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Effects of simazine herbicide on a plant-arthropod-lizard tritrophic community in territorial indoor microcosms: Beyond the toxicity

机译:Simazine除草剂对植物节肢动物蜥蜴胎儿群落在地域室内微观族的影响:超越毒性

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摘要

Agricultural source pollution has been hypothesized as one of the main reasons for reptile declines over recent decades. In addition to their direct toxicity to reptiles, agrochemicals can also enter complex interactions with environmental factors, which alter the interspecific relationships within communities. The potentially resulting cascading effects affect our understanding of the links between contaminants and the extent of declines of reptile species. In the present study, plant-arthropod-lizard tritrophic microcosms were assessed to identify the ecological effect of the widely used herbicide simazine in simulated steppe ecosystems. Three dosages of simazine (0,0.060, and 0.006 g a.i./m~2) were applied to microcosms, and the responses of organisms at three trophic levels were examined after 30-day exposure. The results showed that simazine could inhibit the growth and ecological functions of primary producers, and caused a reduction in the content of primary and secondary metabolites. The number of arthropod populations decreased in the lower simazine application but increased in the higher simazine application, compared with the control. Simazine led to slow growth and poor physical conditions in lizards. The impact of simazine on the community could be attributed to the following three aspects: (1) a direct effect of simazine, (2) the driving force of food resources, and (3) behavioral dynamics. The physical conditions of lizards and of the arthropod population in the microcosms showed different responses to standard toxicological tests, and the forces of cascading causalities were identified as the main factors beyond the direct simazine toxicity. Therefore, the propagation and cascade across multitrophic levels should be considered in future assessments to avoid distorting conclusions.
机译:农业源污染已被假设是近几十年来爬行动物下降的主要原因之一。除了对爬行动物的直接毒性外,农业化学物质还可以进入与环境因素的复杂互动,这改变了社区内的差异关系。可能导致的级联效应影响我们对污染物之间的联系以及爬行物种的下降程度的理解。在本研究中,评估植物节肢动物 - 蜥蜴胎儿微观微观术,以确定广泛使用的除草剂Simazine在模拟草原生态系统中的生态效应。将三种Simazine(0.0.060和0.006g A.i./m〜2)应用于微观体,并且在30天暴露后检查了三种营养水平的生物体的反应。结果表明,西夏嗪可以抑制初级生产商的生长和生态功能,并导致初级和次生代谢物的含量降低。较低的Simazine应用中的节肢动物种群的数量降低,但与对照相比,较高的Simazine应用中增加。 Simazine导致蜥蜴的增长缓慢和差的物理状况。 Simazine对社区的影响可能归因于以下三个方面:(1)Simazine的直接影响,(2)食品资源的驱动力,(3)行为动态。微观毒科学中的蜥蜴和节肢动物群的物理状况表现出对标准毒理学试验的不同反应,并且级联因果征的力被确定为超出直接西夏毒性的主要因素。因此,在未来的评估中应考虑跨多层水平的传播和级联,以避免结论扭曲。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|146723.1-146723.10|共10页
  • 作者单位

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

    Department of Applied Chemistry China Agricultural University Yuanmingyuan West Road 2 Beijing 100193 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Herbicide; Simazine; Tritrophic microcosm; Ecotoxicology; Cascading effect;

    机译:除草剂;西藏;胎儿微观;生态毒理学;级联效果;
  • 入库时间 2022-08-19 02:23:44

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