Tobias Nicholas J, Mishra Bagdevi, Gupta Deepak K, Sharma Rahul, Thines Marco, Stinear Timothy P, Bode Helge B
Fachbereich Biowissenschaften, Merck Stiftungsprofessur für Molekulare Biotechnologie, Goethe Universität Frankfurt, Frankfurt am Main, Germany.
Biodiversity and Climate Research Centre (BiK-F), Senckenberg Gesellschaft für Naturforschung, Senckenberganlage 25, 60325, Frankfurt am Main, Germany.
BMC Genomics. 2016 Aug 3;17:537. doi: 10.1186/s12864-016-2862-4.
Bacteria within the genus Photorhabdus maintain mutualistic symbioses with nematodes in complicated lifecycles that also involves insect pathogenic phases. Intriguingly, these bacteria are rich in biosynthetic gene clusters that produce compounds with diverse biological activities. As a basis to better understand the life cycles of Photorhabdus we sequenced the genomes of two recently discovered representative species and performed detailed genomic comparisons with five publically available genomes.
Here we report the genomic details of two new reference Photorhabdus species. By then conducting genomic comparisons across the genus, we show that there are several highly conserved biosynthetic gene clusters. These clusters produce a range of bioactive small molecules that support the pathogenic phase of the integral relationship that Photorhabdus maintain with nematodes.
Photorhabdus contain several genetic loci that allow them to become specialist insect pathogens by efficiently evading insect immune responses and killing the insect host.
光杆状菌属内的细菌在复杂的生命周期中与线虫保持互利共生关系,该生命周期还涉及昆虫致病阶段。有趣的是,这些细菌富含生物合成基因簇,可产生具有多种生物活性的化合物。为了更好地了解光杆状菌的生命周期,我们对两个最近发现的代表性物种的基因组进行了测序,并与五个公开可用的基因组进行了详细的基因组比较。
在此我们报告了两个新的光杆状菌参考物种的基因组细节。通过对该属进行基因组比较,我们发现有几个高度保守的生物合成基因簇。这些基因簇产生一系列生物活性小分子,支持光杆状菌与线虫维持的整体关系中的致病阶段。
光杆状菌含有几个基因位点,使它们能够通过有效逃避昆虫免疫反应并杀死昆虫宿主而成为专门的昆虫病原体。