| Literature DB >> 30176800 |
Bo-Le Jiang1, Guo-Feng Jiang1, Wei Liu1, Li-Chao Yang1, Li-Yan Yang1, Lin Wang1, Xiao-Hong Hang1, Ji-Liang Tang2.
Abstract
BACKGROUND: The Gram-negative phytopathogenic bacterium Xanthomonas campestris pv. campestris recruits the hrp/T3SS system to inject pathogenicity effector proteins into host cells and uses the rpf/DSF cell-cell signaling system to regulate the expression of virulence factors such as extracellular enzymes and polysaccharide. Whether these two systems have any connection is unknown.Entities:
Keywords: RpfC; Xanthomonas; hrpX
Mesh:
Substances:
Year: 2018 PMID: 30176800 PMCID: PMC6122198 DOI: 10.1186/s12866-018-1233-5
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Bacterial strains and plasmids used in this work
| Strains or plasmids | Relevant characteristicsa | Source |
|---|---|---|
| 8004 | Wild type; Rifr | [ |
| XB001 | 8004/pL6 | This work |
| XB002 | 8004/pL6 | This work |
| between the ORFs | ||
| XB003 | 8004/pL6 | This work |
| XB004 | 8004/pL6 | This work |
| XB005 | 8004/pL6 | This work |
| XB006 | 8004/pL6 | This work |
| 8004/pL6 | 8004 harboring plasmid pL6 | This work |
| | This work | |
| | This work | |
| | [ | |
| | [ | |
| 8004/pGUS | 8004 harboring plasmid pGUS | This work |
| | This work | |
| 8004/pGUS | 8004 harboring plasmid pGUS | This work |
| | This work | |
|
| ||
| JM109 | [ | |
| Plasmids | ||
| pUC19 | Cloning vector; Ampr | [ |
| pLAFR6 | Broad host range IncP cloning cosmid; Tcr | [ |
| pK18mobsacB | Suicide plasmid in | [ |
| pLGUS | pLAFR6 containing a 1832-bp | [ |
| pL6 | pLAFR6 containing a 1419-bp | This work |
| pK | pK18mobsacB containing the two flanking fragments of | This work |
| pUCP | pUC19 containing | This work |
| pUCP | pUC19 containing | This work |
| pGUS | pLAFR6 containing | This work |
| pGUS | pLAFR6 containing | This work |
| pL6 | pLAFR6 containing | This work |
| pLC | pLAFR6 containing the sequenced whole ORF of | This work |
aAmpr, ampicillin-resistant; Gmr, gentamicin-resistant; Kanr, kanamycin-resistant; Rifr, rifampicin-resistant; Tcr, tetracycline-resistant
Primers used in this work
| Primer name | Primer sequence | Product length (bp) |
|---|---|---|
| For construction | ||
| sacB-F | CCCTCTAGA ATCAAAAAGTTTGCAAAACAAG | |
| sacB-R | CCCGTCGAC AAATAAAAGAAAATGCCAATAG | 1419 |
| RpfC-1-FOR | ATTGCGCTGATCCTGGTCTACAC | |
| RpfC-1-REV | CGGGATCC AGACTTCATAGACGCCTCAGACG | 553 |
| RpfC-2-FOR | CGGGATCC CGTAGCAACGAATAGACCGC | |
| RpfC-2-REV | ACAGCGACGTGTTCAATCTGGGCG | 665 |
| PhrpG-F | GGGGAGCTC GGTGTTCGGCACGCAGATGCGC | |
| PhrpG-R | GGGTCTAGA GTCCATCACTCGCGCGCCCACG | 590 |
| PhrpX-F | GGGGAATTC CTGACGCATAGGGCTGGTTGGGGC | |
| PhrpX-R | GGGGGTACC CTGGAGGTGCTGCAGACCCTGTGG | 677 |
| For sequencing | ||
| KAN-2 FP-1 | ACCTACAACAAAGCTCTCATCAACC | |
| KAN-2 RP-1 | GCAATGTAACATCAGAGATTTTGAG | |
| For qReal-time PCR | ||
| XC0052F | ACAGATTGGTCTCGCAGGTC | 104 |
| XC0052R | GGCAATGCTCTGATCGGTCT | |
| XC0241F | AGCCGCATCCACGAAACGGA | 92 |
| XC0241R | AACAGCGCGGTGCGTCGTAA | |
| XC1553F | TTTTCCGGATGGCTCGAACA | 108 |
| XC1553R | AGGATGCAGACTGACCAAGC | |
| XC2004F | TTGAGGCGGCCATATCACTC | 119 |
| XC2004R | CCACACTGCCGATACACCTT | |
| XC2081F | AGGAAGTGCGGATGAACCTG | 141 |
| XC2081R | CGCCGAAACCATTTCGAGAC | |
| XC2602F | TCGAGGATCCGCAAACTACG | 110 |
| XC2602R | GACCGGCATCGAGGAAAAGA | |
| XC2994F | CTCCTGCCATCTTGAGCGAT | 122 |
| XC2994R | CGCAATCAGCATGAAGTCCG | |
| XC2995F | CACGTGGGGCGAGAAAGATA | 116 |
| XC2995R | GCCGTTGGAACAAGGGAGTA | |
| XC3160F | GCTCGCAAGTCTGATGGAGT | 126 |
| XC3160R | CATGACGACAGACCCAGCTT | |
| XC3177F | ATGGACTCAGCGTTGTGGAG | 110 |
| XC3177R | TCATTGTTTCGTGGCAAGCG | |
| XC3802F | TTTCGACGATCTTCCCGAGC | 111 |
| XC3802R | TGGATGGAGGTGTTGTACGC | |
| XC4273F | CGGCGCGGAGTTAAATCTTG | 129 |
| XC4273R | AAAGTCTGCTCCGGGAATCG | |
| XC3076F | CGAAGTCGCATTGCTGGGCG | 93 |
| XC3076R | GCCTTGGACGCCTGCCGATA | |
| XC3077F | TGCGTGGCATCGGACGACAG | 92 |
| XC3077R | CACTCGAAACGGCCCAGCAC | |
| XC3002F | CCTGCAGACGATGGGCATCG | 188 |
| XC3002R | CGTCCTGTTGACCGCTCTGC | |
| XC3003F | CGTTACCTGATGACGCGCGT | 155 |
| XC3003R | AGGTCGGCGGATGCATAACC | |
| XC3004F | GCCTGGTGGGGCTGGTGTTCAA | 164 |
| XC3004R | CGTGCTCTGCTCACCGCTCA | |
| XC3005F | TGCAGCAGCTGAAGACGCGC | 200 |
| XC3005R | CAGGATCGCCTCGATGCCGA | |
| XC3006F | CGCCGTTTGGCGAGCTGGTGGG | 179 |
| XC3006R | CGCCTGCGCCTGGATCTGCA | |
| XC3007F | GCAGGCGCTGGCGGACGTCC | 169 |
| XC3007R | CACGCCGCGCTCGTTCCACG | |
| XC3008F | CCGTGTCCACGCTGGCGCAA | 150 |
| XC3008R | CGCCGACCTGCATGCTCGCC | |
| XC3009F | ACGGCCGGTGTGGATGCAGA | 177 |
| XC3009R | GGGTGTGGAGATCAGGCCGT | |
| XC3010F | GCTGATGCAATCCTCCTGCC | 151 |
| XC3010R | CCCCATCTTTGGCGCATTGG | |
| XC3011F | GCGAGTACTGCGGCCAGAGT | 153 |
| XC3011R | CAACACGCGTACAAGGCCTT | |
| XC3012F | TTGTGCAGACCGGGCTTAAT | 160 |
| XC3012R | TACCACAGCACCACGCCGAT | |
| XC3014F | GGATTGCCGGACACGGTGGT | 150 |
| XC3014R | TCGGGCGATCTGTCGACGAT | |
| XC3015F | TGGAACCACTGGGACTAGGCG | 159 |
| XC3015R | CAGCGCTAGCCGTTTGCAGC | |
| XC3016F | AATGCCATCGGCGTGCAGCA | 172 |
| XC3016R | CGCGACAGGCATCGAGCAAT | |
| XC3017F | GTGCGATTCACTTCCGAAGC | 155 |
| XC3017R | ACCACCACCAGCTTGAGCGC | |
| XC3018F | GAACTGGAAGAAGCCGAAGCG | 192 |
| XC3018R | ACGGGCGCTGTCGTCTACCT | |
| XC3019F | AGATTGGCCTGATTGTTCGC | 178 |
| XC3019R | CTCCAGCAGCGCAACATCGT | |
| XC3020F | CACGCTCACCCAGGATATGA | 163 |
| XC3020R | GACAATGAAATCGTTGCGCG | |
| XC3021F | GATTGGGCCAGGCCAGGGAT | 168 |
| XC3021R | CGTTCTTCTTCGCGGTCAGG | |
| XC3022F | CACATGCCTGCAGCCCAGAC | 154 |
| XC3022R | CCTGTGCGTACACCGACAAA | |
| XC3023F | CGCGCCACCCGGCCTCCAGA | 185 |
| XC3023R | CGCCGCCGCCCTTCATGTTG | |
| XC3024F | GTGCTGGGCCGTCACATGCT | 155 |
| XC3024R | ACCGCCTGCTGCACGACCGT | |
| XC3025F | GTTGCCGCCTGCGGTGGATG | 188 |
| XC3025R | GCAAGCCTTGCAGCGCACTC | |
| XC1331F | TGTGCCTGGATTCGGGTTGC | 323 |
| XC1331R | CCACCATCGGAAACTTGTCG | |
| XC3907F | CGATGTTCGCCACCCACAAC | 318 |
| XC3907R | GGATGGACGCAAACGAGGAC | |
| XC3379F | CAACGATGCGTCCAATGTGTC | 301 |
| XC3379R | CAAGGTTTCCACCGCTGCTG | |
| XC1969F | CGGCTACAAGAACGCCTACCCG | 156 |
| XC1969R | GCGATGTCCTGCTCGGAAAAGC | |
| XC2272F | GAGCCCTGAAATCGCCCTGACC | 223 |
| XC2272R | CTCCACCAGATGTCCCAGCAGC | |
| XC3324F | GTCTTCACTGCCGACGGTTC | 164 |
| XC3324R | TCGAATGCGACCTTCTCGATAC | |
| XC4122F | TTCGTATGATTTCCTCGGCC | 142 |
| XC4122R | TACTTGATCTTGCCTTCCTTGT | |
| XC1019F | ACACGATTTCTGGGTTTTGCGC | 304 |
| XC1019R | ATTCAGTGCGTTGAGTTCTGGC | |
| XC3862F | AGGCAAGCCCCGAATCCGAAGC | 251 |
| XC3862R | CACGGCGTCGTCCAGTGTGTTG | |
| XC4147F | ACGGCTACATCGGGTTGATC | 197 |
| XC4147R | TCATTTGCGGGCTTCCTCC | |
| XC2979F | ATGAGCGACTGGGAAGGACG | 231 |
| XC2979R | GGCAAACTGCTTGAGGTCAG | |
| XC0109F | GCGAAAAACGCCTGGCGGTGC | 166 |
| XC0109R | AGCTTGCCGGCATCCAGCGC | |
| XC0705F | CTACTGGCGTGACGTTGGTG | 156 |
| XC0705R | CACCCATCACACCGGACCTG | |
| XC1002F | CACTGCGTTATGTGCTGCCC | 158 |
| XC1002R | CAGTTTCGACGCGGCAATGG | |
| XC1850F | GGCAGCACGCGCCGCTACATCAG | 151 |
| XC1850R | TGGGCGTGGGGTTGGCATTG | |
| XC2254F | GAACTGGAACGTTGCCTGGG | 150 |
| XC2254R | GTGCGATGTCGCGACGAAGC | |
| XC1621F | GATCTGTGGAAGCAGTAACG | 159 |
| XC1621R | CTACTCGGGCCTTGAACAAC | |
| XC2512F | CGCGTGCGCGTAACGGTGTG | 150 |
| XC2512R | CGCTACGCGTGAAGCTGGGG | |
| XC0155F | GCGTGTTGCGCAGCTTCGAAC | 168 |
| XC0155R | GCATGCGCATCAGCTTGAGG | |
| XC1978F | CTCAAGCTGCGCGGCCATCC | 151 |
| XC1978R | GCACCATTGCGCGCCCCAGC | |
| XC1294F | GCGCGCAGCCAGTGCCGTGG | 131 |
| XC1294R | CGGTGCCGGCGACTGCCACT | |
| XC2088F | GCGAGTGGAAAAACCAGCTGGGT | 140 |
| XC2088R | AACCGGGTTGGCAAACCAGC | |
| XC3540F | TGAGCGTGCCAACAAGGACT | 152 |
| XC3540R | ATTCGACCTTGGTGCGCAGC | |
| XC3697F | GGCGACAGGCCCGCGGATGGTTGT | 144 |
| XC3697R | GCCCGCAGGCCCAGCCGAAT | |
| 16S-F | GAGGAAGGTGGGGATGACGTCA | 108 |
| 16S-R | GATTGGCTTACCCTCGCGGG | |
Fig. 1Identification of positive regulator candidates affecting hrpX expression by sacB strategy. Xcc wild type train 8004 and the deletion mutant strain ΔhrpG were used as controls. The principle in this strategy is that strain 8004/pL6hrpXsacB cannot grow on the minimal medium containing 5% sucrose, because the expression of the hrpX-promoter-driven sacB gene is lethal to the cells under these conditions, and only the strains with a mutation (i.e., deletion mutant of hrpG, ΔhrpG) impeding the expression of hrpX (i.e. strain ΔhrpG/pL6hrpXsacB, or disrupting the sacB gene, or the wild-type strain 8004 and the deletion mutant strain ΔhrpG can grow. a, wild-type strain 8004; b, 8004/pL6hrpXsacB; c, ΔhrpG/pL6hrpXsacB; d, the deletion mutant strain ΔhrpG
Fig. 2RpfC positively affects the expression of hrpX in XCM1 minimal medium. β-Glucuronidase (GUS) activities of hrpG and hrpX promoter-gusA reporters in the rpfC mutant and the wild-type backgrounds. Strains were cultured in XCM1 medium for 24 h, and GUS activities were then determined by measurement of optical density at 415 nm (OD415) using ρ-nitrophenyl-β-D-glucuronide as substrate. Data are mean ± standard deviations (SD) of triplicate measurements. The experiment was repeated twice and similar results were obtained. **, t-test, p < 0.01
Fig. 3RpfC positively affects the expression of hrpG and hrpX in host plant. Xcc strains 8004/pGUShrpG, 8004/pGUShrpX, ΔrpfC/pGUShrpG, and ΔrpfC/pGUShrpX were cultured in NYG medium overnight and resuspended in water to an optical density at 600 nm of 0.01, and then inoculated into the Chinese radish cv. Manshenhong leaves by leaf clipping. At 5 days post-inoculation, the inoculated leaves were assayed. a, Leaves were taken and analyzed for bacterial numbers and GUS activity was measured with the fluorogenic substrate 4-methylumbelliferyl-β-D-glucuronide. GUS activity values per 108 bacterial cells are the mean ± standard deviations of three independent measurements. b, GUS activity was measured using an in situ staining method, and bacterial cell numbers inside the infected leaves were measured in a parallel experiment. Average bacterial numbers inside the tested leaves are indicated. The experiments were repeated twice. Data presented are from a representative experiment, and similar results were obtained in the other independent experiment
Fig. 4RpfC is involved in hypersensitive response. a, Hypersensitive response symptoms induced in pepper leaves (Capsicum annuum cv. ECW-10R) by the Xcc strains. Approximately 5 μl bacterial culture (1 × 107 CFU/ml) suspended in 10 mM sodium phosphate buffer were infiltrated into the leaf mesophyll tissue with a blunt-end plastic syringe. Pictures of the pepper leaf were taken at 8, 16, and 24 h after infiltration. Three replications were done in each experiment, and each experiment was repeated three times. Results presented are from a representative experiment, and similar results were obtained in all other independent experiments. b, Electrolyte leakage from pepper leaves inoculated with Xcc strains. Results presented are from a representative experiment, and similar results were obtained in other independent experiments
Fig. 5Comparison of RpfC and RpfG regulons. Venn diagrams showing the overlap of genes (a, Total regulated genes. b, hrp genes. c, Type III effector genes) whose expression is upregulated or downregulated in rpfC or rpfG deletion mutant backgrounds
Fig. 6qRT-PCR verification of differently expressed genes in ΔrpfC (a) and ΔrpfG (b). The genes were chosen randomly from the transcriptome results. Two independent experiments were performed, and similar results were obtained. Results presented are from a representative experiment
RpfC positively regulates the expression of hrpX, 25 hrp genes, and 9 T3S effectors
| ID | Gene name | Predicted product | Fold change | |
|---|---|---|---|---|
| XC3001 |
| Hpa2 protein | −1.967 | 0.006410439 |
| XC3002 |
| Hpa1 protein | −3.429 | 5.28933E-05 |
| XC3003 |
| HrcC protein | −2.440 | 6.32552E-05 |
| XC3004 |
| HrpB8 protein | −2.112 | 0.001062566 |
| XC3005 |
| HrpB7 protein | −2.429 | 3.27619E-06 |
| XC3006 |
| HrpB6 protein | −2.184 | 0.000117024 |
| XC3007 |
| HrpB5 protein | −3.356 | 1.38714E-05 |
| XC3008 |
| HrpB4 protein | −2.781 | 0.000112512 |
| XC3009 |
| HrcJ protein | −3.227 | 5.31033E-06 |
| XC3010 |
| HrpB2 protein | −3.152 | 5.78013E-05 |
| XC3011 |
| HrpB1 protein | −3.334 | 3.3299E-06 |
| XC3012 |
| HrcU protein | −2.873 | 3.59286E-05 |
| XC3013 |
| HrcV protein | −2.871 | 7.99441E-05 |
| XC3014 |
| HpaP protein | −2.730 | 0.000117653 |
| XC3015 |
| HrcQ protein | −2.963 | 0.000143701 |
| XC3016 |
| HrcR protein | −2.208 | 8.2237E-05 |
| XC3017 |
| HrcS protein | −2.664 | 0.000432191 |
| XC3018 |
| HpaA protein | −2.373 | 1.30182E-05 |
| XC3019 |
| HrpD5 protein | −2.843 | 2.26091E-05 |
| XC3020 |
| HrpD6 protein | −2.933 | 2.18335E-06 |
| XC3021 |
| HrpE protein | −2.076 | 4.12178E-05 |
| XC3022 |
| HpaB protein | −2.121 | 1.32695E-08 |
| XC3023 |
| HrpW protein | −1.342 | 3.28466E-06 |
| XC3024 | conserved hypothetical protein | − 1.376 | 2.43557E-06 | |
| XC3025 |
| HrpF protein | −2.472 | 3.91605E-06 |
| XC3076 |
| HrpX protein | −1.331 | 1.1147E-06 |
| XC3077 |
| HrpG protein | −0.564 | 2.03168E-05 |
| XC0052 |
| avirulence protein | −0.556 | 0.000371266 |
| XC0241 |
| conserved hypothetical protein | −1.713 | 2.02564E-05 |
| XC1553 |
| leucin rich protein | −1.796 | 6.64485E-05 |
| XC2004 |
| avirulence protein | −1.424 | 0.000257062 |
| XC2081 |
| avirulence protein | −1.357 | 0.00061082 |
| XC2602 |
| avirulence protein | −1.458 | 1.49178E-06 |
| XC2994 |
| Type III effector protein | −0.626 | 0.000168654 |
| XC2995 |
| Type III effector protein | −1.932 | 2.51053E-06 |
| XC3160 |
| Type III effector protein | −2.954 | 1.98578E-05 |
| XC3177 |
| Type III effector protein | −2.266 | 3.59482E-05 |
| XC3802 |
| avirulence protein | −0.449 | 0.000671213 |
| XC4273 |
| leucin rich protein | −1.842 | 3.38357E-07 |
| XC0486 |
| CAP-like protein | 0.091 | 0.000208009 |
Fold change means the value of log2 ratio of RPKM (ΔrfpC/wild type). The differential expression genes were defined with a stringent cutoff value of |log2-fold change| ≥ 1.0 and p value < 0.01
RpfG positively regulates the expression of 10 hrp genes, 8 T3S effectors
| ID | Gene name | Predicted product | Fold change | |
|---|---|---|---|---|
| XC3001 |
| Hpa2 protein | −0.460 | 0.014094188 |
| XC3002 |
| Hpa1 protein | −0.794 | 1.9328E-05 |
| XC3003 |
| HrcC protein | −0.748 | 0.000323325 |
| XC3004 |
| HrpB8 protein | −0.819 | 0.007692677 |
| XC3005 |
| HrpB7 protein | −0.898 | 0.000925861 |
| XC3006 |
| HrpB6 protein | −0.866 | 0.001395029 |
| XC3007 |
| HrpB5 protein | −0.422 | 0.002457912 |
| XC3008 |
| HrpB4 protein | −0.604 | 0.000177562 |
| XC3009 |
| HrcJ protein | −1.370 | 0.000105572 |
| XC3010 |
| HrpB2 protein | −1.189 | 0.000499769 |
| XC3011 |
| HrpB1 protein | −2.031 | 0.000552365 |
| XC3012 |
| HrcU protein | −1.364 | 1.2705E-05 |
| XC3013 |
| HrcV protein | −1.251 | 0.000455787 |
| XC3014 |
| HpaP protein | −1.270 | 0.000271481 |
| XC3015 |
| HrcQ protein | −1.055 | 0.002525553 |
| XC3016 |
| HrcR protein | −0.969 | 0.003879682 |
| XC3017 |
| HrcS protein | −0.999 | 0.032254632 |
| XC3018 |
| HpaA protein | −0.511 | 0.000910631 |
| XC3019 |
| HrpD5 protein | −1.198 | 0.000505121 |
| XC3020 |
| HrpD6 protein | −1.141 | 0.000534484 |
| XC3021 |
| HrpE protein | −1.388 | 0.000719991 |
| XC3022 |
| HpaB protein | −0.589 | 0.000803494 |
| XC3023 |
| HrpW protein | −0.214 | 9.24647E-05 |
| XC3024 | conserved hypothetical protein | −0.621 | 0.000308403 | |
| XC3025 |
| HrpF protein | −2.360 | 0.000402749 |
| XC3076 |
| HrpX protein | 0.034 | 4.24498E-05 |
| XC3077 |
| HrpG protein | −0.105 | 0.000180844 |
| XC0052 |
| avirulence protein | 0.037 | 0.002116633 |
| XC0241 |
| conserved hypothetical protein | −1.272 | 0.000227566 |
| XC1553 |
| leucin rich protein | −0.942 | 0.000122936 |
| XC2004 |
| avirulence protein | −1.352 | 0.00359996 |
| XC2081 |
| avirulence protein | −1.786 | 0.002769123 |
| XC2602 |
| avirulence protein | −1.512 | 0.000120947 |
| XC2994 |
| Type III effector protein | −0.970 | 0.001806466 |
| XC2995 |
| Type III effector protein | −1.246 | 0.000429812 |
| XC3160 |
| Type III effector protein | −2.452 | 0.000264107 |
| XC3177 |
| Type III effector protein | −2.164 | 0.001441317 |
| XC3802 |
| avirulence protein | −0.562 | 0.002544406 |
| XC4273 |
| leucin rich protein | −1.251 | 0.000444297 |
| XC0486 |
| CAP-like protein | 0.199 | 0.000155663 |
Fold change means the value of log2 ratio of RPKM (ΔrfpG/wild type). The differential expression genes were defined with a stringent cutoff value of |log2-fold change| ≥ 1.0 and p value < 0.01