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生长速率与氧化应激的降低有关,并且这种效应在一种非洲丽鱼科雄性鱼类中受到社会优势程度的调节。

Growth rate is associated with reduced oxidative stress and this effect is modulated by the degree of social dominance in males of an African cichlid fish.

作者信息

Dijkstra Peter D

机构信息

Central Michigan University, Department of Biology, Mount Pleasant, MI, USA; Neuroscience Program, Central Michigan University, Mount Pleasant, MI, USA; Institute for Great Lakes Research, Central Michigan University, Mount Pleasant, MI, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2025 Sep;307:111892. doi: 10.1016/j.cbpa.2025.111892. Epub 2025 Jun 7.

Abstract

Attaining large body size has several selective benefits, however, increased growth rate has potential costs that can constrain investment in other life history traits, such as reproductive output and territorial defense. Oxidative stress can both constrain and result from growth, potentially mediating life history trade-offs between growth rate and other life history traits. Studies on the oxidative cost of growth have provided mixed evidence, in part because components of oxidative balance, including oxidative damage and antioxidant function, is influenced by investment in other activities in a tissue-specific manner. Here, I examined how among-individual variation in growth rate is linked to oxidative stress, and how this relationship is influenced by markers of social dominance (aggressiveness and relative gonad size) in males of the cichlid fish Astatotilapa burtoni. To this end, 7 markers of oxidative damage and antioxidant function in various tissue types (total of 14 measurements) were assessed in dominant and subordinate males. I found that dominant males grew faster than subordinate males. However, increased growth was linked to reduced oxidative stress. This effect was independent of social status but modulated by the degree of social dominance. Overall, the results are consistent with oxidative stress mediating the link between growth and other life history traits. However, my findings challenge the idea that increased growth rate results in elevated oxidative stress, perhaps due to effective protective mechanisms that can neutralize the oxidative challenge of growth.

摘要

达到较大的体型有几个选择性优势,然而,生长速率的提高也有潜在成本,这可能会限制对其他生活史特征的投入,如繁殖产出和领地防御。氧化应激既能限制生长,又源于生长过程,可能在生长速率与其他生活史特征之间的生活史权衡中起介导作用。关于生长的氧化成本的研究提供了不一致的证据,部分原因是氧化平衡的组成部分,包括氧化损伤和抗氧化功能,会以组织特异性的方式受到对其他活动投入的影响。在这里,我研究了丽鱼科鱼类伯氏中丽鱼雄性个体间生长速率的差异如何与氧化应激相关联,以及这种关系如何受到社会优势标记(攻击性和相对性腺大小)的影响。为此,对优势和从属雄性个体的各种组织类型中的7种氧化损伤和抗氧化功能标记(共14项测量)进行了评估。我发现优势雄性比从属雄性生长得更快。然而,生长的增加与氧化应激的降低相关联。这种效应与社会地位无关,但受社会优势程度调节。总体而言,结果与氧化应激介导生长与其他生活史特征之间的联系一致。然而我的研究结果对生长速率增加会导致氧化应激升高这一观点提出了挑战,这可能是由于有效的保护机制能够抵消生长带来的氧化挑战。

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