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首页> 外文期刊>Royal Society Open Science >Expression of a symbiosis-specific gene in Symbiodinium type A1 associated with coral, nudibranch and giant clam larvae
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Expression of a symbiosis-specific gene in Symbiodinium type A1 associated with coral, nudibranch and giant clam larvae

机译:与珊瑚,Nudibranch和巨蛤幼虫相关的Symbiium型A1中共生特异性基因的表达

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Symbiodinium are responsible for the majority of primary production in coral reefs and found in a mutualistic symbiosis with multiple animal phyla. However, little is known about the molecular signals involved in the establishment of this symbiosis and whether it initiates during host larval development. To address this question, we monitored the expression of a putative symbiosis-specific gene (H+-ATPase) in Symbiodinium A1 ex hospite and in association with larvae of a scleractinian coral ( Mussismilia hispida ), a nudibranch ( Berghia stephanieae ) and a giant clam ( Tridacna crocea ). We acquired broodstock for each host, induced spawning and cultured the larvae. Symbiodinium cells were offered and larval samples taken for each host during the first 72?h after symbiont addition. In addition, control samples including free-living Symbiodinium and broodstock tissue containing symbionts for each host were collected. RNA extraction and RT-PCR were performed and amplified products cloned and sequenced. Our results show that H+-ATPase was expressed in Symbiodinium associated with coral and giant clam larvae, but not with nudibranch larvae, which digested the symbionts. Broodstock tissue for coral and giant clam also expressed H+-ATPase, but not the nudibranch tissue sample. Our results of the expression of H+-ATPase as a marker gene suggest that symbiosis between Symbiodinium and M. hispida and T. crocea is established during host larval development. Conversely, in the case of B. stephanieae larvae, evidence does not support a mutualistic relationship. Our study supports the utilization of H+-ATPase expression as a marker for assessing Symbiodinium– invertebrate relationships with applications for the differentiation of symbiotic and non-symbiotic associations. At the same time, insights from a single marker gene approach are limited and future studies should direct the identification of additional symbiosis-specific genes, ideally from both symbiont and host.
机译:Symbiodinium负责珊瑚礁的大多数初级产量,并在具有多种动物植物中的互化共生中发现。然而,关于在宿主幼虫发育期间涉及的分子信号众所周知的是涉及的分子信号。为了解决这个问题,我们监测了Symbiodinium A1 ex HESCETE中调用的共生特异性基因(H + -ATP酶的表达,并与Scleractinian珊瑚(Mussisticilia Hispida)的幼虫联合,一个裸鳃克兰(Berghia Stephanieae)和巨型蛤蜊(Tridacna Crocea)。我们获得了每件宿主的黄蜂,诱导产卵并培养幼虫。在Symbiont加入后,为每个宿主提供酶联细胞和幼虫样品。此外,收集了包括自由生物酶与每宿主共聚物的自由活酶与酵母组织的对照样品。进行RNA提取和RT-PCR,并克隆和测序的扩增产物。我们的结果表明,H + / sup> -ATPase在与珊瑚和巨蛤幼虫相关的Symbiodinium中表达,但不是用Nudibranch幼虫,它消化了Symbionts。用于珊瑚和巨蛤的木胸部组织还表达了H + -ATP酶,但不是Nudibranch组织样品。我们作为标记基因的H + -ATPase表达的结果表明,在宿主幼虫发育期间建立了Symbiodinium和M. Hispida和T. Hispida和T.番红豆之间的共生。相反,在B. Stephanieae幼虫的情况下,证据不支持相互主义的关系。我们的研究支持利用H + -ATPase表达作为用于评估与共生和非共生关联的分化的伴有的Symbiodinium-无脊椎动物关系的标记。与此同时,单一标记基因方法的见解是有限的,未来的研究应直接鉴定额外的共生特异性基因,理想地来自Symbiont和宿主。

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