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plant:citrus

//Citrus// spp.

Author: Cristina Cameirão
Internal reviewer: Roland Kölliker
Expert reviewer: Paula Martins

Kumquat (// Fortunella margarita //)

Pathogen: //Xanthomonas citri// ssp. //citri//

Resistance gene: //FmFLS2-1//

Synonyms

NA

Source

Nagami kumquat (Shi et al., 2016).

Status (identified, mapped, cloned, sequenced)

Sequenced and cloned (Shi et al., 2016).

Molecular markers

NA

Brief description

Receptor of bacterial flagellin (Shi et al., 2016).


Mandarin (//Citrus reticulata//)

Pathogen: //Xanthomonas citri// ssp. //citri//

Resistance gene: //CrFLS2-2//

Synonyms

NA

Source

Sun Chu Sha mandarin (Shi et al., 2016).

Status (identified, mapped, cloned, sequenced)

Sequenced and cloned (Shi et al., 2016).

Molecular markers

NA

Brief description

Receptor of bacterial flagellin (Shi et al., 2016).


Pummelo (//Citrus maxima//)

Pathogen: //Xanthomonas citri// ssp. //citri//

Resistance gene: //CtNH1//

Synonyms

NA

Source

Pummelo (Chen et al., 2013).

Status (identified, mapped, cloned, sequenced)

Sequenced and cloned (Chen et al., 2013).

Molecular markers

NA

Brief description

NPR1 homolog (Chen et al., 2013).


Orange (//Citrus sinensis//)

Pathogen: //Xanthomonas citri// ssp. //aurantifolii//

Resistance gene: //CsCAF1//

Synonyms

NA

Source

Sweet orange (Cernadas et al., 2008).

Status (identified, mapped, cloned, sequenced)

Identified (Cernadas et al., 2008) and cloned (Shimo et al., 2019).

Molecular markers

NA

Brief description

Citrus CAF1 homologue gene (Shimo et al., 2019); component of the citrus CCR4-NOT complex (Shimo et al., 2019).


Pathogen: //Xanthomonas citri// ssp. //citri//

Resistance gene: //CsMAF1//

Synonyms

NA

Source

Sweet orange (Soprano et al., 2013).

Status (identified, mapped, cloned, sequenced)

Cloned (Soprano et al., 2013).

Molecular markers

NA

Brief description

RNA polymerase III repressor (Soprano et al., 2013).


References

Cernadas RA, Camillo LR, Benedetti CE (2008). Transcriptional analysis of the sweet orange interaction with the citrus canker pathogens Xanthomonas axonopodis pv. citri and Xanthomonas axonopodis pv. aurantifolii. Mol. Plant Pathol. 9: 609-631. DOI: 10.1111/J.1364-3703.2008.00486.X

Chen X, Barnaby J.Y., Sreedharan A, Huang X, Orbovic V. Grosser J.W., Wang N, Dong X, Song W (2013). Over-expression of the citrus gene CtNH1 confers resistance to bacterial canker disease. Physiol. Mol. Plant Pathol. 84: 115-122. DOI: 10.1016/j.pmpp.2013.07.002

Shi Q, Febres VJ, Jones JB, Moore GA (2016). A survey for FLS2 genes from multiple citrus species identifies candidates for enhancing disease resistance to Xanthomonas citri ssp. citri. Hortic. Res. 3: 16022. DOI: 10.1038/hortres.2016.22

Shimo HM, Terassi C, Silva CCL, Zanella JL, Mercaldi GF, Rocco SA, Benedetti CE (2019). Role of the Citrus sinensis RNA deadenylase CsCAF1 in citrus canker resistance. Mol. Plant Pathol. 20: 1105-1118. DOI: 10.1111/mpp.12815

Soprano AS, Abe VY, Smetana JHC, Benedetti CE (2013). Citrus MAF1, a repressor of RNA polymerase III, binds the Xanthomonas citri canker elicitor PthA4 and suppresses citrus canker development. Plant Physiol. 163: 232-242. DOI: 10.1104/pp.113.224642


Further reading

Canteros BI, Gochez AM, Moschini RC (2017). Management of Citrus canker in Argentina, a success story. Plant Pathol. J. 33: 441-449. DOI: 10.5423/PPJ.RW.03.2017.0071

Fu XZ, Chen CW, Wang Y, Liu JH, Moriguchi T (2011). Ectopic expression of MdSPDS1 in sweet orange (Citrus sinensis Osbeck) reduces canker susceptibility: involvement of H₂O₂ production and transcriptional alteration. BMC Plant Biol. 11: 55. DOI: 10.1186/1471-2229-11-55

Fu H, Zhao M, Xu J, Tan L, Han J, Li D, Wang M, Xiao S, Ma X, Deng Z (2020). Citron C-05 inhibits both the penetration and colonization of Xanthomonas citri subsp. citri to achieve resistance to citrus canker disease. Hortic. Res. 7: 58. DOI: 10.1038/s41438-020-0278-4

Furman N, Kobayashi K, Zanek MC, Calcagno J, Garcia ML, Mentaberry A (2013). Transgenic sweet orange plants expressing a dermaseptin coding sequence show reduced symptoms of citrus canker disease. J. Biotechnol. 167: 412-419. DOI: 10.1016/j.jbiotec.2013.07.019

Martins PMM, de Oliveira Andrade M, Benedetti CE, de Souza AA (2020). Xanthomonas citri subsp. citri: host interaction and control strategies. Trop. Plant Pathol. 45: 213-236. DOI: 10.1007/s40858-020-00376-3

Sendín LN, Filippone MP, Orce IG, Rigano L, Enrique R, Peña L, Vojnov AA, Marano MR, Castagnaro AP (2011). Transient expression of pepper Bs2 gene in Citrus limon as an approach to evaluate its utility for management of citrus canker disease. Plant Pathol. 61: 648-657. DOI: 10.1111/j.1365-3059.2011.02558.x

Teper D, Xu J, Li J, Wang N (2020). The immunity of Meiwa kumquat against Xanthomonas citri is associated with a known susceptibility gene induced by a transcription activator-like effector. PLoS Pathog. 16: e1008886. DOI: 10.1371/journal.ppat.1008886

plant/citrus.txt · Last modified: 2023/07/05 15:55 by rkoebnik