Basic Information
|
CGSNL Gene Symbol
|
XA41
|
Gene Symbol Synonym
|
OsSWEET14, SWEET14, Os11N3, Os-11N3, 11N3, Xa41(t), xa41, Os11N3/SWEET14, OsSWEET14/Os11N3
|
CGSNL Gene Name
|
XANTHOMONAS ORYZAE PV. ORYZAE RESISTANCE 41
|
Gene Name Synonym
|
Xanthomonas oryzae pv. oryzae resistance 41, sugar will eventually be exported transporter 14
|
Protein Name
|
SUGAR TRANSPORTER SWEET14
|
Allele
|
xa41(t), xa41, sweet14-10, sweet14-11, sweet14-15, sweet14-32, sweet14-36, sweet14-37, sweet14-38, sweet14-39, sweet14-41, sweet14-42
|
Chromosome No.
|
11
|
Explanation
|
Q2R3P9. a second member of the NODULIN3 (N3) gene family. Nodulin-3. GO:0071470. a major bacterial blight susceptibility S gene. The 18-bp deletion in the promoter region of the OsSWEET14 gene represents a new resistance allele xa41(t) (Hutin et al. 2015). OsR498G1120210200.01 in Xie et al. 2022.
|
Trait Class
|
Biochemical character
Vegetative organ - Culm
Reproductive organ - Pollination, fertilization, fertility - Male sterility
Tolerance and resistance - Disease resistance
|
Expression
|
|
Sequence/Locus
|
cDNA Accession No.
|
AK101913
|
MSU ID
|
LOC_Os11g31190.1
|
RAP ID
|
Os11g0508600
|
Links
|
Oryzabase Chromosome View
(
IRGSP 1.0
/
Build5
)
RAP-DB
(
IRGSP 1.0
/
Build5
)
Related IDs List (
IRGSP 1.0
/
Build5
)
|
INSD Accession List (Test version)
|
-
|
Map
|
Locate(cM)
|
|
Link map
|
Classical linkage map
|
References
|
Wang X., Ju Y., Wu T., Kong L., Yuan M., Liu H., Chen X., Chu Z.
Plant Biotechnol. J. 2024 22(8) 2186-2200
The clade III subfamily of OsSWEETs directly suppresses rice immunity by interacting with OsHMGB1 and OsHsp20L.
|
Liu L., Li Y., Wang Q., Xu X., Yan J., Wang Y., Wang Y., Shah S.M.A., Peng Y., Zhu Z., Xu Z., Chen G.
Rice (N Y) 2024 17(1) 30
Constructed Rice Tracers Identify the Major Virulent Transcription Activator-Like Effectors of the Bacterial Leaf Blight Pathogen.
|
Sun C., Wang Y., Yang X., Tang L., Wan C., Liu J., Chen C., Zhang H., He C., Liu C., Wang Q., Zhang K., Zhang W., Yang B., Li S., Zhu J., Sun Y., Li W., Zhou Y., Wang P., Deng X.
Plant Biotechnol. J. 2023 21(3) 621-634
MATE transporter GFD1 cooperates with sugar transporters, mediates carbohydrate partitioning and controls grain-filling duration, grain size and number in rice.
|
Gupta A., Liu B., Chen Q.J., Yang B.
Plant Biotechnol. J. 2023 21(7) 1454-1464
High-efficiency prime editing enables new strategies for broad-spectrum resistance to bacterial blight of rice.
|
Xie Z., Zhao B., Zhang M., Sang X., Zhao F., Feng P., He G., Zhu X.
Int J Mol Sci 2022 23(19)
Mutation of <i>OsSAC3</i>, Encoding the xanthine dehydrogenase, Caused Early Senescence in Rice.
|
Yoshihisa A., Yoshimura S., Shimizu M., Sato S., Matsuno S., Mine A., Yamaguchi K., Kawasaki T.
New Phytol. 2022 236(4) 1441-1454
The rice OsERF101 transcription factor regulates the NLR Xa1-mediated immunity induced by perception of TAL effectors.
|
Doucouré H., Auguy F., Blanvillain-Baufumé S., Fabre S., Gabriel M., Thomas E., Dambreville F., Sciallano C., Szurek B., Koita O., Verdier V., Cunnac S.
Int J Mol Sci 2022 23(10)
The Rice <i>ILI2</i> Locus Is a Bidirectional Target of the African <i>Xanthomonas oryzae</i> pv. <i>oryzae</i> Major Transcription Activator-like Effector TalC but Does Not Contribute to Disease Susceptibility.
|
Duy P.N., Lan D.T., Pham Thu H., Thi Thu HP., Nguyen Thanh H., Pham N.P., Auguy F., Bui Thi Thu H., Manh T.B., Cunnac S., Pham X.H.
PLoS ONE 2021 16(9) e0255470
Improved bacterial leaf blight disease resistance in the major elite Vietnamese rice cultivar TBR225 via editing of the OsSWEET14 promoter.
|
Zeng X., Luo Y., Vu N.T.Q., Shen S., Xia K., Zhang M.
BMC Plant Biol. 2020 20(1) 313
CRISPR/Cas9-mediated mutation of OsSWEET14 in rice cv. Zhonghua11 confers resistance to Xanthomonas oryzae pv. oryzae without yield penalty.
|
Zafar K., Khan M.Z., Amin I., Mukhtar Z., Yasmin S., Arif M., Ejaz K., Mansoor S.
Front Plant Sci 2020 11 575
Precise CRISPR-Cas9 Mediated Genome Editing in Super Basmati Rice for Resistance Against Bacterial Blight by Targeting the Major Susceptibility Gene.
|
Wang M., Zhang T., Peng H., Luo S., Tan J., Jiang K., Heng Y., Zhang X., Guo X., Zheng J., Cheng Z.
Front Plant Sci 2018 9 560
Rice <i>Premature leaf senescence 2</i>, Encoding a Glycosyltransferase (GT), Is Involved in leaf senescence.
|
Li X., Wang Y., Duan E., Qi Q., Zhou K., Lin Q., Wang D., Wang Y., Long W., Zhao Z., Cheng Z., Lei C., Zhang X., Guo X., Wang J., Wu C., Jiang L., Wang C., Wan J.
Plant Cell Rep. 2018 37(2) 329-346
OPEN GLUME1: a key enzyme reducing the precursor of JA, participates in carbohydrate transport of lodicules during anthesis in rice.
|
Zhu X., Shen W., Huang J., Zhang T., Zhang X., Cui Y., Sang X., Ling Y., Li Y., Wang N., Zhao F., Zhang C., Yang Z., He G.
Plant Cell Physiol. 2018 59(3) 487-499
Mutation of the OsSAC1 Gene, which Encodes an Endoplasmic Reticulum Protein with an Unknown Function, Causes Sugar Accumulation in Rice Leaves.
|
Wu Y., Lee S.K., Yoo Y., Wei J., Kwon S.Y., Lee S.W., Jeon J.S., An G.
Mol Plant 2018 11(6) 833-845
Rice Transcription Factor OsDOF11 Modulates Sugar Transport by Promoting Expression of Sucrose Transporter and SWEET Genes.
|
Doucouré H., Pérez-Quintero AL., Reshetnyak G., Tekete C., Auguy F., Thomas E., Koebnik R., Szurek B., Koita O., Verdier V., Cunnac S.
Front Microbiol 2018 9 1657
Functional and Genome Sequence-Driven Characterization of <i>tal</i> Effector Gene Repertoires Reveals Novel Variants With Altered Specificities in Closely Related Malian <i>Xanthomonas oryzae</i> pv. <i>oryzae</i> Strains.
|
Ma W., Zou L., Zhiyuan J.I., Xiameng X.U., Zhengyin X.U., Yang Y., Alfano J.R., Chen G.
Mol. Plant Pathol. 2018 19(10) 2248-2262
Xanthomonas oryzae pv. oryzae TALE proteins recruit OsTFIIAgamma1 to compensate for the absence of OsTFIIAgamma5 in bacterial blight in rice.
|
Blanvillain-Baufumé S., Reschke M., Solé M., Auguy F., Doucoure H., Szurek B., Meynard D., Portefaix M., Cunnac S., Guiderdoni E., Boch J., Koebnik R.
Plant Biotechnol. J. 2016
Targeted promoter editing for rice resistance to Xanthomonas oryzae pv. oryzae reveals differential activities for SWEET14-inducing TAL effectors.
|
Hutin M., Sabot F., Ghesquière A., Koebnik R., Szurek B.
Plant J. 2015
A knowledge-based molecular screen uncovers a broad spectrum OsSWEET14 resistance allele to bacterial blight from wild rice.
|
Denancé N., Szurek B., Noël LD.
Plant Cell Physiol. 2014 55(3) 469-74
Emerging functions of nodulin-like proteins in non-nodulating plant species.
|
Yuan M., Zhao J., Huang R., Li X., Xiao J., Wang S.
J Integr Plant Biol 2014 56(6) 559-70
Rice MtN3/saliva/SWEET gene family: Evolution, expression profiling, and sugar transport.
|
Chen L.Q., Qu X.Q., Hou B.H., Sosso D., Osorio S., Fernie A.R., Frommer W.B.
Science 2012 335(6065) 207-11
Sucrose efflux mediated by SWEET proteins as a key step for phloem transport.
|
Verdier V., Triplett L.R., Hummel A.W., Corral R., Cernadas R.A., Schmidt C.L., Bogdanove A.J., Leach J.E.
New Phytol. 2012 196(4) 1197-207
Transcription activator-like (TAL) effectors targeting OsSWEET genes enhance virulence on diverse rice (Oryza sativa) varieties when expressed individually in a TAL effector-deficient strain of Xanthomonas oryzae.
|
Yu Y., Streubel J., Balzergue S., Champion A., Boch J., Koebnik R., Feng J., Verdier V., Szurek B.
Mol. Plant Microbe Interact. 2011 24(9) 1102-13
Colonization of rice leaf blades by an African strain of Xanthomonas oryzae pv. oryzae depends on a new TAL effector that induces the rice nodulin-3 Os11N3 gene.
|
Li T., Huang S., Wen Zhi Jiang, Wright D., Martin H Spalding, Donald P Weeks, Yang B.
Nucleic acids research 2011 39(1) 359-72
TAL nucleases (TALNs): hybrid proteins composed of TAL effectors and FokI DNA-cleavage domain.
|
Antony G., Zhou J., Huang S., Li T., Liu B., White F., Yang B.
Plant Cell 2010 22(11) 3864-3876
Rice xa13 recessive resistance to bacterial blight is defeated by induction of the disease susceptibility gene Os-11N3.
|
Chen L.-Q., Hou B.-H., Lalonde S., Takanaga H., Hartung M.L., Qu X.-Q., Guo W.-J., Kim J.-G., Underwood W., Chaudhuri B., Chermak D., Antony G., White F.F., Somerville S.C., Mudgett M.B., Frommer W.B.
Nature 2010 468(7323) 527-532
Sugar transporters for intercellular exchange and nutrition of pathogens.
|
TextPresso Search
|
Search textpresso for XA41
( Recent references may be retrievable, but without any warranty )
|
DB Reference
|
Gramene ID
|
-
|
Ontologies
|
Gene Ontology
|
integral to membrane( GO:0016021 )
sucrose transport( GO:0015770 )
response to gibberellin stimulus( GO:0009739 )
response to auxin stimulus( GO:0009733 )
sucrose transmembrane transporter activity( GO:0008515 )
cellular response to abscisic acid stimulus( GO:0071215 )
leaf senescence( GO:0010150 )
response to molecule of bacterial origin( GO:0002237 )
integral to plasma membrane( GO:0005887 )
defense response to bacterium( GO:0042742 )
carbohydrate transmembrane transport( GO:0034219 )
sugar transmembrane transporter activity( GO:0051119 )
response to salicylic acid stimulus( GO:0009751 )
|
Trait Ontology
|
bacterial blight disease resistance( TO:0000175 )
gibberellic acid sensitivity( TO:0000166 )
auxin sensitivity( TO:0000163 )
plant height( TO:0000207 )
pollen fertility( TO:0000421 )
seed set percent( TO:0000455 )
|
Plant Ontology
|
stem( PO:0009047 )
leaf sheath( PO:0020104 )
leaf( PO:0025034 )
root( PO:0009005 )
portion of vascular tissue( PO:0009015 )
|
Related Strains
|
-
|
Phenotype images
|
-
|
Last updated
|
Sep 17, 2024
|