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团聚黏菌(Dictyostelium discoideum)可以拯救与其存在种间竞争关系的田氏菌属(Paraburkholderia)细菌,但是无法拯救农业杆菌属(P. agricolaris)细菌。

The social amoeba Dictyostelium discoideum rescues Paraburkholderia hayleyella, but not P. agricolaris, from interspecific competition.

机构信息

Department of Biology, One Brookings Drive, Washington University in St. Louis, St. Louis, MO 63130, USA.

Department of Biology, New Mexico Highlands University, 1005 Diamond Ave, Las Vegas, NM 87701, USA.

出版信息

FEMS Microbiol Ecol. 2023 May 31;99(6). doi: 10.1093/femsec/fiad055.

Abstract

Bacterial endosymbionts can provide benefits for their eukaryotic hosts, but it is often unclear if endosymbionts benefit from these relationships. The social amoeba Dictyostelium discoideum associates with three species of Paraburkholderia endosymbionts, including P. agricolaris and P. hayleyella. These endosymbionts can be costly to the host but are beneficial in certain contexts because they allow D. discoideum to carry prey bacteria through the dispersal stage. In experiments where no other species are present, P. hayleyella benefits from D. discoideum while P. agricolaris does not. However, the presence of other species may influence this symbiosis. We tested if P. agricolaris and P. hayleyella benefit from D. discoideum in the context of resource competition with Klebsiella pneumoniae, the typical laboratory prey of D. discoideum. Without D. discoideum, K. pneumoniae depressed the growth of both Paraburkholderia symbionts, consistent with competition. P. hayleyella was more harmed by interspecific competition than P. agricolaris. We found that P. hayleyella was rescued from competition by D. discoideum, while P. agricolaris was not. This may be because P. hayleyella is more specialized as an endosymbiont; it has a highly reduced genome compared to P. agricolaris and may have lost genes relevant for resource competition outside of its host.

摘要

细菌内共生体可以为真核宿主提供益处,但内共生体是否从中受益通常并不清楚。粘菌食菌变形虫与三种拟杆菌内共生体有关,包括 P. agricolaris 和 P. hayleyella。这些内共生体对宿主可能是有代价的,但在某些情况下是有益的,因为它们允许食菌变形虫在分散阶段携带猎物细菌。在没有其他物种存在的实验中,P. hayleyella 从食菌变形虫中受益,而 P. agricolaris 则没有。然而,其他物种的存在可能会影响这种共生关系。我们测试了在与食菌变形虫的典型实验室猎物肺炎克雷伯菌竞争资源的情况下,P. agricolaris 和 P. hayleyella 是否从食菌变形虫中受益。没有食菌变形虫,肺炎克雷伯菌会抑制两种拟杆菌共生体的生长,这与竞争一致。P. hayleyella 比 P. agricolaris 更受到种间竞争的伤害。我们发现,食菌变形虫拯救了 P. hayleyella 免受竞争的影响,而 P. agricolaris 则没有。这可能是因为 P. hayleyella 作为内共生体更为专业化;与 P. agricolaris 相比,它的基因组高度简化,并且可能已经失去了与其宿主外资源竞争相关的基因。

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