首页> 外文期刊>Ecography >The importance of phenotypic plasticity and local adaptation in driving intraspecific variability in thermal niches of marine macrophytes
【24h】

The importance of phenotypic plasticity and local adaptation in driving intraspecific variability in thermal niches of marine macrophytes

机译:表型可塑性和局部适应在船舶宏粒热效力中驾驶内部变异性的重要性

获取原文
获取原文并翻译 | 示例
       

摘要

Climate change is driving the redistribution of species at a global scale and documenting and predicting species' responses to warming is a principal focus of contemporary ecology. When interpreting and predicting their responses to warming, species are generally treated as single homogenous physiological units. However, local adaptation and phenotypic plasticity can result in intraspecific differences in thermal niche. Therefore, population loss may also not only occur from trailing edges. In species with low dispersal capacity this will have profound impacts for the species as a whole, as local population loss will not be offset by immigration of warm tolerant individuals. Recent evidence from terrestrial forests has shown that incorporation of intraspecific variation in thermal niche is vital to accurately predicting species responses to warming. However, marine macrophytes (i.e. seagrasses and seaweeds) that form some of the world's most productive and diverse ecosystems have not been examined in the same context. We conducted a literature review to determine how common intraspecific variation in thermal physiology is in marine macrophytes. We find that 90% of studies identified (n=42) found clear differences in thermal niche between geographically separated populations. Therefore, non-trailing edge populations may also be vulnerable to future warming trends and given their limited dispersal capacity, such population loss may not be offset by immigration. We also explore how next generation sequencing (NGS) is allowing unprecedented mechanistic insight into plasticity and adaptation. We conclude that in the 'genomic era' it may be possible to link understanding of plasticity and adaptation at the genetic level through to changes in populations providing novel insights on the redistribution of populations under future climate change.
机译:气候变化正在推动全球范围内的物种的再分配,并记录和预测物种对变暖的回应是当代生态的主要重点。当解释和预测其对升温的反应时,物种通常被视为单一均匀的生理单位。然而,局部适应和表型可塑性可能导致热力利基的内部差异。因此,人口损失也可能不仅从尾部边缘发生。在低分散能力的物种中,这将对整体物种产生深远的影响,因为当地人口损失不会被普及耐热个体的移民抵消。来自陆地森林的最新证据表明,纳入热力利基的内部变异对于准确地预测物种对变暖的反应至关重要。然而,在同一背景下尚未检查形成世界上一些最富有成效和多样化的生态系统的海洋宏观物质(即海藻)。我们进行了一个文献综述,以确定热生理学中的常见内部变异如何在海洋宏观物质中。我们发现90%的研究(n = 42)发现了地理分离群体之间的热力利基的明显差异。因此,非后缘群体也可能易于对未来的变暖趋势群体,并且赋予它们有限的分散能力,这种人口损失可能无法通过移民抵消。我们还探讨下一代测序(NGS)如何允许前所未有的机械洞察可塑性和适应性。我们得出结论,在“基因组时代”中可能有可能将遗传水平的可塑性和适应的理解能够通过对未来气候变化的再分配提供新颖洞察的人口的变化。

著录项

  • 来源
    《Ecography》 |2018年第9期|共16页
  • 作者单位

    Aberystwyth Univ Inst Biol Environm &

    Rural Sci Aberystwyth Dyfed Wales;

    Aberystwyth Univ Inst Biol Environm &

    Rural Sci Aberystwyth Dyfed Wales;

    Marine Biol Assoc UK Plymouth Devon England;

    Aberystwyth Univ Inst Biol Environm &

    Rural Sci Aberystwyth Dyfed Wales;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);
  • 关键词

  • 入库时间 2022-08-20 02:26:19

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