| Literature DB >> 23941402 |
Neha Jalan1, Dibyendu Kumar, Maxuel O Andrade, Fahong Yu, Jeffrey B Jones, James H Graham, Frank F White, João C Setubal, Nian Wang.
Abstract
BACKGROUND: Citrus bacterial canker is a disease that has severe economic impact on citrus industries worldwide and is caused by a few species and pathotypes of Xanthomonas. X. citri subsp. citri strain 306 (XccA306) is a type A (Asiatic) strain with a wide host range, whereas its variant X. citri subsp. citri strain A(w)12879 (Xcaw12879, Wellington strain) is restricted to Mexican lime.Entities:
Mesh:
Year: 2013 PMID: 23941402 PMCID: PMC3751643 DOI: 10.1186/1471-2164-14-551
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Figure 1Maximum likelihood phylogenetic tree of the genome of subsp. A12879 showing the relationship to other and related species. The tree was constructed using concatenated protein sequences of nine housekeeping genes (UvrD, SecA, CarA, RecA, GroEL, DnaK, AtpD, GyrB and InfB) aligned using Clustal W. Phylogenic tree from concatenated sequences was constructed in CLC Genomics workbench v6.0 using the Maximum likelihood method. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches. Horizontal scale bar (0.11) at the bottom represents number of amino-acid substitutions per site.
Figure 2MAUVE alignment of the genome sequences of subsp. str. 306 and subsp. A12879. Conserved and highly related regions are colored and low identity unique region are in white (colorless). The colored lines indicate translocations of the genome sections. Same colored blocks on opposite sides of the line indicate inversion.
Effector repertoire of subsp. A12879 (Xcaw12879), subspstr. 306 (XccA306)subsp. str. ICPB 11122 (XauB) and subsp. str. ICPB 10535 (XauC)
| AvrBs2 | XCAW_00465 | XAC0076 | XAUB_16770 | XAUC_23650 | Glycerophosphoryl diester phosphodiesterase | [ |
| PthA (AvrBs3, TAL) | XCAW_b00018 (PthAw1) | XACa0022 (PthA1) | XAUB_40130 | XAUC_22430 | Transcriptional activator, nuclear localization | [ |
| XACa0039 (PthA2) | XAUC_24060 | |||||
| XCAW_b00026 (pthAw2) | XACb0015 (PthA3) | XAUB_28490 | XAUC_09900 | |||
| XACb0065 (PthA4) | XAUC_43080 | |||||
| XopA (Hpa1/HpaG) | XCAW_00826 | XAC0416 | XAUB_19280 | XAUC_43660 | - | [ |
| XopE1 (AvrXacE1) | XCAW_00686 | XAC0286 | XAUB_37010 | XAUC_37580 | Putative transglutaminase | [ |
| XopE3 (AvrXacE2) | XCAW_03515 | XAC3224 | XAUB_14680 | XAUC_00040 | Putative transglutaminase | [ |
| XopF2 | XCAW_0138Ψ | XAC2785 Ψ | XAUB_07540Ψ | XAUC_21000Ψ | - | [ |
| XopI | XCAW_03828 | XAC0754 | XAUB_39080 | XAUC_07100 | F-box protein | [ |
| XopK | XCAW_03372 | XAC3085 | XAUB_34090 | XAUC_12520 | - | [ |
| XopL | XCAW_03376 | XAC3090 | XAUB_34130 | XAUC_02900/XAUC_12488Ψ | LRR protein | [ |
| XopQ | XCAW_04706 | XAC4333 | XAUB_10220 | XAUC_14670 | Inosine uridine nucleoside N-ribohydrolase | [ |
| XopR | XCAW_00677 | XAC0277 | XAUB_36920 | XAUC_37490 | - | [ |
| XopV | XCAW_03980 | XAC0601 | XAUB_23140 | XAUC_21260 | - | [ |
| XopX | XCAW_00956 | XAC0543 | XAUB_14760 | XAUC_20690 | - | [ |
| XopZ1 | XCAW_01815 | XAC2009 | XAUB_11532/XAUB_13710Ψ | XAUC_25915 | - | [ |
| XopAD | XCAW_00082 | XAC4213 | XAUB_02510 | XAUC_34870 | SKWP repeat protein | [ |
| XopAI | XCAW_01099 | XAC3230 | XAUB_26830 | XAUC_23780 | Putative ADP- ribosyltransferase | [ |
| XopAK | XCAW_04369 | XAC3666 | XAUB_02580 | XAUC_32490 | - | [ |
| XopAP | XCAW_03269 | XAC2990 | XAUB_13980 | XAUC_08760 | - | [ |
| HpaA | XCAW_00810 | XAC0400 | XAUB_19430 | XAUC_19990 | T3S control protein | [ |
| HrpW (PopW) | XCAW_03200 | XAC2922 | XAUB_19460 | XAUC_20020 | Pectate Lyase | [ |
| XopAQ | XCAW_03514 | Not annotated* | Not annotated** | - | - | [ |
| XopE2 (AvrXacE3, AvrXccE1) | XCAW_03520 | XACb0011 | XAUB_31660 | - | Putative transglutaminase | [ |
| XopN | XCAW_01387 | XAC2786 | XAUB_07520 | - | ARM/HEAT repeat | [ |
| XopP | XCAW_01310 | XAC1208 | XAUB_06720 | - | - | [ |
| XopAE (HpaF/HpaG) | XCAW_00801 | XAC0393 | XAUB_19500 | - | LRR protein | [ |
| XopC2 | XCAW_01311Ψ | XAC1209/XAC1210Ψ | | | Haloacid dehalogenase-like hydrolase | [ |
| XopAF (AvrXv3) | XCAW_b00003 | - | XAUB_02310 | XAUC_00300 | - | [ |
| XopAG (AvrGf1/AvrGf2) | XCAW_00608 | - | XAUB_03570 Ψ | XAUC_04910 | - | [ |
| XopF1(Hpa4) | XCAW_00804/XCAW_00805Ψ | - | | XAUC_31730Ψ | | [ |
| XopB | - | - | XAUB_09070/XAUB_14842 Ψ | XAUC_00260 | - | [ |
| XopE4 | - | - | XAUB_23330 | XAUC_31730 | Putative transglutaminase | [ |
| XopJ1 | - | - | XAUB_20830 | XAUC_08850 | C55-family cysteine protease or Ser/Thr acetyltransferase | [ |
Ψ Inactive/Pseudogene.
* Located between XAC3223 and XAC3224 from 3,797,415 bp to 3,797,702 bp.
** Located between XAUB_14670 & XAUB_14680 on NZ_ACPX01000163 from 23,262 bp to 23,549 bp.
Gene clusters present in Xcaw12879 but absent in XccA306
| 1 | XCAW_01029 to XCAW_01069 | | hypothetical proteins, RhsA family protein, transcriptional regulator, integrase, adenine specific DNA methylase, type III restriction enzyme: res subunit, ATP dependent exoDNAse, thermonulease |
| 2 | XCAW_01117 to XCAW_01151 | Some present in | transcriptional regulator, phage-related tail proteins, TCS response sensor and regulator, chitinase, Zn peptidase, transcriptional repressor, protein -glutamate methylesterase |
| 3 | XCAW_01571 to XCAW_01582 | Some present in | phage related proteins, hypothetical protein |
| 4 | XCAW_01620 to XCAW_01726 | Homologous to | transposases, hypothetical proteins, type II restriction enzyme: methylase subunit, phage related regulatory proteins, chromosome partitioning related protein, soluble lytic murein transglycosylase, VirB6 protein |
| 5 | XCAW_04292 to XCAW_04303 | Homologous to | lipopolysaccharide biosynthesis genes |
| 6 | XCAW_04482 to XCAW_04496 | | transposases, hypothetical proteins, transcriptional repressor, polymerase V subunit |
| 7 | XCAW_04519 to XCAW_04545 | Homologous to | phage related proteins, transcriptional regulator, transposases, hypothetical proteins |
| 8 | XCAW_a00001 to XCAW_a00017 | | Plasmid partition protein, conjugal transfer protein, hypothetical proteins |
| 9 | XCAW_b00002 to XACW_b00018 | | Transposases, plasmid stability proteins, avirulence protein, hypothetical proteins |
| 10 | XCAW_b00048 to XACW_b00056 | Plasmid mobilization proteins, transposases, hypothetical proteins |
Figure 3Comparison of the LPS gene clusters of subsp. str. 306, subsp. A12879 and pv. oryzicola str. BLS256. Conserved and highly related genes (over 80% identity) are colored and syntenic regions between the bacteria are shaded in grey (over 50% identity).
Figure 4Pathogenicity assay . Inoculation by pressure infiltration of X. citri subsp. citri str. 306, X. citri subsp. citri str. Aw12879 and X. citri subsp. citri str. AwΔavrGf1 mutant on young Duncan grapefruit, Valencia and Hamlin leaves. The culture concentration of 108 cfu/ml was used for inoculation and leaves were photographed after 10 days of incubation. XccA306 infects all three citrus varieties; Xcaw12879 shows hypersensitive reaction only on grapefruit. XcawΔavrGf1 mutant shows reduced symptoms as compared to XccA306 on grapefruit and no symptoms on Valencia and Hamlin.
Figure 5XopAF contributes to the growth of Xcaw12879 strain . XccA306 (A), Xcaw12879 (Aw), Xcaw12879ΔxopAF (AwΔxopAF), Xcaw12879ΔxopAF-53:xopAF (AwΔAF:53:xopAF, complement strain), Xcaw12879ΔavrGf1 (AwΔavrGf1), Xcaw12879ΔavrGf1-34:avrGf1 (AwΔGf1:34:avrGf1, complement strain), Xcaw12879ΔxopAFΔavrGf1 (AwΔxopAFΔavrGf1) and Xacw12879 ΔxopAFΔavrGf1-34:avrGf1-53:xopAF (AwΔGf1ΔAF:34:avrGf1:53:xopAF, complement strain) were inoculated at approximately 106 cfu/ml concentration into A. Duncan grapefruit, B. Mexican lime and C. Valencia sweet orange leaves using a needleless syringe. Bacterial cells from the inoculated leaves were recovered at different time-points, diluted and counted to plot the growth curve. The values at each time point represent means of three replicates. Means ± SD are plotted.
Figure 6Number of differentially expressed genes when comparing expression of common genes in subsp. str. A12879 to subsp. str. 306 in NB and XVM2 growth conditions. Gene expression of orthologous genes between Xcaw (W) and XccA (A) was compared when grown in Nutrient broth (NB, nutrient rich medium) and XVM2 (XVM, hrp inducing medium).
Figure 7Protease and Pectate lyase activity of subsp. str. 306, and subsp. str. A12879. (A) Protease activity was tested by inoculating 1 μl culture on 10% milk agar plates at 28°C for 6 days. Zone of clearance was used as the measure of protease activity. (B) Pectate lyase activity was tested by inoculating 1 μl culture on Hildebrand’s agar medium at 28°C for 6 days. More pitting can be seen on medium at pH 8.5 for XccA strain compared to Xcaw.