Common trends in mutualism revealed by model associations between invertebrates and bacteria.

Common trends in mutualism revealed by model associations between invertebrates and bacteria.
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DOI:
10.1111/j.1574-6976.2009.00193.x
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发表时间:
2010-01
影响因子:
11.3
通讯作者:
Goodrich-Blair H
Goodrich-Blair H
中科院分区:
生物学1区
文献类型:
--
作者:
Chaston J;Goodrich-Blair H

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微生物和动物之间的互利相互作用是生物系统的保守和普遍存在的特征。在许多情况下,包括人类在内的动物都依赖于它们的微生物伙伴来获得营养、防御或发育。为了维持这些重要的关系,动物进化出了确保特定微生物共生体在世代之间忠实传播的过程。通过对实验上易驾驭的无脊椎动物的研究,阐明了传播和共生体特异性的机制,这些动物与微生物有着不同的和高度进化的联系。在这里,我们回顾了几个无脊椎动物模型系统,有助于我们目前的理解共生体的传输,识别和特异性。虽然传输和共生体选择的细节各不相同协会,不同的互惠协会的比较揭示了一些共同的主题,包括限制共生体的多样性在传输和聚糖凝集素的相互作用在合作伙伴的选择和招聘。
Mutually beneficial interactions between microbes and animals are a conserved and ubiquitous feature of biotic systems. In many instances animals, including humans, are dependent on their microbial associates for nutrition, defense, or development. To maintain these vital relationships animals have evolved processes that ensure faithful transmission of specific microbial symbionts between generations. Elucidating mechanisms of transmission and symbiont specificity has been aided by the study of experimentally tractable invertebrate animals with diverse and highly evolved associations with microbes. Here we review several invertebrate model systems that are contributing to our current understanding of symbiont transmission, recognition, and specificity. Although the details of transmission and symbiont selection vary among associations, comparisons of diverse mutualistic associations are revealing a number of common themes, including restriction of symbiont diversity during transmission and glycan-lectin interactions during partner selection and recruitment.
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