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1.
The sigma 54 genes
rpoN1
and
rpoN2
of
Xanthomonas citri
subsp.
citri
play different roles in virulence, nutrient utilization and cell motility
Gibson Kamau Gicharu, SUN Dong-ling, HU Xun, FAN Xiao-jing, ZHUO Tao, WU Chuan-wan, ZOU Hua-song
Journal of Integrative Agriculture 2016, 15 (
9
): 2032-2039. DOI:
10.1016/S2095-3119(15)61317-X
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1659
)
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The sigma factor 54 (σ
54
) controls the expression of many genes in response to nutritional and environmental conditions. There are two σ
54
genes,
rpoN1
(XAC1969) and
rpoN2
(XAC2972), in
Xanthomonas citri
subsp.
citri
. To investigate their functions, the deletion mutants
ΔrpoN1
,
ΔrpoN2
and
ΔrpoN1N2
were constructed in this study. All the mutants delayed canker development in low concentration inoculation in citrus plants. The bacterial growth of mutants was retarded in the medium supplemented with nitrogen and carbon resources. Under either condition, the influence degree caused by deletion of
rpoN2
was larger than the deletion of
rpoN1
. Remarkably, the mutant ΔrpoN1 showed a reduction in cell motility, while the mutant
ΔrpoN2
increased cell motility. Our data suggested that the
rpoN1
and
rpoN2
play diverse roles in
X. citri
subsp.
citri
.
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2.
The small and large subunits of carbamoyl-phosphate synthase exhibit diverse contributions to pathogenicity in Xanthomonas citri subsp. citri
Guo Jing, SonG Xue, Zou Li-fang, Zou Hua-song, CHen Gong-you
Journal of Integrative Agriculture 2015, 14 (
7
): 1338-1347. DOI:
10.1016/S2095-3119(14)60965-5
摘要
(
1997
)
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Carbamoyl-phosphate synthase plays a vital role in the carbon and nitrogen metabolism cycles. In Xanthomonas citri subsp. citri, carA and carB encode the small and large subunits of carbamoyl-phosphate synthase, respectively. The deletion mutation of the coding regions revealed that carA did not affect any of the phenotypes, while carB played multiple roles in pathogenicity. The deletion of carB rendered the loss of pathogenicity in host plants and the ability to induce a hypersensitive reaction in the non-hosts. Quantitative reverse transcription-PCR assays indicated that 11 hrp genes coding the type III secretion system were suppressed when interacting with citrus plants. The mutation in carB also affected bacterial utilization of several carbon and nitrogen resources in minimal medium MMX and extracellular enzyme activities. These data demonstrated that only the large subunit of carbamoyl-phosphate synthase was essential for canker development by X. citri subsp. citri.
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3.
An Inner Membrane Protein (Imp) of Xanthomonas oryzae pv. oryzicola Functions in Carbon Acquisition, EPS Production, Bacterial Motility and Virulence in Rice
CAI Lu-lu, ZOU Li-fang, GE Ling, XUE Xiao-bo, ZOU Hua-song , CHEN Gong-you
Journal of Integrative Agriculture 2014, 13 (
12
): 2656-2668. DOI:
10.1016/S2095-3119(14)60915-1
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1470
)
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Xanthomonas oryzae pv. oryzicola (Xoc) causes bacterial leaf streak, a devastating disease in rice-growing regions worldwide. A Tn5-insertion mutant in Xoc_3248, encoding an inner membrane protein (Imp), showed reduced virulence in rice. To explore the potential function of this gene in virulence, a deletion mutant RΔimp was constructed in the wild-type RS105. The RΔimp mutant was significantly impaired for bacterial virulence and growth in planta. The mutation in imp made the pathogen insufficiently utilize glucose, fructose, mannose or pyruvate as a sole carbon source, leading to less extracellular polysaccharide (EPS) production and reduced motility. The deficiencies noted for the mutant were restored to wild-type levels when imp was introduced in trans. Transcription of imp was significantly declined when hrpG and hrpX was mutated and the expression of hrpG and hrpX was also significantly declined when imp was deleted. Cell sublocalization in planta showed Imp membrane-binding feature. These results suggest that Imp is a virulence factor with roles in the catabolism of sugars, EPS production, and bacterial motility.
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4.
Xoryp_08180 of Xanthomonas oryzae pv. oryzicola, Encoding a Hypothetical Protein, is Regulated by HrpG and HrpX and Required for Full Virulence in Rice
SHEN Yi-ping, ZOU Li-fang, LI Yu-rong, ZOU Hua-song, LIU Xi-ling , CHEN Gong-you
Journal of Integrative Agriculture 2012, 12 (
4
): 600-610. DOI:
10.1016/S1671-2927(00)8580
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2477
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Xanthomonas oryzae pv. oryzicola (Xoc) causes a destructive bacterial leaf streak disease in rice. Some of the gene products annotated as hypothetical proteins in the genome of Xoc may contribute to its virulence in rice. A mutant, Mxoc1679, screened from our previous Tn5-tagged mutant library for Xoc strain RS105, showed reduced virulence in rice. In this mutant, a gene named as Xoryp_08180 was disrupted by Tn5 insertion. Xoryp_08180 encodes a 1 306-aa hypothetical protein which is highly conserved in Xanthomonas spp. Non-polar mutation of Xoryp_08180 in RS105 strain led to a significant reduction in bacterial virulence and growth in rice, a delayed hypersensitive response (HR) in non-host tobacco, and a decrease in extracellular protease activity. The deficiencies above were restored to wild-type level in the complementary strain by expressing Xoryp_08180 in trans. In addition, the expression of Xoryp_08180 was repressed in hrpG and hrpX mutants in planta but not in a nutrient-rich condition. These results suggested that Xoryp_08180 is a virulence factor required for extracellular protease production, HR induction and full virulence of Xoc.
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