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The Vitamin B1 and B12 Required by the Marine Dinoflagellate Lingulodinium polyedrum Can be Provided by its Associated Bacterial Community in Culture

机译:海洋双鞭毛灵芝多皮所需要的维生素B1和B12可由其相关的细菌群落在文化中提供

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摘要

In this study we established the B1 and B12 vitamin requirement of the dinoflagellate Lingulodinium polyedrum and the vitamin supply by its associated bacterial community. In previous field studies the B1 and B12 demand of this species was suggested but not experimentally verified. When the axenic vitamin un-supplemented culture (B-ns) of L. polyedrum was inoculated with a coastal bacterial community, the dinoflagellate’s vitamin growth limitation was overcome, reaching the same growth rates as the culture growing in vitamin B1B7B12-supplemented (B-s) medium. Measured B12 concentrations in the B-s and B-ns cultures were both higher than typical coastal concentrations and B12 in the B-s culture was higher than in the B-ns culture. In both B-s and B-ns cultures, the probability of dinoflagellate cells having bacteria attached to the cell surface was similar and in both cultures an average of six bacteria were attached to each dinoflagellate cell. In the B-ns culture the free bacterial community showed significantly higher cell abundance suggesting that unattached bacteria supplied the vitamins. The fluorescence in situ hybridization (FISH) protocol allowed the quantification and identification of three bacterial groups in the same samples of the free and attached epibiotic bacteria for both treatments. The relative composition of these groups was not significantly different and was dominated by Alphaproteobacteria (>89%). To complement the FISH counts, 16S rDNA sequencing targeting the V3–V4 regions was performed using Illumina-MiSeq technology. For both vitamin amendments, the dominant group found was Alphaproteobacteria similar to FISH, but the percentage of Alphaproteobacteria varied between 50 and 95%. Alphaproteobacteria were mainly represented by Marivita sp., a member of the Roseobacter clade, followed by the Gammaproteobacterium Marinobacter flavimaris. Our results show that L. polyedrum is a B1 and B12 auxotroph, and acquire both vitamins from the associated bacterial community in sufficient quantity to sustain the maximum growth rate.
机译:在这项研究中,我们确定了鞭毛多鞭毛藻的B1和B12维生素需求量及其相关细菌群落的维生素供应量。在以前的田间研究中,有人提出了该物种对B1和B12的需求,但没有经过实验验证。当用沿海细菌群落接种多毛乳杆菌的未补充维生素的培养物(B-ns)时,克服了鞭毛藻的维生素生长限制,达到了与补充维生素B1B7B12的培养物相同的生长速率。介质。 B-s和B-ns培养物中测得的B12浓度均高于典型沿海浓度,B-s培养物中的B12高于B-ns培养物中的B12。在B-s和B-ns两种培养物中,附有细菌附着在细胞表面的鞭毛细胞的可能性是相似的,并且在两种培养物中,平均有6种细菌附着在每个鞭毛细胞上。在B-ns培养中,游离细菌群落显示出明显更高的细胞丰度,表明未附着的细菌可以提供维生素。荧光原位杂交(FISH)方案允许对两种处理的游离和附着表观细菌的相同样品中的三个细菌组进行定量和鉴定。这些组的相对组成没有显着差异,并且以α-变形杆菌为主导(> 89%)。为了补充FISH计数,使用Illumina-MiSeq技术进行了针对V3-V4区域的16S rDNA测序。对于这两种维生素改良剂,发现的主要人群是与FISH相似的变形杆菌,但变形杆菌的百分比在50%至95%之间变化。变形杆菌分支的成员Marivita sp。主要代表变形杆菌,其次是黄变形杆菌Marinobacter flavimaris。我们的研究结果表明多角乳杆菌是一种B1和B12营养缺陷型,可以从相关细菌群落中获得足够量的两种​​维生素,以维持最大的生长速率。

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