Lopez J V
Division of Biomedical Marine Research, Harbor Branch Oceanographic Institution, 5600 US 1 North, Ft Pierce, FL 34946, USA.
Mol Genet Genomics. 2003 Dec;270(5):420-31. doi: 10.1007/s00438-003-0937-9. Epub 2003 Nov 1.
A putative instance of horizontal gene transfer (HGT) involving adjacent, discrete beta-ketoacyl synthase (KS), acyl carrier protein (ACP) and nonribosomal peptide synthase (NRPS) domains of the epothilone Type I polyketide biosynthetic gene cluster from the myxobacterium Sorangium cellulosom was identified using molecular phylogenetics and sequence analyses. The specific KS domain of the module EPO B fails to cluster phylogenetically with other epothilone KS sequences present at this locus, in contrast to what is typically observed in many other Type I polyketide synthase (PKS) biosynthetic loci. Furthermore, the GC content of the epoB KS, epoA ACP and NRPS domains differs significantly from the base composition of other epothilone domain sequences. In addition, the putatively transferred epothilone loci are located near previously identified transposon-like sequences. Lastly, comparison with other KS loci revealed another possible case of horizontal transfer of secondary metabolite genes in the genus Pseudomonas. This study emphasizes the use of several lines of concordant evidence (phylogenetics, base composition, transposon sequences) to infer the evolutionary history of particular gene and enzyme sequences, and the results support the idea that genes coding for adaptive traits, e.g. defensive natural products, may be prone to transposition between divergent prokaryotic taxa and genomes.
利用分子系统发育学和序列分析,在粘细菌纤维堆囊菌的埃坡霉素I型聚酮生物合成基因簇中,鉴定出一个推测的水平基因转移(HGT)实例,该实例涉及相邻、离散的β-酮脂酰合成酶(KS)、酰基载体蛋白(ACP)和非核糖体肽合成酶(NRPS)结构域。与许多其他I型聚酮合酶(PKS)生物合成位点通常观察到的情况相反,模块EPO B的特定KS结构域在系统发育上未能与该位点存在的其他埃坡霉素KS序列聚类。此外,埃坡霉素B的KS、埃坡霉素A的ACP和NRPS结构域的GC含量与其他埃坡霉素结构域序列的碱基组成有显著差异。此外,推测转移的埃坡霉素位点位于先前鉴定的转座子样序列附近。最后,与其他KS位点的比较揭示了假单胞菌属中次生代谢物基因水平转移的另一个可能案例。这项研究强调使用多条一致的证据(系统发育学、碱基组成、转座子序列)来推断特定基因和酶序列的进化历史,结果支持这样一种观点,即编码适应性特征(如防御性天然产物)的基因可能易于在不同的原核生物分类群和基因组之间发生转座。