策的实施对减少废水的影响

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摘要

Human activity has caused a deterioration in the health and population size of riverine species; thus, public policies have been implemented to mitigate the anthropogenic impacts of water use, watercourse transformation, and pollution. We studied the Maipo River Basin, one of the most polluted with untreated wastewater in Chile, for a period of 12 years (2007‐2019). Since the implementation of new public policies, including the operation of a wastewater collector (2012), the Maipo River Basin is currently much less polluted by untreated water than before. To analyze the impact of wastewater reduction in this river basin, we studied the native silverside ( ), which inhabits both polluted and unpolluted areas of the river basin. Previous studies reported the overexpression of the ornithine decarboxylase ( ) gene, heterozygote deficit, and high frequency of a homozygote genotype in silverside populations that inhabit wastewater‐polluted sites, suggesting a phenotypic change and genotypic selection in response to pollution. Here, a population affected and another population unaffected by wastewater were studied before and after implementing the wastewater collector. The physicochemical data of water samples, changes in expression and microsatellite variability, and genotype frequencies were analyzed. The results showed physicochemical changes in the affected site before and after the operation of the wastewater collector. The microsatellite loci showed no changes in either population. The expression in the affected site was higher before the operation of the wastewater collector. Significant changes in the genotype frequencies of the gene before and after the wastewater collector operation were detected only at the affected site, wherein the homozygous dominant genotype decreased from >59% to <25%. Our results suggest that public policies aimed at mitigating aquatic pollution can indirectly affect both gene expression and genotype frequencies of important functional genes.
机译:人类活动导致河流物种的健康和种群规模恶化;因此,已实施公共政策以减轻用水,水道转换和污染的人为影响。我们研究了Maipo流域,这是智利未经处理的废水污染最严重的流域之一,为期12年(2007-2019年)。自从实施新的公共政策(包括废水收集器的运行)(2012年)以来,迈坡河流域目前受到未经处理的水的污染比以前少得多。为了分析减少废水对该流域的影响,我们研究了原生的银苷(),该生境居住在流域的污染区和未污染区。先前的研究报道了鸟苷脱羧酶()基因的过表达,杂合子缺陷和在废水污染的地方居住的银边种群中纯合子基因型的高频率,这表明响应污染的表型发生变化和基因型选择。在这里,在实施废水收集器之前和之后,研究了一个受影响的人群和另一个不受废水影响的人群。分析了水样品的理化数据,表达和微卫星变异性的变化以及基因型频率。结果表明,污水收集器运行前后受影响部位的物理化学变化。微卫星基因座在两个种群中均未显示变化。在废水收集器运行之前,受影响部位的表达较高。仅在受影响的位置检测到废水收集器操作前后该基因的基因型频率的显着变化,其中纯合优势基因型从> 59%降至<25%。我们的结果表明,旨在减轻水生污染的公共政策可以间接影响重要功能基因的基因表达和基因型频率。

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