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Breeding and multiple waves of primary molt in common ground doves of coastal Sinaloa

机译:锡那罗亚州沿海地鸽的繁殖和多次蜕皮初级蜕皮

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摘要

For adult Common Ground Doves from Sinaloa we demonstrate that the primaries are a single molt series, which sometimes feature two (in one case three) waves of feather replacement. Such stepwise primary replacement is found in many large birds but, at 40 g, this dove is much the smallest species reported to have multiple waves of replacement proceeding through its primaries simultaneously. Pre-breeding juvenile Common Ground Doves never feature two waves of primary replacement. Juveniles usually have more than two adjacent feathers growing simultaneously and replace their primaries in about 100 days. In contrast adults, which extensively overlap molt and breeding, usually grow just a single primary at a time, and require at least 145 days to replace their primaries. Molt arrests are thought to drive the generation of new waves of primary replacement in a diversity of large birds. For adult Common Ground Doves, we found molt arrests to be strongly associated with active crop glands, suggesting that the demands of parental care cause arrests in primary replacement in this dove. For those adults with two primary molt waves, initiation of an inner wave was most frequently observed once the outer wave had reached P10. Thus, unlike reports for large birds, Common Ground Doves usually suppress the initiation of a new wave of molt starting at P1 when the preceding wave arrests before reaching the distal primaries. This assures that relatively fresh inner primaries are not replaced redundantly, overcoming a serious flaw in stepwise molting in large birds ().
机译:对于来自锡那罗亚州的成年普通鸽子,我们证明了原色是单一的蜕皮系列,有时会有两波(有时是三波)的羽毛替换。在许多大型鸟类中都发现了这种逐步的一次代换,但是这种鸽子的重量为40克,是最小的物种,据报道这只鸽子同时经历了多次代换波。繁殖前的幼年“共同地面之鸽”从来不会出现两次主要替换的浪潮。幼虫通常有两个以上的相邻羽毛同时生长,并在大约100天内替换它们的基羽。相比之下,成虫在蜕皮和繁殖上有很大的重叠,通常一次只生长一个单一的原代,并且至少需要145天才能更换其原代。据认为,蜕皮的捕获推动了各种大型禽类中新一轮的初代替换浪潮的产生。对于成年普通鸽,我们发现蜕皮逮捕与活跃的作物腺体有很强的联系,这表明父母亲的要求导致了这只鸽子的初代替换被捕。对于那些有两个主蜕皮波的成年人,一旦外波达到P10,最常观察到内波的产生。因此,与大型鸟类的报道不同,当前一波在到达远端原基之前停滞时,普通鸽子通常会抑制从P1开始的新的蜕皮波的产生。这样可确保不会相对新鲜地替换内部的原色,从而克服了大型禽类逐步蜕皮的严重缺陷。

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