首页> 美国卫生研究院文献>Springer Open Choice >Comparison of proton-specific ATPase activities in plume and root tissues of two co-occurring hydrocarbon seep tubeworm species Lamellibrachia luymesi and Seepiophila jonesi
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Comparison of proton-specific ATPase activities in plume and root tissues of two co-occurring hydrocarbon seep tubeworm species Lamellibrachia luymesi and Seepiophila jonesi

机译:两种同时存在的烃类渗透性结核虫种Lamellibrachia luymesi和Seepiophila jonesi羽状和根组织中质子特异性ATPase活性的比较

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摘要

Lamellibrachia luymesi and Seepiophila jonesi are co-occurring species of vestimentiferan tubeworms found at hydrocarbon seepage sites on the upper Louisiana slope of the Gulf of Mexico. Like all vestimentiferans, they rely on internal sulfide-oxidizing symbiotic bacteria for nutrition. These symbionts produce hydrogen ions as a byproduct of sulfide oxidation, which the host tubeworm needs to eliminate to prevent acidosis. The hydrothermal vent tubeworm Riftia pachyptila uses a high activity of P- and V-type H+-ATPases located in its plume epithelium to excrete protons. Unlike R. pachyptila, the seep species grow a posterior root, which they can use in addition to their plumes as a nutrient exchange surface. In this study we measured the ATPase activities of plume and root tissues collected from L. luymesi and S. jonesi, and used a combination of inhibitors to determine the relative activities of P- and V-type H+-ATPases. We found that the total H+-ATPase activity of their plumes was approximately 14 μmol h−1 g−1 wet weight, and that of their roots was between 5 and 7 μmol h−1 g−1 wet weight. These activities were more than ten times lower than those measured in R. pachyptila. We suggest that seep tubeworms might use passive channels to eliminate protons across their roots, in addition to ATP-dependant proton pumps located in their plumes and roots. In addition, we found strong differences between the types of ATPase activities in the plumes of L. luymesi and S. jonesi. While the H+-ATPase activity of L. luymesi plumes is dominated by P-type ATPases, S. jonesi has an unusually high activity of V-type H+-ATPases. We suggest that S. jonesi relies on its high V-type H+-ATPase activity to drive carbon dioxide uptake across its plume surface. L. luymesi, on the other hand, might rely partially on bicarbonate uptake across its root.
机译:Lamellibrachia luymesi和Seepiophila jonesi是在墨西哥湾上路易斯安那州斜坡上的碳氢化合物渗漏点发现的前叶tube虫的同时存在种。像所有前卫植物一样,它们依靠内部硫化物氧化共生细菌进行营养。这些共生体产生氢离子作为硫化物氧化的副产物,宿主结核虫需要消除这些离子以防止酸中毒。热液喷管虫Riftia pachyptila利用位于其羽状上皮中的P型和V型H + -ATPases的高活性来分泌质子。不像R. pachyptila,渗水物种的后根生长,除了羽状叶外,它们还可以用作营养交换表面。在这项研究中,我们测量了从L. luymesi和S. jonesi收集的羽和根组织的ATPase活性,并使用抑制剂的组合来确定P型和V型H + 的相对活性-ATP酶。我们发现它们的羽流的总H + -ATPase活性约为14μmolh -1 g g -1 湿重,而它们的根在5和7μmolh -1 g -1 湿重之间。这些活性比R. pachyptila中测量的活性低十倍以上。我们建议,除了位于其羽状和根部的依赖ATP的质子泵外,渗透性块虫还可以使用被动通道消除其根部的质子。此外,我们发现L. luymesi和S. jonesi羽状叶中的ATPase活性类型之间存在很大差异。尽管L. luymesi烟羽的H + -ATPase活性受P型ATPase的支配,但鸡血链球菌却具有异常高的V型H + -ATPase的活性。 。我们认为,琼脂链霉菌依赖于其高V型H + -ATPase活性来驱动二氧化碳在其羽状表面上的吸收。另一方面,L。luymesi可能部分依赖其根部的碳酸氢盐吸收。

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