Application of hsp60 amplicon sequencing to characterize microbial communities associated with juvenile and adult Euprymna scolopes squid.

IF 5.1 Q1 ECOLOGY
ISME communications Pub Date : 2025-06-13 eCollection Date: 2025-01-01 DOI:10.1093/ismeco/ycaf085
Steph Smith, Clotilde Bongrand, Susannah Lawhorn, Edward G Ruby, Alecia N Septer
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Abstract

The symbiotic relationship between Vibrio (Aliivibrio) fischeri and the Hawaiian bobtail squid, Euprymna scolopes, serves as a key model for understanding host-microbe interactions. Traditional culture-based methods have primarily isolated V. fischeri from the light organs of wild-caught squid, yet culture-independent analyses of this symbiotic microbiome remain limited. This study aims to enhance species-level resolution of bacterial communities associated with E. scolopes using hsp60 amplicon sequencing. We validated our hsp60 sequencing approach using pure cultures and mixed bacterial populations, demonstrating its ability to distinguish V. fischeri from other closely related vibrios and the possibility of using this approach for strain-level diversity with further optimization. This approach was applied to whole-animal juvenile squid exposed to either seawater or a clonal V. fischeri inoculum, as well as ventate samples and light organ cores from wild-caught adults. V. fischeri accounted for the majority of the identifiable taxa for whole-animal juvenile samples and comprised 94%-99% of amplicon sequence variants (ASVs) for adult light organ core samples, confirming that V. fischeri is the dominant, if not sole, symbiont typically associated with E. scolopes light organs. In one ventate sample, V. fischeri comprised 82% of reads, indicating the potential for non-invasive community assessments using this approach. Analysis of non-V. fischeri ASVs revealed that Bradyrhizobium spp. and other members of the Rhodobacterales order are conserved across juvenile and adult samples. These findings provide insight into the presence of additional microbial associations with the squid host tissue outside of the light organ that have not been previously detected through traditional culture methods.

应用hsp60扩增子测序分析与乌贼幼鱼和成鱼相关的微生物群落。
费氏弧菌(Aliivibrio)与夏威夷短尾乌贼(Euprymna scolopes)之间的共生关系是理解宿主-微生物相互作用的关键模型。传统的基于培养的方法主要是从野生捕获的鱿鱼的轻器官中分离出V. fischeri,然而对这种共生微生物群的培养独立分析仍然有限。本研究旨在利用hsp60扩增子测序提高与大肠杆菌相关的细菌群落的物种水平分辨率。我们使用纯培养物和混合细菌群体验证了我们的hsp60测序方法,证明了它能够区分费氏弧菌和其他密切相关的弧菌,并且可以将这种方法用于菌株水平的多样性,并进一步优化。该方法应用于暴露于海水或无性系费氏弧菌接种物的全动物幼年鱿鱼,以及野生捕获的成年鱿鱼的通风样本和轻器官核心。在整个动物幼鱼样本中,可识别的类群中,fischeri占大多数,在成年光器官核心样本中,该类群占94%-99%的扩增子序列变异(asv),这证实了fischeri即使不是唯一的,也是与E. scopes光器官典型相关的优势共生体。在一个排气样本中,费氏弧菌占82%的reads,表明使用该方法进行非侵入性社区评估的潜力。分析非v。fischeri asv显示,慢生根瘤菌和其他红杆菌目的成员在幼虫和成虫样本中都是保守的。这些发现为鱿鱼宿主光器官外的其他微生物关联的存在提供了见解,这些关联以前没有通过传统培养方法检测到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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