...
首页> 外文期刊>Hydrobiologia >Biodiversity and fish farming intensification in French fishpond systems
【24h】

Biodiversity and fish farming intensification in French fishpond systems

机译:法国鱼塘系统中的生物多样性和鱼类养殖集约化

获取原文
获取原文并翻译 | 示例
           

摘要

Fishponds are artificial ecosystems in which biodiversity may be strongly affected by fish farming management. We studied biodiversity variation along a gradient of fish farming intensification within a 180-pond sample of a French region to establish whether biodiversity primarily depended on extensive management with the alternative hypothesis that some habitat characteristics could compensate for the effect of intensification. We compared the relationships of three biodiversity indicators (breeding birds, protected plants, macrophytes) to an index of intensification and to habitat characteristics likely to influence each indicator. In all selected indicators, species richness did not vary according to the composite intensification gradient. Protected plant richness was best explained by periodic drainage, which could thus benefit biodiversity in intensified fishponds provided that shallow littoral areas are still present. Bird richness was linked to macrophyte cover and probably to reed bed areas. Macrophyte richness and coverage were negatively influenced by low water transparency and high fish biomass which seemed likely to affect bird habitat above 350–400 kg/ha. Aquatic vegetation, which may reflect interactive effects of environmental factors and fish farming management, may then contribute to assessment of the ecological status of fishponds under the E.U. Water Framework Directive.
机译:鱼塘是人工生态系统,其中养鱼管理可能会严重影响生物多样性。我们在一个法国地区的180个池塘样本中研究了沿鱼类养殖集约化梯度的生物多样性变化,以确定生物多样性是否主要取决于广泛的管理,以及一些生境特征可以补偿集约化影响的替代假设。我们比较了三个生物多样性指标(鸟类,保护植物,大型植物)与集约化指数以及可能影响每个指标的栖息地特征之间的关系。在所有选定的指标中,物种丰富度并没有根据复合强度梯度而变化。定期排水可以最好地解释受保护植物的丰富性,如果沿岸浅层区域仍然存在,这可以使集约化鱼塘中的生物多样性受益。鸟类的丰富度与大型植物的覆盖率以及芦苇床区域有关。低水透明度和高鱼类生物量对大型植物的丰富度和覆盖率产生不利影响,这似乎可能影响350-400公斤/公顷以上的鸟类栖息地。水生植被可能反映了环境因素和养鱼管理的相互作用,可能有助于评估欧盟对鱼塘的生态状况。水框架指令。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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