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模式生物的自然史:幼虫的隐秘(群体)生活及其对发育生态学的重要性。

Natural history of model organisms: The secret (group) life of larvae and why it matters to developmental ecology.

作者信息

Morimoto Juliano, Pietras Zuzanna

机构信息

School of Biological Sciences University of Aberdeen Aberdeen UK.

Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping Sweden.

出版信息

Ecol Evol. 2020 Nov 10;10(24):13593-13601. doi: 10.1002/ece3.7003. eCollection 2020 Dec.

Abstract

Model organisms such as have been key tools for advancing our fundamental and applied knowledge in biological and biomedical sciences. However, model organisms have become intertwined with the idea of controlled and stable laboratory environments, and their natural history has been overlooked.In holometabolous insects, lack of natural history information on larval ecology has precluded major advances in the field of developmental ecology, especially in terms of manipulations of population density early in life (i.e., larval density). This is because of relativistic and to some extent, arbitrary methodologies employed to manipulate larval densities in laboratory studies. As a result, these methodologies render comparisons between species impossible, precluding our understanding of macroevolutionary responses to population densities during development that can be derived from comparative studies.We recently proposed a new conceptual framework to address this issue, and here, we provide the first natural history investigation of larval density under such framework. First, we characterized the distribution of larval densities in a wild population of using rotting apples as breeding substrate in a suburban area in Sweden.Next, we compiled the commonly used methodologies for manipulating larval densities in laboratory studies from the literature and found that the majority of laboratory studies identified did not manipulate larval densities below or above the densities observed in nature, suggesting that we have yet to study true life history and physiological responses to low and high population densities during development.This is, to our knowledge, the first direct natural history account of larval density in nature for this model organism. Our study paves the way for a more integrated view of organismal biology which re-incorporates natural history of model organisms into hypothesis-driven research in developmental ecology.

摘要

诸如[具体生物名称未给出]这样的模式生物一直是推动我们在生物和生物医学科学领域的基础及应用知识发展的关键工具。然而,模式生物已与受控且稳定的实验室环境概念紧密相连,其自然史被忽视了。在全变态昆虫中,缺乏关于幼虫生态学的自然史信息阻碍了发育生态学领域的重大进展,特别是在生命早期对种群密度的操纵(即幼虫密度)方面。这是因为在实验室研究中用于操纵幼虫密度的方法具有相对性且在某种程度上是任意的。结果,这些方法使得物种间的比较变得不可能,妨碍了我们从比较研究中理解发育过程中对种群密度的宏观进化反应。我们最近提出了一个新的概念框架来解决这个问题,在此,我们提供在此框架下对[具体生物名称未给出]幼虫密度的首次自然史调查。首先,我们以瑞典郊区腐烂的苹果作为繁殖基质,对[具体生物名称未给出]野生种群中的幼虫密度分布进行了特征描述。接下来,我们从文献中汇编了实验室研究中常用的操纵幼虫密度的方法,发现所确定的大多数实验室研究并未将幼虫密度操纵到低于或高于自然界观察到的密度,这表明我们尚未研究[具体生物名称未给出]发育过程中对低种群密度和高种群密度的真实生活史及生理反应。据我们所知,这是对该模式生物幼虫密度在自然界的首次直接自然史描述。我们的研究为生物体生物学更综合的观点铺平了道路,这种观点将模式生物的自然史重新纳入发育生态学中由假设驱动的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d21/7771115/05d5fac03480/ECE3-10-13593-g001.jpg

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