首页> 外文期刊>Frontiers in Marine Science >PhnW-PhnX Pathway in Dinoflagellates Not Functional to Utilize Extracellular Phosphonates
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PhnW-PhnX Pathway in Dinoflagellates Not Functional to Utilize Extracellular Phosphonates

机译:鞭毛藻中的PhnW-PhnX途径无法利用细胞外膦酸酯

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Phosphorus (P) is an essential nutrient for marine phytoplankton but its preferred form, dissolved inorganic phosphorus (DIP), is often limited in the euphotic zone of the ocean. Many phytoplankton species have developed the ability to utilize dissolved organic phosphorus (DOP) such as phosphoesters or phosphonates. Phosphonates are characterized by the stable C-P bond and its utilization is known to rely on either a C-P lyase pathway or C–P hydrolase pathways in bacteria. In this study by transcriptomic analysis we detected the genes encoding the C-P hydrolase pathway enzymes PhnW and PhnX in Karlodinium veneficum and other dinoflagellates. However, we found that these dinoflagellates are unable to utilize the presumably dominant type of phosphonate in the ocean, 2-aminoethylphosphonic acid (2-AEP), under the antibiotic-treated condition. In accordance, our RT-qPCR and proteomic analyses of K. veneficum grown on 2-AEP showed no up-regulation of PhnW and PhnX at both transcriptional and translational levels. Nevertheless, the genes related to phosphonate biosynthesis and utilization were widely found in dinoflagellates. Taken together our results suggest that the PhnW-PhnX pathway in dinoflagellates may serve for intracellular phosphonate metabolism instead of scavenging environmental phosphonates.
机译:磷(P)是海洋浮游植物的必需营养素,但其优选形式,即溶解性无机磷(DIP),通常局限于海洋的富营养区。许多浮游植物已经开发出利用溶解的有机磷(DOP)的能力,例如磷酸酯或膦酸酯。膦酸酯的特征在于稳定的C-P键,已知其利用依赖于细菌中的C-P裂解酶途径或C-P水解酶途径。在这项研究中,通过转录组学分析,我们检测到了在香叶Karlodinium v​​eneficum和其他鞭毛鞭毛藻中编码C-P水解酶途径酶PhnW和PhnX的基因。但是,我们发现在使用抗生素处理的条件下,这些鞭毛鞭毛藻无法利用海洋中可能主导的膦酸酯类型,即2-氨基乙基膦酸(2-AEP)。因此,我们的RT-qPCR和在2-AEP上生长的文氏假丝酵母的蛋白质组学分析表明,在转录和翻译水平上,PnW和PhnX均没有上调。然而,在鞭毛鞭毛虫中广泛发现了与膦酸酯生物合成和利用有关的基因。综上所述,我们的结果表明,甲鞭毛虫中的PhnW-PhnX途径可用于细胞内膦酸酯代谢,而不是清除环境膦酸酯。

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