Ringsby Thor Harald, Jensen Henrik, Pärn Henrik, Kvalnes Thomas, Boner Winnie, Gillespie Robert, Holand Håkon, Hagen Ingerid Julie, Rønning Bernt, Sæther Bernt-Erik, Monaghan Pat
Centre for Biodiversity Dynamics, Department of Biology, Norwegian University of Science and Technology, 7491 Trondheim, Norway
Centre for Biodiversity Dynamics, Department of Biology, Norwegian University of Science and Technology, 7491 Trondheim, Norway.
Proc Biol Sci. 2015 Dec 7;282(1820):20152331. doi: 10.1098/rspb.2015.2331.
Evolution of body size is likely to involve trade-offs between body size, growth rate and longevity. Within species, larger body size is associated with faster growth and ageing, and reduced longevity, but the cellular processes driving these relationships are poorly understood. One mechanism that might play a key role in determining optimal body size is the relationship between body size and telomere dynamics. However, we know little about how telomere length is affected when selection for larger size is imposed in natural populations. We report here on the relationship between structural body size and telomere length in wild house sparrows at the beginning and end of a selection regime for larger parent size that was imposed for 4 years in an isolated population of house sparrows. A negative relationship between fledgling size and telomere length was present at the start of the selection; this was extended when fledgling size increased under the selection regime, demonstrating a persistent covariance between structural size and telomere length. Changes in telomere dynamics, either as a correlated trait or a consequence of larger size, could reduce potential longevity and the consequent trade-offs could thereby play an important role in the evolution of optimal body size.
体型的进化可能涉及体型、生长速率和寿命之间的权衡。在物种内部,较大的体型与更快的生长和衰老以及较短的寿命相关,但驱动这些关系的细胞过程却知之甚少。一种可能在决定最佳体型方面起关键作用的机制是体型与端粒动态之间的关系。然而,对于在自然种群中施加对更大体型的选择时端粒长度如何受到影响,我们了解甚少。我们在此报告在一个隔离的家麻雀种群中进行了4年的更大亲本体型选择实验开始和结束时,野生家麻雀的结构体体型与端粒长度之间的关系。在选择开始时,雏鸟体型与端粒长度之间存在负相关关系;当在选择条件下雏鸟体型增加时,这种关系进一步扩大,表明结构体体型与端粒长度之间存在持续的协方差。端粒动态的变化,无论是作为一种相关性状还是更大体型的结果,都可能降低潜在寿命,因此这种权衡可能在最佳体型的进化中发挥重要作用。