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Potential influence of egg location on synchrony of hatching of precocial birds

机译:产卵位置对早熟鸟类孵化同步性的潜在影响

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Although the onset of incubation prior to completion of the clutch leads to developmental asynchrony of the embryos, waterfowl eggs tend to hatch synchronously (within 3-24 hr). The mechanisms waterfowl use to synchronize development of embryos and allow for synchronous hatching are still not well understood. A variety of mechanisms have been proposed, including vocalization by embryos, egg size, egg constituents, and developmental asynchrony at hatching. Empirical evidence for any of these mechanisms, however, is limited for species that lay large clutches (>6 eggs). We hypothesize that the eggs' position within the clutch may synchronize development of embryos of dabbling ducks that lay clutches large enough that central and peripheral eggs may be distinguished. We tested this hypothesis by comparing the developmental stage of central and peripheral eggs and testing for a relationship between the order in which an egg was laid and its position (central or peripheral) within the clutch. We found that eggs laid later were central more often than expected if their distribution were random and that during the first 12 days of incubation central eggs tended to be less developed than peripheral eggs.
机译:尽管在离合完成之前开始孵化会导致胚胎发育异步,但水禽卵往往会同步孵化(3-24小时内)。水鸟用于同步胚胎发育并允许同步孵化的机制仍未得到很好的理解。已经提出了多种机制,包括胚胎发声,卵大小,卵成分和孵化时的发育异步。但是,对于这些机制中的任何一种的经验证据都限于产下大型离合器(> 6个卵)的物种。我们假设蛋在离合器中的位置可以使of鸭的胚胎同步发展,这些鸭子将离合器放置得足够大以至于可以区分中央蛋和外围蛋。我们通过比较中心蛋和外围蛋的发育阶段并测试蛋的放置顺序及其在离合器中的位置(中心或外围)之间的关系来检验该假设。我们发现,如果以后产的卵是随机分布的,则产下的卵比预期的多处于中心位置,并且在孵化的前12天中,中心卵往往不如外围卵发育。

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