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Isolation of axenic cyanobacterium and the promoting effect of associated bacterium on axenic cyanobacterium

机译:轴烯型蓝杆菌的分离及相关细菌在轴烯段的促进作用

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Harmful cyanobacterial blooms have attracted wide attention all over the world as they cause water quality deterioration and ecosystem health issues. Microcystis aeruginosa associated with a large number of bacteria is one of the most common and widespread bloom-forming cyanobacteria that secret toxins. These associated bacteria are considered to benefit from organic substrates released by the cyanobacterium. In order to avoid the influence of associated heterotrophic bacteria on the target cyanobacteria for physiological and molecular studies, it is urgent to obtain an axenic M. aeruginosa culture and further investigate the specific interaction between the heterotroph and the cyanobacterium. A traditional and reliable method based on solid-liquid alternate cultivation was carried out to purify the xenic cyanobacterium M. aeruginosa FACHB-905. On the basis of 16S rDNA gene sequences, two associated bacteria named strain B905–1 and strain B905–2, were identified as Pannonibacter sp. and Chryseobacterium sp. with a 99 and 97% similarity value, respectively. The axenic M. aeruginosa FACHB-905A (Microcystis 905A) was not able to form colonies on BG11 agar medium without the addition of strain B905–1, while it grew well in BG11 liquid medium. Although the presence of B905–1 was not indispensable for the growth of Microcystis 905A, B905–1 had a positive effect on promoting the growth of Microcystis 905A. The associated bacteria were eliminated by solid-liquid alternate cultivation method and the axenic Microcystis 905A was successfully purified. The associated bacterium B905–1 has the potentiality to promote the growth of Microcystis 905A. Moreover, the purification technique for cyanobacteria described in this study is potentially applicable to a wider range of unicellular cyanobacteria.
机译:有害的蓝藻绽放引起了世界各地的广泛关注,因为它们导致水质恶化和生态系统健康问题。与大量细菌相关的微囊型铜绿假单胞菌是秘密毒素的最常见和广泛的盛开的蓝藻之一。这些相关的细菌被认为是受益于由蓝杆菌释放的有机底物中受益。为了避免相关的异养细菌对生理分子研究靶蓝细胞的影响,迫在心地获得氧静脉铜绿假单胞菌培养物,进一步研究异抗和蓝杆菌之间的特异性相互作用。进行了一种基于固液交替培养的传统可靠方法,纯化Xenic Cyanobacterium M.铜绿假单胞菌FACHB-905。在16S rDNA基因序列的基础上,将两个相关的细菌命名为菌株B905-1和菌株B905-2,被鉴定为PannOnibacter SP。和chryseobacterium sp。分别具有99和97%的相似值。轴静脉M.铜绿假单胞菌FACHB-905A(微阴茎905A)不能在BG11琼脂培养基上形成菌落,而不会加入菌株B905-1,同时在BG11液体培养基中得很好。尽管B905-1的存在对于微阴压905a的生长并不必不可少,但B905-1对促进微囊杆菌905a的生长具有积极的影响。通过固液交替培养方法消除相关细菌,成功纯化轴静脉微囊纤维905A。相关的细菌B905-1具有促进微囊杆菌905A的生长的潜力。此外,本研究中描述的植物细胞的纯化技术可能适用于更广泛的单细胞结构。

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