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夜间酸化:共生中的一种协调信号。

Nocturnal Acidification: A Coordinating Cue in the - Symbiosis.

作者信息

Pipes Brian L, Nishiguchi Michele K

机构信息

Department of Molecular and Cell Biology, University of California, Merced, CA 95343, USA.

出版信息

Int J Mol Sci. 2022 Mar 29;23(7):3743. doi: 10.3390/ijms23073743.

Abstract

The - symbiosis has become a powerful model for the study of specificity, initiation, and maintenance between beneficial bacteria and their eukaryotic partner. In this invertebrate model system, the bacterial symbionts are acquired every generation from the surrounding seawater by newly hatched squid. These symbionts colonize a specialized internal structure called the light organ, which they inhabit for the remainder of the host's lifetime. The population grows and ebbs following a diel cycle, with high cell densities at night producing bioluminescence that helps the host avoid predation during its nocturnal activities. Rhythmic timing of the growth of the symbionts and their production of bioluminescence only at night is critical for maintaining the symbiosis. symbionts detect their population densities through a behavior termed quorum-sensing, where they secrete and detect concentrations of autoinducer molecules at high cell density when nocturnal production of bioluminescence begins. In this review, we discuss events that lead up to the nocturnal acidification of the light organ and the cues used for pre-adaptive behaviors that both host and symbiont have evolved. This host-bacterium cross talk is used to coordinate networks of regulatory signals (such as quorum-sensing and bioluminescence) that eventually provide a unique yet stable environment for to thrive and be maintained throughout its life history as a successful partner in this dynamic symbiosis.

摘要

这种共生关系已成为研究有益细菌与其真核生物伙伴之间特异性、起始和维持的有力模型。在这个无脊椎动物模型系统中,新孵化的鱿鱼每一代都从周围海水中获取细菌共生体。这些共生体定殖在一个称为发光器官的特殊内部结构中,并在宿主的余生中一直栖息于此。共生体种群数量随昼夜循环而增减,夜间细胞密度高时会产生生物发光,这有助于宿主在夜间活动时避免被捕食。共生体生长的节律性以及它们仅在夜间产生生物发光对于维持共生关系至关重要。共生体通过一种称为群体感应的行为来检测其种群密度,当夜间开始产生生物发光时,它们在高细胞密度下分泌并检测自诱导分子的浓度。在这篇综述中,我们讨论了导致发光器官夜间酸化的事件以及宿主和共生体都已进化出的用于预适应行为的线索。这种宿主 - 细菌的相互作用用于协调调节信号网络(如群体感应和生物发光),最终为共生体提供一个独特而稳定的环境,使其在作为这种动态共生关系中成功伙伴的整个生命历程中得以茁壮成长并维持下去。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ce3/8999011/a30048ead16e/ijms-23-03743-g001.jpg

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