首页> 外文学位 >High resolution habitat suitability modeling for a narrow-range endemic alpine Hawaiian species.
【24h】

High resolution habitat suitability modeling for a narrow-range endemic alpine Hawaiian species.

机译:高分辨率的栖息地适应性建模,用于狭窄范围的地方性高山夏威夷夏威夷物种。

获取原文
获取原文并翻译 | 示例

摘要

Mapping potentially suitable habitat is critical for effective species conservation and management but can be challenging in remote areas exhibiting complex substrate heterogeneity. An approach that combines a diverse set of nonintrusive spatial data collection techniques with field validation can lead to a better understanding of landscapes and species distributions. Nysius wekiuicola, commonly known as the wekiu bug, is the most studied arthropod species endemic to the Maunakea summit in Hawai'i, yet details of its life history and geographic distribution remain poorly understood. The w?kiu bug, a species of concern, provides an excellent opportunity to employ nonintrusive spatial data collection techniques to answer previously elusive questions about habitat quality and composition. To predict the geographic distribution of N. wekiuicola, MaxEnt habitat suitability models were generated from fifteen years of species occurrence data and a variety of spatial datasets, including high resolution digital elevation models, surface mineralogy based on hyperspectral remote sensing, and climate variables. MaxEnt model results indicate that the variables with the highest influence (in terms of percent contribution) were elevation (78.2%), presence of nanocrystalline hematite surface minerals (13.7%), and minor contributions from aspect, slope, and other surface minerals. A limitation of this study is that many historic trapping sites were placed near roads and other accessible pre-determined locations instead of being systematically or randomly placed, meaning final model results may be biased and not entirely indicative of true w?kiu bug distribution. Although climate data is available, these climatic variables were auto-correlated and at too coarse of a spatial resolution to include in the final analysis. A trapping experiment based on surface mineralogy and geomorphic position affirmed that both elevation and surface mineralogy play significant roles in the spatial patterns of w?kiu bugs, but observed presence upslope on a cinder cone and absence downslope, even within the same predominant surface mineral, suggests that other habitat variables may be at play such as competition/predation. The models of w?kiu bug range and predicted suitable locations will be incorporated into management efforts and restoration goals for land managers of Maunakea. In addition, environmental data layers created in this initiative have now unlocked the ability to create suitability models for other species of interest on Maunakea.
机译:绘制可能合适的栖息地图对于有效的物种保护和管理至关重要,但在显示复杂基质异质性的偏远地区可能会遇到挑战。一种将多种非侵入性空间数据收集技术与现场验证相结合的方法可以更好地理解景观和物种分布。 Nysius wekiuicola,通常被称为wekiu虫,是在夏威夷毛纳基亚山顶特有的研究最多的节肢动物物种,但对其生命史和地理分布的细节仍知之甚少。 w?kiu虫是一个令人关注的物种,它提供了一个极好的机会,可以采用非侵入性的空间数据收集技术来回答有关生境质量和成分的先前难以捉摸的问题。为了预测维克努科拉猪笼草的地理分布,根据15年物种发生数据和各种空间数据集(包括高分辨率数字高程模型,基于高光谱遥感的地表矿物学和气候变量)生成了MaxEnt生境适应性模型。 MaxEnt模型结果表明,影响最大的变量(按贡献百分比计)为高程(78.2%),存在纳米晶赤铁矿表层矿物(13.7%),以及纵横比,坡度和其他表层矿物的贡献较小。这项研究的局限性在于,许多历史性的诱捕地点都被放置在道路和其他可到达的预定地点附近,而不是系统地或随机地放置,这意味着最终的模型结果可能会产生偏差,并不能完全表明真实的臭虫分布。尽管可以获得气候数据,但这些气候变量是自相关的,并且空间分辨率太粗糙,无法包含在最终分析中。根据地表矿物学和地貌位置进行的捕集实验证实,海拔和地表矿物学均在W?kiu虫的空间格局中起着重要作用,但即使在同一主要表层矿物中,也观察到了煤渣锥上的存在上坡和无下坡,这表明其他栖息地变量可能正在发挥作用,例如竞争/捕食。 w?kiu虫害范围和预测的合适位置的模型将被纳入毛纳基亚群岛土地管理人员的管理工作和恢复目标中。此外,此计划中创建的环境数据层现在已经释放了为毛纳基亚(Maunakea)上其他感兴趣物种创建适应性模型的能力。

著录项

  • 作者

    Stephenson, Nathan Michael.;

  • 作者单位

    University of Hawai'i at Hilo.;

  • 授予单位 University of Hawai'i at Hilo.;
  • 学科 Environmental science.;Geographic information science and geodesy.;Conservation biology.
  • 学位 M.S.
  • 年度 2016
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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