Cawthron Institute, Nelson 7042, New Zealand.
Toxins (Basel). 2012 Oct;4(10):900-12. doi: 10.3390/toxins4100900. Epub 2012 Oct 19.
Benthic Phormidium mats can contain high concentrations of the neurotoxins anatoxin-a and homoanatoxin-a. However, little is known about the co-occurrence of anatoxin-producing and non-anatoxin-producing strains within mats. There is also no data on variation in anatoxin content among toxic genotypes isolated from the same mat. In this study, 30 Phormidium strains were isolated from 1 cm(2) sections of Phormidium-dominated mats collected from three different sites. Strains were grown to stationary phase and their anatoxin-a, homoanatoxin-a, dihydroanatoxin-a and dihydrohomoanatoxin-a concentrations determined using liquid chromatography-mass spectrometry. Each strain was characterized using morphological and molecular (16S rRNA gene sequences) techniques. Eighteen strains produced anatoxin-a, dihydroanatoxin-a or homoanatoxin-a. Strains isolated from each mat either all produced toxins, or were a mixture of anatoxin and non-anatoxin-producing genotypes. Based on morphology these genotypes could not be separated. The 16S rRNA gene sequence comparisons showed a difference of at least 17 nucleotides among anatoxin and non-anatoxin-producing strains and these formed two separate sub-clades during phylogenetic analysis. The total anatoxin concentration among toxic strains varied from 2.21 to 211.88 mg kg(-1) (freeze dried weight), representing a 100 fold variation in toxin content. These data indicate that both the relative abundance of anatoxin and non-anatoxin-producing genotypes, and variations in anatoxin producing capability, can influence the overall toxin concentration of benthic Phormidium mat samples.
底栖束丝藻席中可能含有高浓度的神经毒素anatoxin-a 和 homoanatoxin-a。然而,对于束丝藻席中是否存在产生anatoxin 和不产生 anatoxin 的菌株共存的情况,我们知之甚少。此外,对于从同一束丝藻席中分离出的有毒基因型的 anatoxin 含量变化也没有数据。在本研究中,从三个不同地点采集的由束丝藻主导的束丝藻席中,从 1 cm(2)的小块中分离出了 30 株束丝藻。将菌株培养到静止期,然后使用液相色谱-质谱法测定其 anatoxin-a、 homoanatoxin-a、dihydroanatoxin-a 和 dihydrohomoanatoxin-a 的浓度。使用形态学和分子学(16S rRNA 基因序列)技术对每个菌株进行了特征描述。有 18 株产生了 anatoxin-a、dihydroanatoxin-a 或 homoanatoxin-a。从每个席中分离出的菌株要么全部产生毒素,要么是 anatoxin 和非 anatoxin 产生基因型的混合物。根据形态学,这些基因型无法区分。16S rRNA 基因序列比较表明,在产生 anatoxin 和不产生 anatoxin 的菌株之间至少存在 17 个核苷酸的差异,这些差异在系统发育分析中形成了两个单独的亚分支。有毒菌株的总 anatoxin 浓度在 2.21 到 211.88 mg kg(-1)(冻干重量)之间变化,毒素含量变化了 100 倍。这些数据表明,anatoxin 和非 anatoxin 产生基因型的相对丰度以及产生 anatoxin 的能力的变化都会影响底栖束丝藻席样品的总毒素浓度。