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首页> 外文期刊>Australian Journal of Zoology >Nesting behaviour of the endangered Mary River turtle: monitoring and modelling to inform e-flow strategies
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Nesting behaviour of the endangered Mary River turtle: monitoring and modelling to inform e-flow strategies

机译:濒危玛丽河龟的筑巢行为:监控和建模通知电子流策略

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摘要

The Mary River turtle (Elusor macrurus) is an endemic, monotypic species with multiple impacts across its life-history, including overharvesting of eggs, nest predation and habitat degradation. Long-term recruitment failure has led to protection measures established under state, federal and international authority. Previous research has demonstrated that E. macrurus lives instream but nests on river banks, requiring specific habitat for breeding, nesting and recruitment. Ecohydrological rules represent the critical water requirements contributing to a species' life history and can be used to develop and assess environmental flow strategies for species affected by water resource development. This study investigated the nesting behaviour of E. macrurus, including the environmental drivers that affect nest inundation. Monitoring showed that nesting by E. macrurus peaked in October and November, driven by rainfall events (&10mm), with potential impacts from flow events (20% of nests established &2.5 m above water level at time of nesting). These ecohydrological rules were modelled against 109 years of simulated natural flow and rainfall data. The 'potential nesting and nest inundation' (PNNI) indicator revealed that nesting for E. macrurus was assured in a majority of years under the natural flow scenario. The results of this study will inform the development and assessment of e-flow strategies for nesting by E. macrurus in terms of current, and future water resource development, along with climate change impacts.
机译:Mary River Turtle(Elusor Macrurus)是一种地方性,单型型物种,其生命历史上具有多种影响,包括鸡蛋,巢捕食和栖息地降解的过度煅烧。长期招聘失败导致国家,联邦和国际权威下设立的保护措施。以前的研究表明,E. Macrurus生活在河流上的巢穴中,但需要特定的栖息地进行繁殖,筑巢和招聘。生态水论规则代表了对物种寿命历史的关键水需求,可用于开发和评估受水资源开发影响的物种的环境流动策略。本研究调查了E. Macrurus的嵌套行为,包括影响巢淹没的环境司机。监测显示,E. Macrurus的嵌套于10月和11月达到峰值,由降雨事件(& 10mm)驱动,流动事件的潜在影响(20%的巢穴建立的巢穴;在水平上方水平上方水平。筑巢)。这些生态水规规则是针对109年的模拟自然流量和降雨数据的建模。 “潜在的筑巢和巢淹没”(PNNI)指标显示,在自然流动场景下大多数多年来,嵌套E. macrurus被保证。本研究的结果将以当前和未来的水资源开发而言,在当前和未来的水资源开发方面,向嵌套的嵌套嵌套的发动策略的发展和评估。

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  • 来源
    《Australian Journal of Zoology》 |2018年第1期|共12页
  • 作者单位

    Dept Nat Resources Mines &

    Energy 16-32 Enterprise St Bundaberg Qld 4670 Australia;

    Tiaro &

    Dist Landcare Grp POB 6 Tiaro Qld 4650 Australia;

    Dept Nat Resources Mines &

    Energy 16-32 Enterprise St Bundaberg Qld 4670 Australia;

    Univ Utrecht Behav Ecol Grp Inst Environm Biol POB 80125 NL-3508 TC Utrecht Netherlands;

    Dept Nat Resources Mines &

    Energy 16-32 Enterprise St Bundaberg Qld 4670 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

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