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Metabolic rate covaries with fitness and the pace of the life history in the field

机译:代谢率与适应性和田间生活史的步调有关

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摘要

Metabolic rate reflects the ‘pace of life’ in every organism. Metabolic rate is related to an organism's capacity for essential maintenance, growth and reproduction—all of which interact to affect fitness. Although thousands of measurements of metabolic rate have been made, the microevolutionary forces that shape metabolic rate remain poorly resolved. The relationship between metabolic rate and components of fitness are often inconsistent, possibly because these fitness components incompletely map to actual fitness and often negatively covary with each other. Here we measure metabolic rate across ontogeny and monitor its effects on actual fitness (lifetime reproductive output) for a marine bryozoan in the field. We also measure key components of fitness throughout the entire life history including growth rate, longevity and age at the onset of reproduction. We found that correlational selection favours individuals with higher metabolic rates in one stage and lower metabolic rates in the other—individuals with similar metabolic rates in each developmental stage displayed the lowest fitness. Furthermore, individuals with the lowest metabolic rates lived for longer and reproduced more, but they also grew more slowly and took longer to reproduce initially. That metabolic rate is related to the pace of the life history in nature has long been suggested by macroevolutionary patterns but this study reveals the microevolutionary processes that probably generated these patterns.
机译:代谢率反映了每个生物体的“生命节奏”。代谢率与生物体基本维持,生长和繁殖的能力有关,所有这些相互作用都会影响健康。尽管已经进行了数千种代谢率的测量,但影响代谢率的微进化力仍然难以分辨。代谢率与适应性之间的关系通常不一致,可能是因为这些适应性成分未完全映射到实际适应性,并且常常彼此消极共形。在这里,我们测量个体发育过程中的代谢率,并监测其对野外浮游动物的实际适应度(终生生殖输出)的影响。我们还测量了整个生命史中健身的关键组成部分,包括生殖开始时的增长率,寿命和年龄。我们发现,相关选择有利于一个阶段具有较高代谢率而另一阶段具有较低代谢率的个体,而每个发育阶段具有相似代谢率的个体的适应性最低。此外,代谢率最低的个体寿命更长,繁殖更多,但他们的成长也较慢,最初繁殖所需的时间更长。长期以来,宏观进化模式已经暗示了代谢率与自然生活史的步伐有关,但这项研究揭示了可能产生这些模式的微观进化过程。

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