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首页> 外文期刊>The Journal of Experimental Biology >Influence of environmental conditions on early development of the hydrothermal vent polychaete Alvinella pompejana
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Influence of environmental conditions on early development of the hydrothermal vent polychaete Alvinella pompejana

机译:环境条件对热液喷口多毛AlAlvinella pompejana早期发育的影响

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Dispersal and colonisation processes at deep-sea vents are still not fully understood, essentially because early life stages of vent species remain unknown. The polychaete worm Alvinella pompejana forms colonies on chimney walls at East Pacific Rise vent sites where the temperature can frequently exceed 20 degrees C. In vitro studies in pressure vessels showed that the early embryos tolerate temperatures in a lower range (10-14 degrees C), suggesting that they would have to escape the colony to develop. Pressure vessels offer the advantage that each parameter can be independently controlled, but they do not simulate the more complex and dynamic conditions naturally encountered at vent sites. Accordingly, in addition to incubations in pressure vessels, we incubated embryos directly at a vent site, in different habitats along a gradient of hydrothermal influence. Embryos incubated on an adult A. pompejana colony where temperature and H,S concentrations were relatively high showed a very low survival rate and did not develop, whereas embryos incubated in a Riftia pachyptila clump environment with a lower hydrothermal signature, or at the base of the chimney where the influence of the hydrothermal activity was very weak, survived well and developed. Although the average temperature recorded in the A. pompejana colony was within the range tolerated by embryos (13 degrees C), frequent peaks above 20 degrees C were recorded. Estimated sulphide concentration at this site reached 200 mu mol l(-1). Punctuated exposure to both high temperature and elevated sulphide levels probably explain the low survival of embryos within the A. pompejana colony. The in situ experiments further support the idea that embryos require conditions with moderate hydrothermal influence not generally found within an adult colony. However, as much more benign physicochemical conditions can be found within a few tens of cm of adult colonies, embryos do not necessarily have to leave their vent of origin to develop. Further analyses are needed to pinpoint the specific factors that affect the survival and development of embryos at vents.
机译:在深海喷口处的扩散和定殖过程仍未得到充分了解,这主要是因为喷口物质的早期生命阶段仍然未知。多cha蠕虫Alvinella pompejana在东太平洋上升通风口的烟囱壁上形成菌落,温度经常会超过20摄氏度。在压力容器中进行的体外研究表明,早期胚胎可以承受较低的温度(10-14摄氏度)。 ,表明他们必须逃脱殖民地才能发展。压力容器的优点是每个参数都可以独立控制,但是它们不能模拟排气口自然遇到的更复杂和动态的条件。因此,除了在压力容器中孵育外,我们还沿着热液影响梯度在不同栖息地的通风孔处直接孵育了胚胎。在温度和H,S浓度相对较高的成虫A. pompejana菌落上培养的胚显示出非常低的存活率并且没有发育,而在裂谷草的丛生环境中培养的胚具有较低的热液特征,或者在热液活动的影响很弱的烟囱,存活得很好并且发达。尽管记录在庞贝加农杆菌菌落中的平均温度在胚胎所能承受的范围内(13摄氏度),但仍记录到20摄氏度以上的频繁峰。估计该位置的硫化物浓度达到200μmol l(-1)。高温和高硫化物水平下的标点暴露可能解释了庞贝加农杆菌菌落内胚胎的低存活率。原位实验进一步支持了这样的观点,即胚胎需要具有中等热液作用的条件,而这种条件通常在成年菌落中没有发现。但是,由于在成年菌落几十厘米内可以发现更多良性的理化条件,因此胚胎不一定必须离开起源口才能发育。需要进一步分析以查明影响通风孔处胚胎存活和发育的特定因素。

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