- -

Resistance to 'Candidatus Liberibacter asiaticus,' the Huanglongbing Associated Bacterium, in Sexually and/or Graft-Compatible Citrus Relatives

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Resistance to 'Candidatus Liberibacter asiaticus,' the Huanglongbing Associated Bacterium, in Sexually and/or Graft-Compatible Citrus Relatives

Mostrar el registro completo del ítem

Alves, MN.; Lopes, SA.; Raiol-Junior, LL.; Wulff, NA.; Girardi, EA.; Ollitrault, P.; Peña Garcia, L. (2021). Resistance to 'Candidatus Liberibacter asiaticus,' the Huanglongbing Associated Bacterium, in Sexually and/or Graft-Compatible Citrus Relatives. Frontiers in Plant Science. 11:1-16. https://doi.org/10.3389/fpls.2020.617664

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/169742

Ficheros en el ítem

Metadatos del ítem

Título: Resistance to 'Candidatus Liberibacter asiaticus,' the Huanglongbing Associated Bacterium, in Sexually and/or Graft-Compatible Citrus Relatives
Autor: Alves, Monica N. Lopes, Silvio A. Raiol-Junior, Laudecir L. Wulff, Nelson A. Girardi, Eduardo A. Ollitrault, Patrick PEÑA GARCIA, LEANDRO
Entidad UPV: Universitat Politècnica de València. Instituto Universitario Mixto de Biología Molecular y Celular de Plantas - Institut Universitari Mixt de Biologia Molecular i Cel·lular de Plantes
Fecha difusión:
Resumen:
[EN] Huanglongbing (HLB) is the most destructive, yet incurable disease of citrus. Finding sources of genetic resistance to HLB-associated 'Candidatus Liberibacter asiaticus' (Las) becomes strategic to warrant crop ...[+]
Palabras clave: HLB , Greening , Rutaceae , Citrus breeding , Aurantioideae , Microcitrus , Eremocitrus
Derechos de uso: Reconocimiento (by)
Fuente:
Frontiers in Plant Science. (eissn: 1664-462X )
DOI: 10.3389/fpls.2020.617664
Editorial:
Frontiers Media SA
Versión del editor: https://doi.org/10.3389/fpls.2020.617664
Código del Proyecto:
info:eu-repo/grantAgreement/EC/H2020/817526/EU/PREVENTING HLB EPIDEMICS FOR ENSURING CITRUS SURVIVAL IN EUROPE/
info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-104569RB-I00/ES/MEJORA GENETICA DE PORTAINJERTOS CITRICOS PARA GENERAR RESISTENCIA A VIEJAS Y NUEVAS ENFERMEDADES EMERGENTES/
Agradecimientos:
This work was funded by Fundecitrus, grant no. 817526 from the European Union H2020 Innovation Action Program and project PID2019-104569RB-I00 from the AEI-Spain.
Tipo: Artículo

References

Albrecht, U., & Bowman, K. D. (2012). Tolerance of trifoliate citrus rootstock hybrids to Candidatus Liberibacter asiaticus. Scientia Horticulturae, 147, 71-80. doi:10.1016/j.scienta.2012.08.036

Bassanezi, R. B., Lopes, S. A., de Miranda, M. P., Wulff, N. A., Volpe, H. X. L., & Ayres, A. J. (2020). Overview of citrus huanglongbing spread and management strategies in Brazil. Tropical Plant Pathology, 45(3), 251-264. doi:10.1007/s40858-020-00343-y

Bayer, R. J., Mabberley, D. J., Morton, C., Miller, C. H., Sharma, I. K., Pfeil, B. E., … Sykes, S. (2009). A molecular phylogeny of the orange subfamily(Rutaceae: Aurantioideae) using nine cpDNA sequences. American Journal of Botany, 96(3), 668-685. doi:10.3732/ajb.0800341 [+]
Albrecht, U., & Bowman, K. D. (2012). Tolerance of trifoliate citrus rootstock hybrids to Candidatus Liberibacter asiaticus. Scientia Horticulturae, 147, 71-80. doi:10.1016/j.scienta.2012.08.036

Bassanezi, R. B., Lopes, S. A., de Miranda, M. P., Wulff, N. A., Volpe, H. X. L., & Ayres, A. J. (2020). Overview of citrus huanglongbing spread and management strategies in Brazil. Tropical Plant Pathology, 45(3), 251-264. doi:10.1007/s40858-020-00343-y

Bayer, R. J., Mabberley, D. J., Morton, C., Miller, C. H., Sharma, I. K., Pfeil, B. E., … Sykes, S. (2009). A molecular phylogeny of the orange subfamily(Rutaceae: Aurantioideae) using nine cpDNA sequences. American Journal of Botany, 96(3), 668-685. doi:10.3732/ajb.0800341

Bowman, K. D., Faulkner, L., & Kesinger, M. (2016). New Citrus Rootstocks Released by USDA 2001–2010: Field Performance and Nursery Characteristics. HortScience, 51(10), 1208-1214. doi:10.21273/hortsci10970-16

Carbonell-Caballero, J., Alonso, R., Ibañez, V., Terol, J., Talon, M., & Dopazo, J. (2015). A Phylogenetic Analysis of 34 Chloroplast Genomes Elucidates the Relationships between Wild and Domestic Species within the GenusCitrus. Molecular Biology and Evolution, 32(8), 2015-2035. doi:10.1093/molbev/msv082

Cifuentes-Arenas, J. C., Beattie, G. A. C., Peña, L., & Lopes, S. A. (2019). Murraya paniculata and Swinglea glutinosa as Short-Term Transient Hosts of ‘Candidatus Liberibacter asiaticus’ and Implications for the Spread of Huanglongbing. Phytopathology®, 109(12), 2064-2073. doi:10.1094/phyto-06-19-0216-r

Cifuentes-Arenas, J. C., de Goes, A., de Miranda, M. P., Beattie, G. A. C., & Lopes, S. A. (2018). Citrus flush shoot ontogeny modulates biotic potential of Diaphorina citri. PLOS ONE, 13(1), e0190563. doi:10.1371/journal.pone.0190563

Coletta-Filho, H. D., Targon, M. L. P. N., Takita, M. A., De Negri, J. D., Pompeu, J., Machado, M. A., … Muller, G. W. (2004). First Report of the Causal Agent of Huanglongbing («Candidatus Liberibacter asiaticus») in Brazil. Plant Disease, 88(12), 1382-1382. doi:10.1094/pdis.2004.88.12.1382c

Graca, J. V. (1991). Citrus Greening Disease. Annual Review of Phytopathology, 29(1), 109-136. doi:10.1146/annurev.py.29.090191.000545

Desjardins, P., & Conklin, D. (2010). NanoDrop Microvolume Quantitation of Nucleic Acids. Journal of Visualized Experiments, (-1). doi:10.3791/2565

Fanciullino, A.-L., Gancel, A.-L., Froelicher, Y., Luro, F., Ollitrault, P., & Brillouet, J.-M. (2005). Effects of Nucleo-cytoplasmic Interactions on Leaf Volatile Compounds from Citrus Somatic Diploid Hybrids. Journal of Agricultural and Food Chemistry, 53(11), 4517-4523. doi:10.1021/jf0502855

Fang, D. Q., Roose, M. L., Krueger, R. R., & Federici, C. T. (1997). Fingerprinting trifoliate orange germ plasm accessions with isozymes, RFLPs, and inter-simple sequence repeat markers. Theoretical and Applied Genetics, 95(1-2), 211-219. doi:10.1007/s001220050550

Felisberto, P. A., Girardi, E. A., Peña, L., Felisberto, G., Beattie, G. A., & Lopes, S. A. (2019). Unsuitability of indigenous South American Rutaceae as potential hosts of Diaphorina citri. Pest Management Science, 75(7), 1911-1920. doi:10.1002/ps.5304

Folimonova, S. Y., Robertson, C. J., Garnsey, S. M., Gowda, S., & Dawson, W. O. (2009). Examination of the Responses of Different Genotypes of Citrus to Huanglongbing (Citrus Greening) Under Different Conditions. Phytopathology®, 99(12), 1346-1354. doi:10.1094/phyto-99-12-1346

FROELICHER, Y., DAMBIER, D., BASSENE, J. B., COSTANTINO, G., LOTFY, S., DIDOUT, C., … OLLITRAULT, P. (2008). Characterization of microsatellite markers in mandarin orange (Citrus reticulata Blanco). Molecular Ecology Resources, 8(1), 119-122. doi:10.1111/j.1471-8286.2007.01893.x

Garcia-Lor, A., Curk, F., Snoussi-Trifa, H., Morillon, R., Ancillo, G., Luro, F., … Ollitrault, P. (2012). A nuclear phylogenetic analysis: SNPs, indels and SSRs deliver new insights into the relationships in the ‘true citrus fruit trees’ group (Citrinae, Rutaceae) and the origin of cultivated species. Annals of Botany, 111(1), 1-19. doi:10.1093/aob/mcs227

Gasparoto, M. C. G., Coletta-Filho, H. D., Bassanezi, R. B., Lopes, S. A., Lourenço, S. A., & Amorim, L. (2012). Influence of temperature on infection and establishment of ‘Candidatus Liberibacter americanus’ and ‘Candidatus Liberibacter asiaticus’ in citrus plants. Plant Pathology, 61(4), 658-664. doi:10.1111/j.1365-3059.2011.02569.x

Gottwald, T. R. (1989). Preliminary Analysis of Citrus Greening (Huanglungbin) Epidemics in the People’s Republic of China and French Reunion Island. Phytopathology, 79(6), 687. doi:10.1094/phyto-79-687

Gottwald, T. R., Graça, J. V. da, & Bassanezi, R. B. (2007). Citrus Huanglongbing: The Pathogen and Its Impact. Plant Health Progress, 8(1), 31. doi:10.1094/php-2007-0906-01-rv

Hall, D. G., Albrecht, U., & Bowman, K. D. (2016). Transmission Rates of ‘Ca.Liberibacter asiaticus’ by Asian Citrus Psyllid Are Enhanced by the Presence and Developmental Stage of Citrus Flush. Journal of Economic Entomology, 109(2), 558-563. doi:10.1093/jee/tow009

Hall, D. G., George, J., & Lapointe, S. L. (2015). Further investigations on colonization of Poncirus trifoliata by the Asian citrus psyllid. Crop Protection, 72, 112-118. doi:10.1016/j.cropro.2015.03.010

Hall, D. G., Hentz, M. G., & Stover, E. (2017). Field Survey of Asian Citrus Psyllid (Hemiptera: Liviidae) Infestations Associated with Six Cultivars ofPoncirus trifoliata(Rutaceae). Florida Entomologist, 100(3), 667-668. doi:10.1653/024.100.0328

Hall, D. G., Ramadugu, C., Hentz, M. G., Gmitter, F. G., & Stover, E. (2019). Survey of Poncirus trifoliata Hybrids for Resistance to Colonization by Asian Citrus Psyllid. Florida Entomologist, 102(3), 635. doi:10.1653/024.102.0339

Hall, D. G., Wenninger, E. J., & Hentz, M. G. (2011). Temperature Studies with the Asian Citrus Psyllid,Diaphorina citri: Cold Hardiness and Temperature Thresholds for Oviposition. Journal of Insect Science, 11(83), 1-15. doi:10.1673/031.011.8301

Hilf, M. E., & Luo, W. (2018). Dynamics of ‘Candidatus Liberibacter asiaticus’ Colonization of New Growth of Citrus. Phytopathology®, 108(10), 1165-1171. doi:10.1094/phyto-12-17-0408-r

Hung, T.-H., Wu, M.-L., & Su, H.-J. (2001). European Journal of Plant Pathology, 107(2), 183-189. doi:10.1023/a:1011283906502

Johnson, E. G., Wu, J., Bright, D. B., & Graham, J. H. (2013). Association of ‘CandidatusLiberibacter asiaticus’ root infection, but not phloem plugging with root loss on huanglongbing-affected trees prior to appearance of foliar symptoms. Plant Pathology, 63(2), 290-298. doi:10.1111/ppa.12109

Kimura, M. (1980). A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. Journal of Molecular Evolution, 16(2), 111-120. doi:10.1007/bf01731581

Li, W., Levy, L., & Hartung, J. S. (2009). Quantitative Distribution of ‘Candidatus Liberibacter asiaticus’ in Citrus Plants with Citrus Huanglongbing. Phytopathology®, 99(2), 139-144. doi:10.1094/phyto-99-2-0139

Li, W., Hartung, J. S., & Levy, L. (2006). Quantitative real-time PCR for detection and identification of Candidatus Liberibacter species associated with citrus huanglongbing. Journal of Microbiological Methods, 66(1), 104-115. doi:10.1016/j.mimet.2005.10.018

Lopes, S. A., Frare, G. F., Bertolini, E., Cambra, M., Fernandes, N. G., Ayres, A. J., … Bové, J. M. (2009). Liberibacters Associated with Citrus Huanglongbing in Brazil: ‘Candidatus Liberibacter asiaticus’ Is Heat Tolerant, ‘Ca. L. americanus’ Is Heat Sensitive. Plant Disease, 93(3), 257-262. doi:10.1094/pdis-93-3-0257

Lopes, S. A., Luiz, F. Q. B. F., Martins, E. C., Fassini, C. G., Sousa, M. C., Barbosa, J. C., & Beattie, G. A. C. (2013). ‘Candidatus Liberibacter asiaticus’ Titers in Citrus and Acquisition Rates by Diaphorina citri Are Decreased by Higher Temperature. Plant Disease, 97(12), 1563-1570. doi:10.1094/pdis-11-12-1031-re

Luro, F. L., Costantino, G., Terol, J., Argout, X., Allario, T., Wincker, P., … Morillon, R. (2008). Transferability of the EST-SSRs developed on Nules clementine (Citrus clementina Hort ex Tan) to other Citrus species and their effectiveness for genetic mapping. BMC Genomics, 9(1), 287. doi:10.1186/1471-2164-9-287

Mabberley, D. J. (2004). Citrus (Rutaceae): A Review of Recent Advances in Etymology, Systematics and Medical Applications. Blumea - Biodiversity, Evolution and Biogeography of Plants, 49(2), 481-498. doi:10.3767/000651904x484432

Miles, G. P., Stover, E., Ramadugu, C., Keremane, M. L., & Lee, R. F. (2017). Apparent Tolerance to Huanglongbing in Citrus and Citrus-related Germplasm. HortScience, 52(1), 31-39. doi:10.21273/hortsci11374-16

Murray, M. G., & Thompson, W. F. (1980). Rapid isolation of high molecular weight plant DNA. Nucleic Acids Research, 8(19), 4321-4326. doi:10.1093/nar/8.19.4321

Nagano, Y., Mimura, T., Kotoda, N., Matsumoto, R., Nagano, A. J., Honjo, M. N., … Yamamoto, M. (2018). Phylogenetic relationships of Aurantioideae (Rutaceae) based on RAD-Seq. Tree Genetics & Genomes, 14(1). doi:10.1007/s11295-017-1223-z

Ollitrault, P., Curk, F., & Krueger, R. (2020). Citrus taxonomy. The Genus Citrus, 57-81. doi:10.1016/b978-0-12-812163-4.00004-8

Parra, J. R. P., Alves, G. R., Diniz, A. J. F., & Vieira, J. M. (2016). Tamarixia radiata(Hymenoptera: Eulophidae) ×Diaphorina citri(Hemiptera: Liviidae): Mass Rearing and Potential Use of the Parasitoid in Brazil. Journal of Integrated Pest Management, 7(1), 5. doi:10.1093/jipm/pmw003

Patt, J. M., & Sétamou, M. (2010). Responses of the Asian Citrus Psyllid to Volatiles Emitted by the Flushing Shoots of Its Rutaceous Host Plants. Environmental Entomology, 39(2), 618-624. doi:10.1603/en09216

Pfeil, B. E., & Crisp, M. D. (2008). The age and biogeography of Citrus and the orange subfamily (Rutaceae: Aurantioideae) in Australasia and New Caledonia. American Journal of Botany, 95(12), 1621-1631. doi:10.3732/ajb.0800214

Raiol-Junior, L. L., Cifuentes-Arenas, J. C., de Carvalho, E. V., Girardi, E. A., & Lopes, S. A. (2021). Evidence That ‘Candidatus Liberibacter asiaticus’ Moves Predominantly Toward New Tissue Growth in Citrus Plants. Plant Disease, 105(1), 34-42. doi:10.1094/pdis-01-20-0158-re

Ramadugu, C., Keremane, M. L., Halbert, S. E., Duan, Y. P., Roose, M. L., Stover, E., & Lee, R. F. (2016). Long-Term Field Evaluation Reveals Huanglongbing Resistance in Citrus Relatives. Plant Disease, 100(9), 1858-1869. doi:10.1094/pdis-03-16-0271-re

Richardson, M. L., & Hall, D. G. (2013). Resistance of Poncirus and Citrus × Poncirus Germplasm to the Asian Citrus Psyllid. Crop Science, 53(1), 183-188. doi:10.2135/cropsci2012.02.0091

SHAPIRO, S. S., & WILK, M. B. (1965). An analysis of variance test for normality (complete samples). Biometrika, 52(3-4), 591-611. doi:10.1093/biomet/52.3-4.591

Shokrollah. (2009). Differential Reaction of Citrus Species in Malaysia to Huanglongbing (HLB) Disease using Grafting Method. American Journal of Agricultural and Biological Sciences, 4(1), 32-38. doi:10.3844/ajabssp.2009.32.38

Toni J. Siebert, Tracy L. Kahn, & Robert R. Krueger. (2015). OBSERVATIONS OF GRAFT COMPATIBILITY BETWEEN CITRUS SPP. AND RELATED AURANTIOIDEAE TAXA. Acta Horticulturae, (1065), 173-179. doi:10.17660/actahortic.2015.1065.17

Tatineni, S., Sagaram, U. S., Gowda, S., Robertson, C. J., Dawson, W. O., Iwanami, T., & Wang, N. (2008). In Planta Distribution of ‘Candidatus Liberibacter asiaticus’ as Revealed by Polymerase Chain Reaction (PCR) and Real-Time PCR. Phytopathology®, 98(5), 592-599. doi:10.1094/phyto-98-5-0592

Do Carmo Teixeira, D., Luc Danet, J., Eveillard, S., Cristina Martins, E., Cintra de Jesus Junior, W., Takao Yamamoto, P., … Bové, J. M. (2005). Citrus huanglongbing in São Paulo State, Brazil: PCR detection of the ‘Candidatus’ Liberibacter species associated with the disease. Molecular and Cellular Probes, 19(3), 173-179. doi:10.1016/j.mcp.2004.11.002

Wenninger, E. J., Stelinski, L. L., & Hall, D. G. (2009). Roles of Olfactory Cues, Visual Cues, and Mating Status in Orientation of <I>Diaphorina citri</I> Kuwayama (Hemiptera: Psyllidae) to Four Different Host Plants. Environmental Entomology, 38(1), 225-234. doi:10.1603/022.038.0128

Westbrook, C. J., Hall, D. G., Stover, E., Duan, Y. P., & Lee, R. F. (2011). Colonization of Citrus and Citrus-related Germplasm by Diaphorina citri (Hemiptera: Psyllidae). HortScience, 46(7), 997-1005. doi:10.21273/hortsci.46.7.997

Wu, G. A., Terol, J., Ibanez, V., López-García, A., Pérez-Román, E., Borredá, C., … Talon, M. (2018). Genomics of the origin and evolution of Citrus. Nature, 554(7692), 311-316. doi:10.1038/nature25447

Yoshida, T. (1996). Graft Compatibility ofCitruswith Plants in thesAurantioideaeand Their Susceptibility to Citrus Tristeza Virus. Plant Disease, 80(4), 414. doi:10.1094/pd-80-0414

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem