首页> 外文期刊>Canadian journal of microbiology >Ultrastructure of interaction in alginate beads between the microalgaChlorella vulgaris with its natural associative bacterium Phyllobacteriummyrsinacearum and with the plant growth-promoting bacterium Azospirillumbrasilense
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Ultrastructure of interaction in alginate beads between the microalgaChlorella vulgaris with its natural associative bacterium Phyllobacteriummyrsinacearum and with the plant growth-promoting bacterium Azospirillumbrasilense

机译:微藻小球藻与其天然缔合细菌绿毛球菌与促进植物生长的细菌巴西螺旋藻之间的藻酸盐珠相互作用的超微结构

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摘要

Chlorella vulgaris, a microalga often used in wastewater treatment, was coimmobilized and coincubated either with the plant growth-promoting bacterium Azospirillum brasilense, or with its natural associative bacterium Phyllobacterium myrsinacearum, in alginate beads designed for advanced wastewater treatment. Interactions between the microalga and each of the bacterial species were followed using transmission electron microscopy for 10 days. Initially, most of the small cavities within the beads were colonized by microcolonies of only one microorganism, regardless of the bacterial species cocultured with the microalga. Subsequently, the bacterial and microalgal microcolonies merged to form large, mixed colonies within the cavities. At this stage, the effect of bacterial association with the microalga differed depending on the bacterium present. Though the microalga entered a senescence phase in the presence of P. myrsinacearum, it remained in a growth phase in the presence of A. brasilense. This study suggests that there are commensal interactions between the microalga and the two plant associative bacteria, and that with time the bacterial species determined whether the outcome for the microalga is senescence or continuous multiplication.
机译:小球藻(Chlorella vulgaris)是一种常用于废水处理的微藻,可与植物生长促进细菌巴西细螺旋藻(Azospirillum brasilense)或与其天然缔合细菌短螺旋体(Phyllobacterium myrsinacearum)共固定并共同培养,用于藻类微珠,可用于高级废水处理。使用透射电子显微镜观察微藻与每种细菌种类之间的相互作用10天。最初,无论与微藻共培养的细菌种类如何,珠子中的大多数小腔都只被一种微生物的微菌落定殖。随后,细菌和微藻微菌落合并在一起,在腔内形成大的混合菌落。在此阶段,细菌与微藻缔合的效果取决于存在的细菌。尽管微藻在鼠疫假单胞菌的存在下进入了衰老阶段,但在巴西拟杆菌的存在下仍处于生长期。这项研究表明,微藻与两种植物结合细菌之间存在共生相互作用,随着时间的流逝,细菌种类决定了微藻的结果是衰老还是连续繁殖。

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