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Impediment to Symbiosis Establishment between Giant Clams and Symbiodinium Algae Due to Sterilization of Seawater

机译:海水灭菌对大蛤and与共生藻之间共生关系的阻碍

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摘要

To survive the juvenile stage, giant clam juveniles need to establish a symbiotic relationship with the microalgae Symbiodinium occurring in the environment. The percentage of giant clam juveniles succeeding in symbiosis establishment (“symbiosis rate”) is often low, which is problematic for seed producers. We investigated how and why symbiosis rates vary, depending on whether giant clam seeds are continuously reared in UV treated or non treated seawater. Results repeatedly demonstrated that symbiosis rates were lower for UV treated seawater than for non treated seawater. Symbiosis rates were also lower for autoclaved seawater and 0.2-µm filtered seawater than for non treated seawater. The decreased symbiosis rates in various sterilized seawater suggest the possibility that some factors helping symbiosis establishment in natural seawater are weakened owing to sterilization. The possible factors include vitality of giant clam seeds, since additional experiments revealed that survival rates of seeds reared alone without Symbiodinium were lower in sterilized seawater than in non treated seawater. In conclusion, UV treatment of seawater was found to lead to decreased symbiosis rates, which is due possibly to some adverse effects common to the various sterilization techniques and relates to the vitality of the giant clam seeds.
机译:为了在幼鱼阶段生存,大蛤仔幼鱼需要与环境中存在的微藻共生菌建立共生关系。成功建立共生关系的大蛤仔少年的百分比(“共生率”)通常很低,这对种子生产者来说是个问题。我们调查了共生率如何变化以及为什么变化,这取决于蛤UV种子是在紫外线处理过的海水中还是未经处理的海水中不断饲养的。结果反复表明,经紫外线处理的海水的共生率低于未经处理的海水。高压灭菌的海水和0.2-µm过滤海水的共生率也低于未处理的海水。各种灭菌海水中共生率的降低表明,灭菌可能会削弱某些有助于天然海水中共生建立的因素。可能的因素包括大蛤seeds种子的活力,因为额外的实验表明,在未经灭菌的海水中,未使用共生素的情况下单独饲养的种子的存活率要低于未经处理的海水。总之,发现紫外线对海水的处理导致共生率降低,这可能是由于各种灭菌技术共同存在的一些不利影响,并且与蛤c种子的活力有关。

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