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Evolutionary origin of autonomic regulation of physiological activities in vertebrate phyla

机译:脊椎动物门生理活动自主调节的进化起源

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Proper regulation of physiological activities is crucial for homeostasis in animals. Autonomic regulation of these activities is most developed in mammals, in which a part of peripheral nervous system, termed the autonomic nervous system plays the dominant role. Circulatory activity and digestive activity in vertebrates change in opposite phases to each other. The stage where circulatory activity is high and digestive activity is low is termed the “fight or flight stage” while the stage where circulatory activity is low and digestive activity is high is termed the “rest and digest stage”. It has been thought that the autonomic nervous system originated in early vertebrate phyla and developed to its greatest extent in mammals. In this study, we compared the pattern of change of circulatory and digestive activities in several invertebrates and found that the two stages seen in mammals are also present in a wide variety of animals, including evolutionarily early-diverging invertebrate taxa. From this and other arguments we propose a novel possibility that the basic properties of the autonomic nervous system were established very early in metazoan evolution.
机译:适当调节生理活动对于动物体内的动态平衡至关重要。这些活动的自主调节是在哺乳动物中最发达的,哺乳动物的周围神经系统的一部分被称为自主神经系统。脊椎动物的循环活动和消化活动彼此相反。循环活动高而消化活动低的阶段称为“战斗或逃避阶段”,而循环活动低而消化活动高的阶段称为“休息和消化阶段”。人们认为,自主神经系统起源于早期脊椎动物门,并在哺乳动物中发展到最大程度。在这项研究中,我们比较了几种无脊椎动物的循环和消化活动变化的模式,发现在哺乳动物中看到的两个阶段也存在于多种动物中,包括进化上早发的无脊椎动物类群。根据这一论点和其他观点,我们提出了一种新的可能性,即自主神经系统的基本特性在后生动物进化的早期就建立了。

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