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Respiratory and desiccation constraints during encapsulated intertidal development of the marine gastropod Acanthina monodon

机译:呼吸和干燥约束在海洋胃肠杆菌的封装跨孕术期间

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摘要

Acanthina monodon commonly deposits its egg capsules in the intertidal zone. Capsule aerial exposure during low-tide can impact oxygen consumption rates (OCR) of embryos and intracapsular oxygen availability, and expose embryos to desiccation. OCR increased as embryonic development progressed, and was greater when capsules were submerged in seawater than when exposed to air. Oxygen available within the capsule was always less than that available in the immediate external environment, whether capsules were immersed or exposed. The highest internal oxygen concentrations were recorded during periods of air exposure for embryos in more advanced development stages. When exposed to air, capsules lost water the fastest when they contained early embryos, and suffered the highest mortalities following exposure. Collectively, these data suggest that, although encapsulation helps the embryos to develop across wildly fluctuating environmental conditions, the amount of stress the embryos experience will vary depending on their exact positioning within the intertidal zone.
机译:Acanthina Monodon通常将其蛋胶囊沉积在潮间区。在低潮期间胶囊空中曝光可能会影响胚胎的氧气消耗率(OCR)和孔血液可用性,并暴露胚胎以干燥。随着胚胎发育的进展而增加,当胶囊被浸没在海水时比暴露在空气中时,较大。胶囊内可用的氧气总是小于外部环境中可用的氧气,是否浸入或暴露胶囊。在更先进的开发阶段的胚胎空气暴露期间记录最高内氧浓度。当暴露在空气中时,胶囊在含有早期胚胎时最快地失去了水,并且在暴露后遭受了最高的死亡率。这些数据集体表明,虽然封装有助于胚胎在繁漏的环境条件下发展,但胚胎经验的应力量将根据其在潮间区内的精确定位而变化。

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