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首页> 外文期刊>The Journal of Experimental Biology >Alternating egg-brooding behaviors create and modulate a hypoxic developmental micro-environment in Children's pythons (Antaresia childreni)
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Alternating egg-brooding behaviors create and modulate a hypoxic developmental micro-environment in Children's pythons (Antaresia childreni)

机译:交替的卵孵化行为在儿童蟒蛇(Antaresia childreni)中创造并调节了低氧发育微环境。

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摘要

Parental care is a widespread and ecologically relevant adaptation known to enhance the developmental environment of offspring. Parental behaviors, however, may entail both costs and benefits for developing offspring. In Children's pythons (Antaresia childreni), we monitored both maternal egg-brooding behavior and intra-clutch oxygen partial pressure (P-O2) in real-time to assess the effects of various brooding behaviors on P-O2 in the clutch micro-environment at three stages of development. Furthermore, at the same developmental stages, we measured O-2 consumption rates (((V)over dot)(O2)) of eggs at varying P-O2 to determine their critical oxygen tension (i.e. the minimal P-O2 that supports normal respiratory gas exchange) and to predict the impact that naturally brooded intra-clutch P-O2 has on embryonic metabolism. At all three stages of development, a tightly coiled brooding posture created an intra-clutch P-O2 that was significantly lower than the surrounding nest environment. Maternal postural adjustments alleviated this hypoxia, and the magnitude of such corrections increased with developmental stage. Mean intraclutch P-O2 decreased with stage of development, probably because of increasing egg ((V)over dot)(O2). Additionally, embryo critical oxygen tension increased with developmental stage. Together, these results suggest that python embryos are unable to maintain normal metabolism under brooded conditions during the final 10% of incubation. These results demonstrate that specific parental behaviors can impose obligatory costs to developing offspring and that balancing these behaviors can mediate deleterious consequences.
机译:父母照料是一种广泛的,与生态有关的适应措施,已知可以改善后代的发育环境。但是,父母的行为可能会带来后代成长的成本和收益。在儿童蟒蛇(Antaresia childreni)中,我们实时监测了产妇的卵育雏行为和离合器内氧分压(P-O2),以评估各种育雏行为对离合器微环境中P-O2的影响。在发展的三个阶段。此外,在相同的发育阶段,我们测量了不同P-O2下鸡蛋的O-2消耗率(点上的((V)点)(O2)),以确定它们的临界氧张力(即支持正常氧含量的最小P-O2)。呼吸气体交换)并预测自然繁殖的离合器内P-O2对胚胎代谢的影响。在发育的所有三个阶段中,紧密盘绕的育雏姿势形成了离合室内的P-O2,其含量明显低于周围的巢环境。产妇姿势调整减轻了这种缺氧,并且这种调整的幅度随着发育阶段的增加而增加。平均离合器内P-O2随着发育阶段而降低,这可能是由于卵((V)在点上)(O2)增加所致。此外,胚胎的临界氧张力随着发育阶段的增加而增加。总之,这些结果表明,在孵化的最后10%期间,蟒蛇胚胎在育雏条件下无法维持正常的代谢。这些结果表明,特定的父母行为会给后代的发展带来强制性成本,而平衡这些行为会介导有害的后果。

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