Gabriel_2006_Mol.Plant.Microbe.Interact_19_69

Reference

Title : Identification of open reading frames unique to a select agent: Ralstonia solanacearum race 3 biovar 2 - Gabriel_2006_Mol.Plant.Microbe.Interact_19_69
Author(s) : Gabriel DW , Allen C , Schell M , Denny TP , Greenberg JT , Duan YP , Flores-Cruz Z , Huang Q , Clifford JM , Presting G , Gonzalez ET , Reddy J , Elphinstone J , Swanson J , Yao J , Mulholland V , Liu L , Farmerie W , Patnaikuni M , Balogh B , Norman D , Alvarez A , Castillo JA , Jones J , Saddler G , Walunas T , Zhukov A , Mikhailova N
Ref : Mol Plant Microbe Interact , 19 :69 , 2006
Abstract :

An 8x draft genome was obtained and annotated for Ralstonia solanacearum race 3 biovar 2 (R3B2) strain UW551, a United States Department of Agriculture Select Agent isolated from geranium. The draft UW551 genome consisted of 80,169 reads resulting in 582 contigs containing 5,925,491 base pairs, with an average 64.5% GC content. Annotation revealed a predicted 4,454 protein coding open reading frames (ORFs), 43 tRNAs, and 5 rRNAs; 2,793 (or 62%) of the ORFs had a functional assignment. The UW551 genome was compared with the published genome of R. solanacearum race 1 biovar 3 tropical tomato strain GMI1000. The two phylogenetically distinct strains were at least 71% syntenic in gene organization. Most genes encoding known pathogenicity determinants, including predicted type III secreted effectors, appeared to be common to both strains. A total of 402 unique UW551 ORFs were identified, none of which had a best hit or >45% amino acid sequence identity with any R. solanacearum predicted protein; 16 had strong (E < 10(-13)) best hits to ORFs found in other bacterial plant pathogens. Many of the 402 unique genes were clustered, including 5 found in the hrp region and 38 contiguous, potential prophage genes. Conservation of some UW551 unique genes among R3B2 strains was examined by polymerase chain reaction among a group of 58 strains from different races and biovars, resulting in the identification of genes that may be potentially useful for diagnostic detection and identification of R3B2 strains. One 22-kb region that appears to be present in GMI1000 as a result of horizontal gene transfer is absent from UW551 and encodes enzymes that likely are essential for utilization of the three sugar alcohols that distinguish biovars 3 and 4 from biovars 1 and 2.

PubMedSearch : Gabriel_2006_Mol.Plant.Microbe.Interact_19_69
PubMedID: 16404955
Gene_locus related to this paper: ralsl-a3rp80 , ralso-a3rpz2 , ralso-a3rqm7 , ralso-a3rwb6 , ralso-a3s0y6 , ralso-b5sl67 , ralso-b5slf2 , ralso-DEHH , ralso-METX , ralso-PCAD , ralso-PCAD2 , ralso-PHAZ , ralso-PHBC , ralso-RSC0268 , ralso-RSC0439 , ralso-RSC0563 , ralso-RSC1770 , ralso-RSC1772 , ralso-RSC1887 , ralso-RSC2328 , ralso-RSC3346 , ralso-RSP0196 , ralso-RSP1108 , ralso-RSP1248 , ralso-RSP1484 , ralso-RSP1521 , ralsl-y0kx85

Related information

Gene_locus ralsl-a3rp80    ralso-a3rpz2    ralso-a3rqm7    ralso-a3rwb6    ralso-a3s0y6    ralso-b5sl67    ralso-b5slf2    ralso-DEHH    ralso-METX    ralso-PCAD    ralso-PCAD2    ralso-PHAZ    ralso-PHBC    ralso-RSC0268    ralso-RSC0439    ralso-RSC0563    ralso-RSC1770    ralso-RSC1772    ralso-RSC1887    ralso-RSC2328    ralso-RSC3346    ralso-RSP0196    ralso-RSP1108    ralso-RSP1248    ralso-RSP1484    ralso-RSP1521    ralsl-y0kx85

Citations formats

Gabriel DW, Allen C, Schell M, Denny TP, Greenberg JT, Duan YP, Flores-Cruz Z, Huang Q, Clifford JM, Presting G, Gonzalez ET, Reddy J, Elphinstone J, Swanson J, Yao J, Mulholland V, Liu L, Farmerie W, Patnaikuni M, Balogh B, Norman D, Alvarez A, Castillo JA, Jones J, Saddler G, Walunas T, Zhukov A, Mikhailova N (2006)
Identification of open reading frames unique to a select agent: Ralstonia solanacearum race 3 biovar 2
Mol Plant Microbe Interact 19 :69

Gabriel DW, Allen C, Schell M, Denny TP, Greenberg JT, Duan YP, Flores-Cruz Z, Huang Q, Clifford JM, Presting G, Gonzalez ET, Reddy J, Elphinstone J, Swanson J, Yao J, Mulholland V, Liu L, Farmerie W, Patnaikuni M, Balogh B, Norman D, Alvarez A, Castillo JA, Jones J, Saddler G, Walunas T, Zhukov A, Mikhailova N (2006)
Mol Plant Microbe Interact 19 :69