Department of Biotechnology and Biomedicine, Technical University of Denmark, Anker Engelundsvej 301, DK-2800 Kgs, Lyngby, Denmark.
Environ Microbiol Rep. 2018 Jun;10(3):383-393. doi: 10.1111/1758-2229.12649. Epub 2018 Apr 23.
The Roseobacter-group species Phaeobacter inhibens produces the antibacterial tropodithietic acid (TDA) and the algaecidal roseobacticides with both compound classes sharing part of the same biosynthetic pathway. The purpose of this study was to investigate the production of roseobacticides more broadly in TDA-producing roseobacters and to compare the effect of producers and non-producers on microalgae. Of 33 roseobacters analyzed, roseobacticide production was a unique feature of TDA-producing P. inhibens, P. gallaeciensis and P. piscinae strains. One TDA-producing Phaeobacter, 27-4, did not produce roseobacticides, possibly due to a transposable element. TDA-producing Ruegeria and Pseudovibrio did not produce roseobacticides. Addition of roseobacticide-containing bacterial extracts affected the growth of the microalgae Rhodomonas salina, Thalassiosira pseudonana and Emiliania huxleyi, while growth of Tetraselmis suecica was unaffected. During co-cultivation, growth of E. huxleyi was initially stimulated by the roseobacticide producer DSM 17395, while the subsequent decline in algal cell numbers during senescence was enhanced. Strain 27-4 that does not produce roseobacticides had no effect on algal growth. Both bacterial strains, DSM 17395 and 27-4, grew during co-cultivation presumably utilizing algal exudates. Furthermore, TDA-producing roseobacters have potential as probiotics in marine larviculture and it is promising that the live feed Tetraselmis was unaffected by roseobacticides-containing extracts.
玫瑰杆菌群物种荚膜红细菌产生具有抗菌作用的苔抑素(TDA)和杀藻的玫瑰杆菌素,这两类化合物具有部分相同的生物合成途径。本研究的目的是更广泛地研究产苔抑素的玫瑰杆菌中玫瑰杆菌素的产生情况,并比较生产者和非生产者对微藻的影响。在分析的 33 株玫瑰杆菌中,只有产苔抑素的荚膜红细菌、P. gallaeciensis 和 P. piscinae 菌株产生玫瑰杆菌素。一株产苔抑素的 Phaeobacter 27-4 不产生玫瑰杆菌素,可能是由于转座元件的存在。产苔抑素的 Ruegeria 和 Pseudovibrio 不产生玫瑰杆菌素。添加含有玫瑰杆菌素的细菌提取物会影响微藻盐生杜氏藻、拟甲藻和海链藻的生长,而对新月菱形藻的生长没有影响。在共培养过程中,杀藻剂生产者 DSM 17395 最初刺激海链藻的生长,而随后衰老过程中藻类细胞数量的下降则加剧。不产生玫瑰杆菌素的 27-4 菌株对藻类生长没有影响。既不产生玫瑰杆菌素也不产生苔抑素的 27-4 菌株在共培养过程中生长,推测是利用了藻类分泌物。此外,产苔抑素的玫瑰杆菌具有在海洋幼体养殖中作为益生菌的潜力,并且令人鼓舞的是,含有玫瑰杆菌素的提取物对活饲料新月菱形藻没有影响。