Calderón Claudia E, Ramos Cayo, de Vicente Antonio, Cazorla Francisco M
Mol Plant Microbe Interact. 2015 Mar;28(3):249-60. doi: 10.1094/MPMI-10-14-0326-FI.
Pseudomonas chlororaphis PCL1606 is a rhizobacterium that has biocontrol activity against many soilborne phytopathogenic fungi. The whole genome sequence of this strain was obtained using the Illumina Hiseq 2000 sequencing platform and was assembled using SOAP denovo software. The resulting 6.66-Mb complete sequence of the PCL1606 genome was further analyzed. A comparative genomic analysis using 10 plant-associated strains within the fluorescent Pseudomonas group, including the complete genome of P. chlororaphis PCL1606, revealed a diverse spectrum of traits involved in multitrophic interactions with plants and microbes as well as biological control. Phylogenetic analysis of these strains using eight housekeeping genes clearly placed strain PCL1606 into the P. chlororaphis group. The genome sequence of P. chlororaphis PCL1606 revealed the presence of sequences that were homologous to biosynthetic genes for the antifungal compounds 2-hexyl, 5-propyl resorcinol (HPR), hydrogen cyanide, and pyrrolnitrin; this is the first report of pyrrolnitrin encoding genes in this P. chlororaphis strain. Single-, double-, and triple-insertional mutants in the biosynthetic genes of each antifungal compound were used to test their roles in the production of these antifungal compounds and in antagonism and biocontrol of two fungal pathogens. The results confirmed the function of HPR in the antagonistic phenotype and in the biocontrol activity of P. chlororaphis PCL1606.
绿针假单胞菌PCL1606是一种对多种土传植物病原真菌具有生防活性的根际细菌。该菌株的全基因组序列通过Illumina Hiseq 2000测序平台获得,并使用SOAP denovo软件进行组装。对得到的6.66 Mb绿针假单胞菌PCL1606基因组完整序列进行了进一步分析。利用荧光假单胞菌组内的10个植物相关菌株(包括绿针假单胞菌PCL1606的完整基因组)进行比较基因组分析,揭示了其在与植物和微生物的多营养相互作用以及生物防治中涉及的多种性状。使用8个管家基因对这些菌株进行系统发育分析,明确将菌株PCL1606归入绿针假单胞菌群。绿针假单胞菌PCL1606的基因组序列显示存在与抗真菌化合物2-己基-5-丙基间苯二酚(HPR)、氰化氢和吡咯菌素的生物合成基因同源的序列;这是该绿针假单胞菌菌株中吡咯菌素编码基因的首次报道。对每种抗真菌化合物生物合成基因的单插入、双插入和三插入突变体进行了测试,以检验它们在这些抗真菌化合物产生以及对两种真菌病原体的拮抗和生物防治中的作用。结果证实了HPR在绿针假单胞菌PCL1606的拮抗表型和生物防治活性中的功能。