Institute of Chemistry, NAWI Graz, University of Graz, Universitaetsplatz 1, 8010 Graz, Austria.
Metallomics. 2018 Jan 24;10(1):145-153. doi: 10.1039/c7mt00249a.
The influence of arsenate and phosphate levels in water on the formation of arsenic-containing lipids (arsenolipids) and water-soluble arsenicals by a unicellular marine alga was investigated by exposing Dunaliella tertiolecta to five regimes of arsenic and phosphate, and determining the biosynthesized organoarsenicals with HPLC/mass spectrometry. Under all conditions, the major arsenolipid produced by D. tertiolecta was the novel phytyl 5-dimethylarsinoyl-2-O-methyl-ribofuranoside (AsSugPhytol546) representing ca. 35-65% of total arsenolipids. The new compound contains a phytol aglycone and a methoxy group replacing a sugar hydroxyl - two structural features not previously observed for arsenolipids. Minor arsenolipids were several previously reported arsenosugar phospholipids (AsSugPLs, in particular AsSugPL958 and the previously unknown AsSugPL978), the relative quantities of which increased with increasing phosphate exposure, and an arsenic-containing hydrocarbon (AsHC360), which remained unaffected by the different treatments. The relative amount of total arsenolipids produced by D. tertiolecta remained remarkably constant (ca. 45% of total As) and independent of the culture conditions. In contrast, with rising As-concentrations we observed an increase of hydrophilic arsenicals, which were dominated by arsenate and arsenosugars. The results highlight a possible major difference in arsenic biochemistry between macroalgae and unicellular algae with potential implications for how various algae handle their natural arsenic exposure in the world's oceans.
研究了水中砷酸盐和磷酸盐水平对单细胞海洋藻类形成含砷脂质(砷脂)和水溶性砷化合物的影响,方法是使杜氏盐藻暴露于 5 种砷和磷酸盐条件下,并通过 HPLC/MS 确定生物合成的有机砷化合物。在所有条件下,杜氏盐藻产生的主要砷脂是新型植基 5-二甲基砷酰基-2-O-甲基-呋喃核糖苷(AsSugPhytol546),约占总砷脂的 35-65%。新化合物含有植醇糖苷元和取代一个糖羟基的甲氧基——这两个结构特征以前在砷脂中没有观察到过。少量的砷脂是几种以前报道过的砷糖磷脂(AsSugPLs,特别是 AsSugPL958 和以前未知的 AsSugPL978),其相对含量随着磷酸盐暴露的增加而增加,还有一种含砷的碳氢化合物(AsHC360),它不受不同处理的影响。杜氏盐藻产生的总砷脂的相对含量保持相当稳定(约占总 As 的 45%),与培养条件无关。相比之下,随着砷浓度的升高,我们观察到亲水性砷化合物的增加,其中以砷酸盐和砷糖为主。这些结果突出了大型藻类和单细胞藻类之间砷生物化学的一个可能的主要差异,这可能对各种藻类在世界海洋中如何处理其天然砷暴露有影响。