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首页> 外文期刊>Journal of Environmental Management >Use of spatio-temporal habitat suitability modelling to prioritise areas for common carp biocontrol in Australia using the virus CyHV-3
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Use of spatio-temporal habitat suitability modelling to prioritise areas for common carp biocontrol in Australia using the virus CyHV-3

机译:使用气象CyHV-3在澳大利亚普通鲤鱼生物控制优先级地区的使用时空栖息地使用

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摘要

Common carp (Cyprinus carpio) are an invasive species of the rivers and waterways of south-eastern Australia, implicated in the serious decline of many native fish species. Over the past 50 years a variety of control options have been explored, all of which to date have proved either ineffective or cost prohibitive. Most recently the use of cyprinid herpesvirus 3 (CyHV-3) has been proposed as a biocontrol agent, but to assess the risks and benefits of this, as well as to develop a strategy for the release of the virus, a knowledge of the fundamental processes driving carp distribution and abundance is required. To this end, we developed a novel process-based modelling framework that integrates expert opinion with spatio-temporal datasets via the construction of a Bayesian Network. The resulting weekly networks thus enabled an estimate of the habitat suitability for carp across a range of hydrological habitats in south-eastern Australia, covering five diverse catchment areas encompassing in total a drainage area of 132,129 km2 over a period of 17-27 years. This showed that while suitability for adult and subadult carp was medium-high across most habitats throughout the period, nevertheless the majority of habitats were poorly suited for the recruitment of larvae and young-of-year (YOY). Instead, high population abundance was confirmed to depend on a small number of recruitment hotspots which occur in years of favourable inundation. Quantification of the underlying ecological drivers of carp abundance thus makes possible detailed planning by focusing on critical weaknesses in the population biology of carp. More specifically, it permits the rational planning for population reduction using the biocontrol agent, CyHV-3, targeting areas where the total population density is above a "damage threshold" of approximately 100 kg/ha.
机译:常见的鲤鱼(Cyprinus carpio)是澳大利亚东南部河流和水道的侵入性物种,涉及许多本土鱼类的严重衰落。在过去的50年中,已经探索了各种控制选择,所有这些迄今为止都证明无论是无效的还是成本持久。最近,已经提出了使用Cyprinid Herpesvirus 3(Cyhv-3)作为生物控制剂,而是评估这一点的风险和益处,以及制定病毒释放的策略,这是根本的知识需要驾驶鲤鱼分配和丰度的过程。为此,我们开发了一种基于新的基于过程的建模框架,通过建设贝叶斯网络与时空数据集进行专家意见。因此,由此产生的每周网络使澳大利亚东南部一系列水文栖息地估计鲤鱼的栖息地适合性,涵盖了五个不同的集水区,其中包括132,129平方公里的排水区,在17-27岁。这表明,在整个时期的大多数栖息地的成人和子地理鲤鱼的适合性在大多数栖息地中,大多数栖息地都很适合招募幼虫和年幼(同比)。相反,确认了高人口丰富,以依赖于多年来发生的繁殖的少数招聘热点。因此,鲤鱼丰富的潜在生态驱动因素通过专注于鲤鱼种群生物学中的危重缺陷来实现有可能的详细规划。更具体地,它允许使用生物控制剂,CyHV-3,总人口密度高于“损伤阈值”的群体减少的合理规划,其中大约100kg / ha。

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