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. 2013 May 16;1(3):e00235-13. doi: 10.1128/genomeA.00235-13

Complete Genome Sequence of Xanthomonas citri subsp. citri Strain Aw12879, a Restricted-Host-Range Citrus Canker-Causing Bacterium

Neha Jalan a, Dibyendu Kumar b, Fahong Yu c, Jeffrey B Jones d, James H Graham e, Nian Wang a,
PMCID: PMC3656205  PMID: 23682143

Abstract

Xanthomonas citri subsp. citri causes citrus canker. The Asiatic strain has a broad host range, whereas the Wellington variant has a restricted host range. Here, we present the complete genome of X. citri subsp. citri strain AW12879. This study lays the foundation to further characterize the mechanisms for virulence and host range of X. citri.

GENOME ANNOUNCEMENT

Xanthomonas is an important model genus for studying host-microbe interactions, capable of infecting over 390 plant varieties. Among the diseases caused by Xanthomonas, citrus canker caused by X. citri subsp. citri is an important disease that has severe economic impacts on citrus industries worldwide. Canker caused by the X. citri subsp. citri Asiatic strain is the most widespread and destructive form of citrus canker (1, 2, 3). The Asiatic strain has a broad host range and affects most commercial citrus varieties, including grapefruit, sweet orange, and Mexican lime (4, 5). Two variants of the Asiatic strain, designated A* and AW, were identified previously. The A* strain was found in Southeast Asia in the 1990s infecting Mexican lime (5). The AW strain (Wellington strain), isolated from Palm Beach County in southern Florida, was characterized by Schubert et al. in the late 1990s (4, 6). The AW strain was found to be pathogenic to Mexican lime and alemow plants, but not to grapefruit and sweet orange. This strain also causes a hypersensitive reaction (HR) in grapefruit (7). Here, we report the genome sequence of X. citri subsp. citri strain AW12879, isolated from Mexican lime in Florida (4). This sequence adds to the genomic data of previously sequenced citrus canker-causing bacteria, i.e., X. citri subsp. citri Asiatic strain 306, X. fuscans subsp. aurantifolii strain B, and X. fuscans subsp. aurantifolii strain C (8, 9). Our objective is to facilitate comparative genomic studies to characterize the mechanisms for virulence and host range of citrus canker-causing bacteria.

The complete genome of X. citri subsp. citri strain AW12879 was generated by using 454 pyrosequencing and Illumina technology, resulting in average coverage of 24× and 410×, respectively. Newbler 2.0 software was used for de novo assembly of 454 sequencing reads into 378 contigs and 17 scaffolds. The 17 scaffolds were further aligned to the BamHI optical map (OpGen technologies) that revealed the orientation of scaffolds and several misassembles. Illumina sequences were assembled using CLC Genomics workbench 5.0 into 1,426 contigs that were used to close gaps between the 454 scaffolds. PCR amplification and Sanger sequencing were used to close the remaining gaps, and Softberry’s FgenesB pipeline was used for finding protein coding sequences (CDS). The predicted CDS were annotated by similarity searches against the NCBI nonredundant (nr) protein database and clusters of orthologous groups (COG) database and curated manually using the JGI GenePRIMP pipeline (10).

The final sequence of X. citri subsp. citri strain AW12879 contains a chromosome (5.32 Mb and 64.71% G+C content) and two circular plasmids, pXcaw19 (18,869 bp and 63.07% G+C content) and pXcaw58 (58,317 bp and 61.85% G+C content). The genome consists of 4,760 annotated CDS, of which 3,457 could be assigned to a COG functional category. The genome harbors 2 rRNA operons and 54 tRNA genes, which were identified with FgenesB and tRNAscan-SE, respectively (11). The plasmid pXcaw19 sequence has no homology with the plasmids of X. citri subsp. citri Asiatic strain 306, whereas pXcaw58 is only about 35% similar to pXAC64 (8).

Nucleotide sequence accession numbers.

The complete genome sequence of X. citri subsp. citri strain AW12879 (including one chromosome and two plasmids) has been deposited in GenBank under accession numbers CP003778, CP003779, and CP003780.

ACKNOWLEDGMENTS

This work was supported by the Florida Citrus Research and Development Foundation and the United States Department of Agriculture-Cooperative State Research Education and Extension Services Special Citrus Canker Grant Project 73402.

Footnotes

Citation Jalan N, Kumar D, Yu F, Jones JB, Graham JH, Wang N. 2013. Complete genome sequence of Xanthomonas citri subsp. citri strain AW12879, a restricted-host-range citrus canker-causing bacterium. Genome Announc. 1(3):e00235-13. doi:10.1128/genomeA.00235-13.

REFERENCES

  • 1. Chan JW, Goodwin PH. 1999. The molecular genetics of virulence of Xanthomonas campestris. Biotechnol. Adv. 17:489–508 [DOI] [PubMed] [Google Scholar]
  • 2. Civerolo EL. 1984. Bacterial canker disease of citrus. J. Rio Grande Val. Hort. Soc. 37:127–145 [Google Scholar]
  • 3. Stall RE, Civerolo EL. 1991. Research relating to the recent outbreak of citrus canker in Florida. Annu. Rev. Phytopathol. 29:399–420 [DOI] [PubMed] [Google Scholar]
  • 4. Sun X, Stall RE, Jones JB, Cubero J, Gottwald TR, Graham JH, Dixon WH, Schubert TS, Chaloux PH, Stromberg VK, Lacy GH, Sutton BD. 2004. Detection and characterization of a new strain of citrus canker bacteria from key/Mexican lime and alemow in south Florida. Plant Dis. 88:1179–1188 [DOI] [PubMed] [Google Scholar]
  • 5. Verniere C, Hartung JS, Pruvost OP, Civerolo EL, Alvarez AM, Maestri P, Luisetti J. 1998. Characterization of phenotypically distinct strains of Xanthomonas axonopodis pv. citri from Southwest Asia. Eur. J. Plant Pathol. 104:477–487 [Google Scholar]
  • 6. Schubert TS, Rizvi SA, Sun X, Gottwald TR, Graham JH, Dixon WN. 2001. Meeting the challenge of eradicating citrus canker in Florida—again. Plant Dis. 85:17. [DOI] [PubMed] [Google Scholar]
  • 7. Rybak MA, Minsavage GV, Stall RE, Jones JB. 2009. Identification of Xanthomonas citri ssp. citri host specificity genes in a heterologous expression host. Mol. Plant Pathol. 10:249–262 [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 8. da Silva AC, Ferro JA, Reinach FC, Farah CS, Furlan LR, Quaggio RB, Monteiro-Vitorello CB, Van Sluys MA, Almeida NF, Alves LM, do Amaral AM, Bertolini MC, Camargo LEA, Camarotte G, Cannavan F, Cardozo J, Chambergo F, Ciapina LP, Cicarelli RMB, Coutinho LL, Cursino-Santos JR, El-Dorry H, Faria JB, Ferreira AJS, Ferreira RCC, Ferro MIT, Formighieri EF, Franco MC, Greggio CC, Gruber A, Katsuyama AM, Kishi LT, Leite RP, Jr, Lemos EGM, Lemos MVF, Locali EC, Machado MA, Madeira AMBN, Martinez-Rossi NM, Martins EC, Meidanis J, Menck CFM, Miyaki CY, Moon DH, Moreira LM, Novo MTM, Okura VK, Oliveira MC, Oliveira VR, Pereira HA, Jr, Rossi A, Sena JAD, Silva C, de Souza RF, Spinola LAF, Takita MA, Tamura RE, Teixeira EC, Tezza RID, Trindade dos Santos M, Truffi D, Tsai SM, White FF, Setubal JC, Kitajima JP. 2002. Comparison of the genomes of two Xanthomonas pathogens with differing host specificities. Nature 417:459–463 [DOI] [PubMed] [Google Scholar]
  • 9. Moreira LM, Almeida NF, Potnis N, Digiampietri LA, Adi SS, Bortolossi JC, da Silva AC, da Silva AM, de Moraes FE, de Oliveira JC, de Souza RF, Facincani AP, Ferraz AL, Ferro MI, Furlan LR, Gimenez DF, Jones JB, Kitajima EW, Laia ML, Leite RP, Nishiyama MY, Rodrigues Neto J, Nociti LA, Norman DJ, Ostroski EH, Pereira HA, Staskawicz BJ, Tezza RI, Ferro JA, Vinatzer BA, Setubal JC. 2010. Novel insights into the genomic basis of citrus canker based on the genome sequences of two strains of Xanthomonas fuscans subsp. aurantifolii. BMC Genomics 11:238. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 10. Pati A, Ivanova NN, Mikhailova N, Ovchinnikova G, Hooper SD, Lykidis A, Kyrpides NC. 2010. GenePRIMP: a gene prediction improvement pipeline for prokaryotic genomes. Nat. Methods 7:455–457 [DOI] [PubMed] [Google Scholar]
  • 11. Lowe TM, Eddy SR. 1997. tRNAscan-SE: a program for improved detection of transfer RNA genes in genomic sequence. Nucleic Acids Res. 25:955–964 [DOI] [PMC free article] [PubMed] [Google Scholar]

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