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Construction of an artificial symbiotic community using a Chlorella–symbiont association as a model

机译:以小球藻-共生菌为模型构建人工共生群落

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摘要

Chlorella sorokiniana IAM C-212 produces a polysaccharide gel, termed a sheath, under photoautotrophic conditions. The C. sorokiniana sheath is a suitable habitat for several symbiotic microorganisms because it ensures close proximity between the C. sorokiniana and symbionts. In this study, we established a method for increasing the volume of the sheath produced by C. sorokiniana, and proposed a method for constructing artificial communities of Chlorella and symbiotic microorganisms. The C. sorokiniana sheath was increased by addition of calcium chloride solution. The sheath resulted in coflocculation of C. sorokiniana and the associated symbiotic bacteria, thus strengthening the bacterial–Chlorella symbiotic association. An application of this technique was demonstrated by constructing a complex of C. sorokiniana and a propionate-degrading bacterium (PDS1). Although propionate inhibited the growth of axenic C. sorokiniana, the C. sorokiniana–PDS1 complex showed good growth in a medium containing a high concentration of propionate.
机译:Sorokiniana小球藻IAM C-212在光合自养条件下产生一种被称为鞘的多糖凝胶。 C. sorokiniana鞘是几种共生微生物的合适栖息地,因为它确保了C. sorokiniana和共生体之间紧密接近。在这项研究中,我们建立了一种增加索氏梭菌生产的鞘的体积的方法,并提出了一种构建小球藻和共生微生物人工群落的方法。通过添加氯化钙溶液增加了梭菌衣壳。鞘导致C. sorokiniana和相关的共生细菌共絮凝,从而加强了细菌-小球藻的共生关系。通过构建C. sorokiniana和降解丙酸的细菌(PDS1)的复合体,证明了该技术的应用。尽管丙酸酯抑制了轴生梭菌的生长,但梭菌-PDS1复合物在含有高浓度丙酸酯的培养基中显示出良好的生长。

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