Hierarchically embedded interaction networks represent a missing link in the study of behavioral and community ecology

Hierarchically embedded interaction networks represent a missing link in the study of behavioral and community ecology
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分层嵌入的交互网络代表了行为和社区生态学研究中缺失的一环

DOI:
10.1093/beheco/arz168
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发表时间:
2020
期刊:
影响因子:
2.4
通讯作者:
Farine
Farine
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
Montiglio;Gotanda;Kratochwil;Laskowski;Farine

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由于基因和表型嵌入在个体中,而个体又嵌入在群体中,因此生物组织的一个层次内的相互作用与其他层次上的相互作用者有着内在的联系。在这里,我们扩展了网络范式,考虑到节点可以嵌入其他节点,节点之间的连接(边)在一个层次的组织形成“桥梁”的节点之间的连接嵌入其中。这种层次嵌入式网络突出了生物系统的两个核心特性:1)在多个组织层次上发生的过程在任何给定的组织层次上形成生物单元之间的连接; 2)在给定的组织层次上发生的生态效应可以向上或向下传播到其他层次。解释性地考虑进化和生态网络的嵌入结构可以捕获隐藏的反馈,并对关键生物现象产生新的见解,最终促进对进化理论中相互作用的更广泛理解。
Because genes and phenotypes are embedded within individuals, and individuals within populations, interactions within one level of biological organization are inherently linked to interactors at others. Here, we expand the network paradigm to consider that nodes can be embedded within other nodes, and connections (edges) between nodes at one level of organization form “bridges” for connections between nodes embedded within them. Such hierarchically embedded networks highlight two central properties of biological systems: 1) processes occurring across multiple levels of organization shape connections among biological units at any given level of organization and 2) ecological effects occurring at a given level of organization can propagate up or down to additional levels. Explicitly considering the embedded structure of evolutionary and ecological networks can capture otherwise hidden feedbacks and generate new insights into key biological phenomena, ultimately promoting a broader understanding of interactions in evolutionary theory.
DOI: --
发表时间: 2010
期刊: Network Science
影响因子: 1.7
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