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In hot and cold water: differential life-history traits are key to success in contrasting thermal deep-sea environments

机译:在冷热水中:不同的生活史特征是对比深海热环境成功的关键

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摘要

1.Few species of reptant decapod crustaceans thrive in the cold-stenothermal waters of the Southern Ocean. However, abundant populations of a new species of anomuran crab, Kiwa tyleri, occur at hydrothermal vent fields on the East Scotia Ridge. ud2.As a result of local thermal conditions at the vents, these crabs are not restricted by the physiological limits that otherwise exclude reptant decapods south of the polar front. ud3.We reveal the adult life-history of this species by piecing together variation in microdistribution, body size-frequency, sex ratio, and ovarian and embryonic development, which indicates a pattern in the distribution of female Kiwaidae in relation to their reproductive development. ud4.High-density "Kiwa" assemblages observed in close proximity to sources of vent fluids are constrained by the thermal limit of elevated temperatures and the availability of resources for chemosynthetic nutrition. Although adult Kiwaidae depend on epibiotic chemosynthetic bacteria for nutrition, females move offsite after extrusion of their eggs to protect brooding embryos from the chemically harsh, thermally fluctuating vent environment. Consequently, brooding females in the periphery of the vent field are in turn restricted by low-temperature physiological boundaries of the deep-water Southern Ocean environment. Females have a high reproductive investment in few, large, yolky eggs, facilitating full lecithotrophy, with the release of larvae prolonged, and asynchronous. After embryos are released, larvae are reliant on locating isolated active areas of hydrothermal flow in order to settle and survive as chemosynthetic adults. Where the cold water restricts the ability of all adult stages to migrate over long distances, these low temperatures may facilitate the larvae in the location of vent sites by extending the larval development period through hypometabolism.ud5.These differential life-history adaptations to contrasting thermal environments lead to a disjunct life history among males and females of Kiwa tyleri, which is key to their success in the Southern Ocean vent environment.ud6.We highlight the complexity in understanding the importance of life-history biology, in combination with environmental, ecological and physiological factors contributing to the overall global distribution of vent endemic species.
机译:1,极少数种类的十足十足纲甲壳类动物在南大洋的冷-正热水域中壮成长。但是,在东斯科舍省脊上的热液喷口处,有大量的无尾蟹新物种奇瓦泰勒(Kiwa tyleri)种群。 ud2.As的在排气口的局部热条件的结果,这些螃蟹不被否则排除reptant十足目南极锋的生理极限的限制。 ud3。我们通过将微分布,体型-频率,性别比以及卵巢和胚胎发育的变化拼凑在一起,揭示了该物种的成年生活史,这表明雌性猕猴科与它们的生殖发育有关的分布模式。 ud4。在接近排放液源的地方观察到的高密度“奇瓦”组合受到高温的热极限和化学合成营养资源的限制。尽管成年猕猴科依靠表生生物化学合成细菌来提供营养,但雌性在挤出卵子后移至异地以保护育雏胚胎免受化学刺激性,热波动的通风环境的影响。因此,在通气孔周围的雌性鱼类又受到南海深水环境的低温生理边界的限制。雌性在少数几个大的卵黄卵上有很高的繁殖投资,可促进全营养性,幼虫的释放延长且不同步。胚胎释放后,幼虫依靠定位热液流的孤立活动区域来定居并以化学合成的成年生存。在冷水限制了所有成年阶段长距离迁移的能力的情况下,这些低温可能会通过代谢不足而延长幼虫的发育期,从而促进幼虫在通风部位的位置。 ud5。这些差异的生活史适应性对比热环境导致猕猴桃雌雄分离的生活史,这是他们在南大洋喷口环境中成功的关键。 ud6。我们强调了了解生命史生物学与环境相结合的重要性的复杂性,生态和生理因素对泄殖腔特有物种的整体全球分布有贡献。

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