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窝卵数与雏鸟期的家燕表现出的端粒延长有关。

Brood size is associated with apparent telomere lengthening in nestling barn swallows.

机构信息

Department of Biology, Kenyon College, Gambier, OH, 43022, USA.

出版信息

Oecologia. 2023 May;202(1):29-40. doi: 10.1007/s00442-023-05375-0. Epub 2023 Apr 23.

Abstract

Early life for animals is often a time of rapid growth and development. In a resource-limited environment, life history theory predicts that there must be trade-offs between resource sinks in ways that optimize future survival and reproductive success. Telomeres have emerged as putative indicators of these early life trade-offs, but there are conflicting accounts as to how developmental traits and conditions impact telomere length and dynamics. For 2 years, we studied the nestlings of a breeding population of barn swallows from day 6 to day 12 of life, measuring various ontogenetic factors to understand to what extent they explain variation in telomere length and dynamics. We unexpectedly found that telomeres lengthened between the two sampling points. Nestlings in large broods had shorter telomeres, but surprisingly, individuals that grew faster from day 6 to day 12 had longer telomeres and more telomere lengthening. Nestlings with higher mass relative to their nestmates on d6 had shorter telomeres, suggesting that the relatively fast growth barn swallows experience early in development is more costly than the relatively slower growth later in development. These effects were only found in the first year of study. Telomere lengthening may be due to the initiation of new hematopoietic cell lines during development or the expression of telomerase early in life. Favorable early life conditions and high parental investment could allow for more growth with little to no cost to telomere length or dynamics.

摘要

动物的早期生活通常是快速生长和发育的时期。在资源有限的环境中,根据生活史理论预测,必须在以优化未来生存和繁殖成功为目标的资源消耗之间进行权衡。端粒已成为这些早期生活权衡的假定指标,但关于发育特征和条件如何影响端粒长度和动态的说法存在矛盾。在 2 年的时间里,我们研究了繁殖的家燕巢雏从生命的第 6 天到第 12 天,测量了各种个体发生因素,以了解它们在多大程度上解释了端粒长度和动态的变化。我们出人意料地发现,端粒在两个采样点之间变长了。在大巢中孵育的雏鸟的端粒较短,但令人惊讶的是,从第 6 天到第 12 天生长较快的个体的端粒较长,端粒延长也更多。在第 6 天相对于巢内同伴体重较高的巢雏的端粒较短,这表明家燕在早期发育中相对较快的生长比后期发育中相对较慢的生长成本更高。这些影响仅在研究的第一年发现。端粒延长可能是由于在发育过程中启动了新的造血细胞系,或者在生命早期表达了端粒酶。有利的早期生活条件和高亲投资可以在不对端粒长度或动态产生任何影响的情况下,允许更多的生长。

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