Christiansen Guntram, Molitor Carole, Philmus Benjamin, Kurmayer Rainer
Austrian Academy of Sciences, Institute for Limnology, Mondseestrasse 9, Mondsee, Austria.
Mol Biol Evol. 2008 Aug;25(8):1695-704. doi: 10.1093/molbev/msn120. Epub 2008 May 22.
Blooms that are formed by cyanobacteria consist of toxic and nontoxic strains. The mechanisms that result in the occurrence of nontoxic strains are enigmatic. All the nontoxic strains of the filamentous cyanobacterium Planktothrix that were isolated from 9 European countries were found to have lost 90% of a large microcystin synthetase (mcy) gene cluster that encoded the synthesis of the toxic peptide microcystin (MC). Those strains still contain the flanking regions of the mcy gene cluster along with remnants of the transposable elements that are found in between. The majority of the strains still contain a gene coding for a distinct thioesterase type II (mcyT), which is putatively involved in MC synthesis. The insertional inactivation of mcyT in an MC-producing strain resulted in the reduction of MC synthesis by 94 +/- 2% (1 standard deviation). Nontoxic strains that occur in shallow lakes throughout Europe form a monophyletic lineage. A second lineage consists of strains that contain the mcy gene cluster but differ in their photosynthetic pigment composition, which is due to the occurrence of strains that contain phycocyanin or large amounts of phycoerythrin in addition to phycocyanin. Strains containing phycoerythrin typically occur in deep-stratified lakes. The rare occurrence of gene cluster deletion, paired with the evolutionary diversification of the lineages of strains that lost or still contain the mcy gene cluster, needs to be invoked in order to explain the absence or dominance of toxic cyanobacteria in various habitats.
由蓝藻形成的水华包含有毒和无毒菌株。导致无毒菌株出现的机制尚不清楚。从9个欧洲国家分离出的丝状蓝藻浮游颤藻的所有无毒菌株,都被发现丢失了一个大型微囊藻毒素合成酶(mcy)基因簇的90%,该基因簇编码有毒肽微囊藻毒素(MC)的合成。这些菌株仍然含有mcy基因簇的侧翼区域以及其间发现的转座元件残余。大多数菌株仍然含有一个编码独特II型硫酯酶(mcyT)的基因,该酶可能参与MC的合成。在一个产生MC的菌株中mcyT的插入失活导致MC合成减少了94±2%(1个标准差)。在欧洲各地浅水湖泊中出现的无毒菌株形成了一个单系谱系。第二个谱系由含有mcy基因簇但光合色素组成不同的菌株组成,这是由于出现了除藻蓝蛋白外还含有藻红蛋白或大量藻红蛋白的菌株。含有藻红蛋白的菌株通常出现在深度分层的湖泊中。为了解释不同生境中有毒蓝藻的缺失或优势,需要考虑基因簇缺失的罕见性,以及丢失或仍然含有mcy基因簇的菌株谱系的进化多样化。