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The Effect of pH and Light on the Colony Formation and Buoyancy of Microcystis aeruginosa UTEX-2061

机译:pH与光对微囊杆菌菌落形成和浮力的影响UTEX-2061

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Extracellular polysaccharides (EPS) in the outer layer of Microcystis cells can influence colony formation and buoyancy ability. The carboxyl groups in EPS can combine with divalent metals to induce colony formation. One of the main components in EPS is called tightly cell-bound EPS (TB-EPS), which contains more carboxyl groups and potential to combine with more metal ions. In this study, we isolated the EPS and TB-EPS from Microcystis bloom sample, and, using both EPS samples, the effect of EPS and TB-EPS on the colony formation and buoyancy of M. aeruginosa UTEX-2061 was investigated. Then, we discussed the impact of the environmental factors such as light and solution pH on M. aeruginosa UTEX-2061 colony formation and buoyancy. With the addition of Ca2+, Mg2+, EPS, and TB-EPS, M. aeruginosa UTEX-2061 could form a colony, in which the size was more than 200 mu m, showing the same strong buoyancy as wild Microcystis. The addition of TB-EPS could lead to M. aeruginosa UTEX-2061 to form the largest colony and exhibit strong buoyancy under light conditions. Under dark conditions, the addition of EPS or TB-EPS failed to lead M. aeruginosa to form a colony and obtain buoyancy, indicating that light affects colony formation and buoyancy. The solution pH played a role in controlling colony formation and buoyancy. Neutral conditions (pH 7) were conducive for TB-EPS to induce colony formation, while under alkaline conditions (pH 10), EPS had an excellent effect on the induction of M. aeruginosa UTEX-2061 colony formation.
机译:微囊囊细胞外层的细胞外多糖(EPS)可以影响菌落形成和浮力能力。 EPS中的羧基可以与二价金属组合以诱导菌落形成。 EPS中的一个主要成分称为紧密细胞结合的EPS(TB-EP),其含有更多的羧基和与更多金属离子组合的电位。在这项研究中,我们研究了从微囊杆菌样品中分离EPS和TB-EP,并且使用EPS样品,研究了EPS样品,EPS和TB-EP对M.铜绿假单胞菌UTEX-2061的菌落形成和浮力的影响。然后,我们讨论了在M. Aeruginosa Utex-2061菌落形成和浮力的光和溶液pH等环境因素的影响。随着Ca2 +,Mg2 +,EPS和TB-EP,M. Aerginosa Utex-2061可以形成殖民地,其中尺寸大于200μm,显示与野生微囊囊相同的强烈浮力。添加TB-EP可以导致M. Aeruginosa Utex-2061形成最大的菌落,并在轻微条件下表现出强烈的浮力。在暗条件下,添加EPS或TB-EP未能导致M. Aerginosa形成殖民地并获得浮力,表明光影响菌落形成和浮力。溶液pH在控制殖民地形成和浮力方面发挥作用。中性条件(pH7)有利于TB-EP,诱导菌落形成,而在碱性条件下(pH10),EPS对M.铜绿假单胞菌UTEX-2061菌落形成的诱导效果很好。

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