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预测海洋硅藻异形胞共生体中的基质交换。

Predicting substrate exchange in marine diatom-heterocystous cyanobacteria symbioses.

机构信息

Department of Ecology, Environment and Plant Sciences, Stockholm University, Stockholm, 106 91, Sweden.

Instituto de Bioquímica Vegetal y Fotosíntesis, CSIC and Universidad de Sevilla, Américo Vespucio 49, Seville, E-41092, Spain.

出版信息

Environ Microbiol. 2020 Jun;22(6):2027-2052. doi: 10.1111/1462-2920.15013. Epub 2020 Apr 28.

Abstract

In the open ocean, some phytoplankton establish symbiosis with cyanobacteria. Some partnerships involve diatoms as hosts and heterocystous cyanobacteria as symbionts. Heterocysts are specialized cells for nitrogen fixation, and a function of the symbiotic cyanobacteria is to provide the host with nitrogen. However, both partners are photosynthetic and capable of carbon fixation, and the possible metabolites exchanged and mechanisms of transfer are poorly understood. The symbiont cellular location varies from internal to partial to fully external, and this is reflected in the symbiont genome size and content. In order to identify the membrane transporters potentially involved in metabolite exchange, we compare the draft genomes of three differently located symbionts with known transporters mainly from model free-living heterocystous cyanobacteria. The types and numbers of transporters are directly related to the symbiont cellular location: restricted in the endosymbionts and wider in the external symbiont. Three proposed models of metabolite exchange are suggested which take into account the type of transporters in the symbionts and the influence of their cellular location on the available nutrient pools. These models provide a basis for several hypotheses that given the importance of these symbioses in global N and C budgets, warrant future testing.

摘要

在开阔的海洋中,一些浮游植物与蓝细菌建立共生关系。一些伙伴关系涉及到硅藻作为宿主和异形胞蓝细菌作为共生体。异形胞是专门用于固氮的细胞,共生蓝细菌的一个功能是为宿主提供氮。然而,两个伙伴都是光合的,能够进行碳固定,并且可能交换的代谢物和转移机制还不太清楚。共生体的细胞位置从内部到部分到完全外部变化,这反映在共生体基因组的大小和内容上。为了鉴定可能参与代谢物交换的膜转运蛋白,我们将三种不同位置的共生体的草图基因组与主要来自自由生活异形胞蓝细菌的已知转运蛋白进行了比较。转运蛋白的类型和数量与共生体的细胞位置直接相关:在内共生体中受到限制,在外共生体中更广泛。提出了三种代谢物交换模型,这些模型考虑了共生体中的转运蛋白类型以及它们的细胞位置对可用养分库的影响。这些模型为一些假说提供了基础,鉴于这些共生关系在全球氮和碳预算中的重要性,这些假说值得未来进一步验证。

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