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Morphological plasticity reduces the effect of poor developmental conditions on fledging age in mourning doves

机译:形态可塑性减少了哀悼鸽子发育不良条件对成龄的影响

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摘要

Developmental plasticity can be integral in adapting organisms to the environment experienced during growth. Adaptive plastic responses may be especially important in prioritizing development in response to stress during ontogeny. To evaluate this, I examined how developmental conditions for mourning doves related to early growth and how this affected fledging age, an important life-history transition for birds. The life history of mourning doves is consistent with strong selective pressure to minimize fledging age. Therefore, I predicted that in the face of nutritional stress associated with experimental brood-size increases, young would prioritize growth to structures that promote early fledging to reduce the effect of slowed overall growth on fledging age. Increasing brood size slowed overall structural growth of nestlings and affected the relative allocation of growth among different body parts. Total wing area was the best predictor of fledging age and individuals from larger broods had larger wings relative to overall body size. Although nestlings from larger broods fledged at later ages owing to slower overall growth, prioritization of wing growth reduced this effect by an estimated 1.6 days relative to the delay if plasticity among body parts had not occurred. This was an 11 per cent reduction in the predicted developmental time it took to reach this important life-history transition. Results demonstrate that preferential allocation to wing growth can affect the timing of this life-history transition and that morphological plasticity during development can have adaptive near-term effects during avian development.
机译:发育可塑性可以使有机体适应生长过程中遇到的环境。适应性塑性反应对于在个体发育过程中对压力的反应优先发展方面尤其重要。为了对此进行评估,我研究了哀悼鸽子的发育状况与早期生长之间的关系,以及这种影响如何影响成年年龄(这是鸟类重要的生活史过渡)。哀鸽的生活史与强烈的选择性压力相一致,以最大程度地减少成年幼鸽的年龄。因此,我预测面对育雏规模增加带来的营养压力,年轻人会优先考虑促进早熟的结构的生长,以减少总体生长减慢对成年年龄的影响。育雏规模的增加减慢了雏鸟的整体结构生长,并影响了其在身体不同部位之间的相对分配。机翼总面积是雏鸡成年的最佳预测指标,而相对于整体体型而言,大雏鸟的机翼更大。尽管由于总体生长速度较慢,较大的雏鸟的雏鸟在较晚的时候就开始出雏,但如果没有在身体各部位之间产生可塑性,相对于延误而言,侧翼生长的优先次序将这种效应降低了约1.6天。达到这一重要的生命历史转变所需的预计发育时间减少了11%。结果表明,对机翼生长的优先分配可能会影响这种生命历史过渡的时间,并且发育过程中的形态可塑性可能会在禽类发育过程中产生适应性的近期影响。

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