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昆虫呼吸模式模型为什么会失败?

Why do models of insect respiratory patterns fail?

机构信息

Department of Conservation Ecology and Entomology, Faculty of AgriSciences, Stellenbosch University, Private Bag X1, Matieland 7602, Stellenbosch, South Africa

Division of Biological Sciences, University of Montana, Missoula, MT 59812, USA.

出版信息

J Exp Biol. 2018 Jul 1;221(Pt 13):jeb130039. doi: 10.1242/jeb.130039.

Abstract

Insects exchange respiratory gases using an astonishing diversity of patterns. Of these, discontinuous gas exchange cycles (DGCs) have received the most study, but there are many other patterns exhibited intraspecifically and interspecifically. Moreover, some individual insects transition between patterns based on poorly understood combinations of internal and external factors. Why have biologists failed, so far, to develop a framework capable of explaining this diversity? Here, we propose two answers. The first is that the framework will have to be simultaneously general and highly detailed. It should describe, in a universal way, the physical and chemical processes that any insect uses to exchange gases through the respiratory system (i.e. tracheal tubes and spiracles) while simultaneously containing enough morphological, physiological and neural detail that it captures the specifics of patterns exhibited by any species or individual. The second difficulty is that the framework will have to provide ultimate, evolutionary explanations for why patterns vary within and among insects as well as proximate physiological explanations for how different parts of the respiratory system are modified to produce that diversity. Although biologists have made significant progress on all of these problems individually, there has been little integration among approaches. We propose that renewed efforts be undertaken to integrate across levels and approaches with the goal of developing a new class of general, flexible models capable of explaining a greater fraction of the observed diversity of respiratory patterns.

摘要

昆虫通过惊人多样的模式来交换呼吸气体。其中,不连续气体交换循环(DGC)受到了最多的研究,但在种内和种间还存在许多其他模式。此外,一些个体昆虫根据内部和外部因素的组合在模式之间转换,而这些组合尚不清楚。那么,为什么生物学家迄今为止未能开发出一个能够解释这种多样性的框架呢?在这里,我们提出两个答案。第一个答案是,该框架必须同时具有通用性和高度详细性。它应该以通用的方式描述任何昆虫通过呼吸系统(即气管和气门)交换气体所使用的物理和化学过程,同时包含足够的形态、生理和神经细节,以捕捉任何物种或个体所展示的模式的具体细节。第二个困难是,该框架必须提供内在和种间模式变化的最终进化解释,以及呼吸系统不同部分如何被修改以产生这种多样性的近因生理解释。尽管生物学家在这些问题上都取得了重大进展,但各种方法之间几乎没有整合。我们建议重新努力进行跨层次和方法的整合,目标是开发一类新的通用、灵活的模型,能够解释观察到的呼吸模式多样性的更大比例。

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