Dive Deep: Bioenergetic Adaptation of Deep-Sea Animals.

IF 0.9 4区 生物学 Q3 ZOOLOGY
Mitsuharu Yagi, Sayano Anzai, Shogo Tanaka
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引用次数: 0

Abstract

The deep sea, which encompasses the largest habitat on Earth, presents a set of extreme and unique environmental conditions, including high hydrostatic pressure, near-freezing temperatures, and perpetual darkness. These conditions pose significant challenges to the survival and energy management of its inhabitants. Deep-sea organisms have evolved a range of bioenergetic adaptations to negotiate these harsh conditions, ensuring efficient energy acquisition and utilization. This review examines the multifaceted strategies employed by deep-sea animals, focusing on three key areas: energy input, digestive and absorptive efficiency, and energy consumption. We examine the physical environment of the deep sea, highlighting vertical profiles of temperature, salinity, and dissolved oxygen, which contrast sharply with surface conditions. Physiological adaptations of deep-sea species, such as specialized digestive systems and enzyme modifications that function optimally under high pressure, are explored in detail. Furthermore, we discuss behavioral adaptations, including diurnal vertical migration, which optimize energy intake and reduce metabolic costs. Comparative analyses with shallow-water species provide insights into the evolutionary pressures that have shaped these adaptations. This review also addresses the concept of "power budgeting", in which energy expenditures for specific dynamic actions (SDAs) must be balanced with other metabolic demands. This comprehensive examination of bioenergetic adaptation in deep-sea organisms enhances our understanding of their resilience and adaptability, offering glimpses into the complex interplay between environmental constraints and biological processes in one of the most challenging habitats on the planet.

深海潜水:深海动物的生物能量适应。
深海包含着地球上最大的栖息地,呈现出一系列极端而独特的环境条件,包括高静水压力、接近冰点的温度和永久的黑暗。这些条件对其居民的生存和能源管理构成了重大挑战。深海生物已经进化出一系列的生物能量适应能力来应对这些恶劣的条件,确保有效的能量获取和利用。本文综述了深海动物采用的多方面策略,重点介绍了三个关键领域:能量输入、消化和吸收效率以及能量消耗。我们研究了深海的物理环境,突出了温度、盐度和溶解氧的垂直剖面,与表面条件形成鲜明对比。深海物种的生理适应,如特殊的消化系统和酶修饰,在高压下发挥最佳作用,进行了详细的探讨。此外,我们讨论了行为适应,包括每日垂直迁移,优化能量摄入和降低代谢成本。与浅水物种的比较分析提供了对形成这些适应的进化压力的见解。这篇综述还讨论了“能量预算”的概念,其中特定动态动作(SDAs)的能量支出必须与其他代谢需求相平衡。这项对深海生物的生物能量适应的全面研究增强了我们对它们的恢复力和适应性的理解,让我们得以一窥地球上最具挑战性的栖息地之一的环境约束和生物过程之间复杂的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zoological Science
Zoological Science 生物-动物学
CiteScore
1.70
自引率
11.10%
发文量
59
审稿时长
1 months
期刊介绍: Zoological Science is published by the Zoological Society of Japan and devoted to publication of original articles, reviews and editorials that cover the broad field of zoology. The journal was founded in 1984 as a result of the consolidation of Zoological Magazine (1888–1983) and Annotationes Zoologicae Japonenses (1897–1983), the former official journals of the Zoological Society of Japan. Each annual volume consists of six regular issues, one every two months.
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