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The planktonic protist interactome: where do we stand after a century of research?

机译:浮游生物原生生物:经过一个世纪的研究我们站在哪里?

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摘要

Overview of the interactions included in PIDA. Nomenclature and taxonomic order of Eukaryota is based on Adl et al. 2019 [ ]. Nomenclature and taxonomic order of Bacteria is based on Schultz et al. 2017 [ ]. The nodes are grouped (outer circle) according to eukaryotic supergroups (or ), Bacteria and Archaea. Network based on the 2422 entries in PIDA. Nodes represent eukaryotic and prokaryotic taxa and are colored accordingly. Node size indicates the number of edges/links that are connected to that node. Each node/taxon is assigned a number, which corresponds with the numbers for taxa in . Edges represent interactions between two taxa and are colored according to ecological interaction type: (orange), (green), and (purple). The network is undirected, meaning that a node can contain both parasites/symbionts/prey and hosts/predators. To avoid cluttering of the figure, ‘Self-loops’, which represent cases where both interacting organisms belong to the same taxon (e.g., a dinoflagellate eating another dinoflagellate) are not shown as edges/links in this figure, but are considered in the size of nodes. The outermost circle groups taxa in the different eukaryotic ‘supergroups’ or the prokaryotic domains Bacteria and Archaea. Ancryomonadidae is abbreviated An. Telonema is not placed into any of the supergroups, but classified as (abbreviated . . in the figure). In , , and the following abbreviations for supergroups are used: Ar Archaea, Ba Bacteria, Rh Rhizaria, Al Alveolata, St Stramenopiles, Ha Haptista, Cy Cryptista, Ap Archaeplastida, Ex Excavata, Ob Obazoa, Am Amoebozoa, Cu CRuMS, An Ancryomonadidae, Is . Predator–prey interactions in PIDA. The node numbers correspond to taxa node numbers in . Abbreviations for supergroups are described above. Background and nodes are colored according to functional role in the interaction: Prey are colored light orange (left part of figure), while predators are depicted in dark orange (right part of figure). The size of each node represents the number of edges connected to that node. Symbiont–host interactions included in PIDA. The node numbers correspond to node numbers in . Abbreviations for supergroups are described above. Symbionts are to the left, colored light green, and their hosts are to the right in dark green. The size of each node represents the number of edges connected to that node. Parasite–host interactions included in PIDA. The node numbers correspond to node numbers in . Abbreviations for supergroups are described above. Parasite taxa are depicted in light purple (left), hosts in dark purple (right). (The unresolved interactions are shown in Supplementary Fig.  )
机译:PIDA中包含的交互概述。真核生物的命名和分类顺序是基于Adl等人的。 2019 []。细菌的命名和分类顺序基于Schultz等。 2017 []。根据真核超群(或),细菌和古细菌对结点进行分组(外圈)。基于PIDA中的2422个条目的网络。节点代表真核生物和原核生物分类,并相应地着色。节点大小指示连接到该节点的边/链接数。每个节点/分类单元都分配有一个编号,该编号与中的分类单元编号相对应。边缘代表两个类群之间的相互作用,并根据生态相互作用类型((橙色),(绿色)和(紫色))进行着色。网络是无向的,这意味着节点可以同时包含寄生虫/共生动物/猎物和宿主/掠食者。为避免附图混乱,“自环”表示两个相互作用的生物都属于同一分类群(例如,食用鞭毛鞭毛的鞭毛藻)在该图中未显示为边缘/链接,但在节点的大小。最外面的圆圈将分类单元归类到不同的真核“超群”或原核域细菌和古细菌中。 cr科(Ancryomonadidae)缩写为An。端粒瘤未置于任何超群中,而是分类为(在图中缩写为...)。在,和中,使用以下超群缩写:Ar Archaea,Ba Bacteria,Rh Rhizaria,Al Alololata,St Stramenopiles,Ha Haptista,Cy Cryptista,Ap Archaeplastida,Ex Excavata,Ob Obazoa,Am Amoebozoa,Cu CRuMS,An Ancryomonadidae ,是。 PIDA中的捕食者与猎物相互作用。节点编号对应于中的分类单元节点编号。上面描述了超组的缩写。背景和节点的颜色根据交互作用而定:猎物的颜色为浅橙色(图的左侧),捕食者的颜色为深橙色(图的右侧)。每个节点的大小表示连接到该节点的边数。 PIDA中包括共生体与宿主的相互作用。节点编号对应于中的节点编号。上面描述了超组的缩写。共生体位于左侧,为浅绿色,其宿主位于右侧,为深绿色。每个节点的大小表示连接到该节点的边数。 PIDA中包含了寄生虫与宿主的相互作用。节点编号对应于中的节点编号。上面描述了超组的缩写。寄生生物群以浅紫色(左)描绘,宿主以深紫色(右)描绘。 (未解决的相互作用如补充图所示。)

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