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首页> 外文期刊>The Journal of Experimental Biology >Symbiont photosynthesis in giant clams is promoted by V-type H+-ATPase from host cells
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Symbiont photosynthesis in giant clams is promoted by V-type H+-ATPase from host cells

机译:来自宿主细胞的V型H + -ATP酶促进巨蛤的Symbiont光合作用

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Giant clams (genus Tridacna) are the largest living bivalves and, like reef-building corals, host symbiotic dinoflagellate algae (Symbiodinium) that significantly contribute to their energy budget. In turn, Symbiodinium rely on the host to supply inorganic carbon (C-i) for photosynthesis. In corals, host 'proton pump' vacuolar-type H+-ATPase (VHA) is part of a carbon-concentrating mechanism (CCM) that promotes Symbiodinium photosynthesis. Here, we report that VHA in the small giant clam (Tridacna maxima) similarly promotes Symbiodinium photosynthesis. VHA was abundantly expressed in the apical membrane of epithelial cells of T maxima's siphonal mantle tubule system, which harbors Symbiodinium. Furthermore, application of the highly specific pharmacological VHA inhibitors bafilomycin A1 and concanamycin A significantly reduced photosynthetic O-2 production by similar to 40%. Together with our observation that exposure to light increased holobiont aerobic metabolism similar to 5-fold, and earlier estimates that translocated fixed carbon exceeds metabolic demand, we conclude that VHA activity in the siphonal mantle confers strong energetic benefits to the host clam through increased supply of C-i to algal symbionts and subsequent photosynthetic activity. The convergent role of VHA in promoting Symbiodinium photosynthesis in the giant clam siphonal mantle tubule system and coral symbiosome suggests that VHA-driven CCM is a common exaptation in marine photosymbioses that deserves further investigation in other taxa.
机译:巨大的蛤蜊(Tridacna属)是最大的生物纤维,如Reef-Building Corals,宿主共生的Dinoflagellate藻类(Symbiodinium),显着促进其能源预算。反过来,Symbiodinium依赖于宿主供应用于光合作用的无机碳(C-1)。在珊瑚中,宿主'质子泵'真空型H + -ATP酶(VHA)是促进与辛鎓光合作用的碳浓缩机构(CCM)的一部分。在这里,我们报告的是,小巨蛤(Tridacna Maxima)中的VHA类似地促进了Symbiodinium光合作用。 VHA在T Maxima的腹股沟罩小管系统的上皮细胞的顶部膜中大量表达,其Harbors Symbiodinium。此外,在高度特异的药理学VHA抑制剂BafiLomycin A1和Cancanamycin的应用显着降低了光合o-2产生的产生,相似于40%。与我们的观察结果相同,相似地暴露于光的血红素的血红蛋白节奏增加,并且早期估计转向固定碳超过代谢需求,我们得出结论,互联网地幔中的VHA活性通过增加的供应来对主体蛤赋予主持人强劲的益处CI至藻类共生和随后的光合活动。 VHA在促进巨蛤腹部裂缝管系统和珊瑚酶组中促进Symbiodinium光合作用的趋同作用表明,VHA驱动的CCM是海洋照片中的常见展开,值得在其他分类群中进一步调查。

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