...
首页> 外文期刊>The Journal of Applied Ecology >Cadmium pollution triggers a positive biodiversity-productivity relationship: Evidence from a laboratory microcosm experiment
【24h】

Cadmium pollution triggers a positive biodiversity-productivity relationship: Evidence from a laboratory microcosm experiment

机译:镉污染引发积极的biodiversity-productivity关系:证据从实验室实验缩影

获取原文
获取原文并翻译 | 示例

摘要

Human activities are greatly changing the conditions of ecosystems. One of these major changes is that more and more ecosystems are facing increasing concentrations of highly toxic heavy metals like cadmium (Cd), lead (Pb) and mercury (Hg). Previous studies have shown this type of pollution may be associated with the loss of biodiversity, leaving some pollution-tolerant species to dominate the polluted ecosystems. To date, however, little is known about the extent to which the pollution caused by these toxins may affect the relationship between biodiversity and ecosystem function.2. In this study, we aimed to assess the role of Cd pollution in determining biodiversity-productivity relationships in aquatic ecosystems, by using data from a laboratory microcosm experiment that tested 110 algal communities with three levels of Cd pollution.3. Our results showed that the productivities of algal communities growing in non-Cd-polluted media did not significantly increase with increasing species richness, and this pattern did not change over time. In contrast, significantly positive biodiversity-productivity relationships were consistently found in algal communities growing in Cd-polluted media.4. We revealed that the putative facilitation among algal species in response to Cd pollution was the main driver of the observed significantly positive biodiversity-productivity relationships. Most importantly, we found that not only Cd-tolerant algal species but also Cd-sensitive algal species were able to dominate Cd-polluted polycultures and contribute to the increased productivities of these polycultures.5. Synthesis and applications. Collectively, our results provide the first explicit experimental evidence that Cd pollution can trigger a positive biodiversity-productivity relationship. We identify two profound implications: (i) conservation of biodiversity in all environments may reduce the future impacts of increasing environmental stresses (like Cd pollution) on ecosystem function (such as primary productivity); (ii) one possible approach to maintain or improve algal primary productivity in a polluted aquatic ecosystem may be to construct some suitable diverse algal assemblages that include not only pollution-tolerant species but also pollution-sensitive ones.
机译:人类活动极大地改变了条件的生态系统。变化是越来越多的生态系统面对不断增加的高毒性的浓度重金属如镉(Cd)、铅(Pb)和水银(汞)。类型的污染可能与损失有关生物多样性,留下一些pollution-tolerant控制污染的生态系统物种。日期,然而,人们很少知道这些毒素可能造成的污染影响生物多样性和之间的关系生态系统function.2。评估确定Cd污染的作用biodiversity-productivity关系水生生态系统,通过使用数据从一个实验室实验,测试了110缩影藻社区三个级别的Cdpollution.3。藻群落的生产力增长non-Cd-polluted媒体并不显著增加与物种丰富度增加,这种模式不随时间变化。相反,明显积极biodiversity-productivity关系持续发现藻社区成长在Cd-polluted media.4。假定的便利化藻类物种中应对Cd污染的主要原因观察到显著的积极的biodiversity-productivity关系。重要的是,我们发现不仅Cd-tolerant藻类物种还Cd-sensitive藻类物种能够主导Cd-polluted polycultures吗,为生产力的增加作出贡献这些polycultures.5。总的来说,我们的结果提供了第一个明确的实验证据,Cd污染可以触发一个积极biodiversity-productivity吗的关系。意义:(i)生物多样性的保护所有环境可以减少未来的影响增加环境压力(如Cd生态系统功能(如主节点上污染)生产率);维持或提高藻类初级生产力被污染的水生生态系统构建一些适合不同藻组合但不仅包括pollution-tolerant物种还pollution-sensitive的。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号