In Vitro Evaluation of the Development of Fusarium in Vanilla Accessions
Abstract
:1. Introduction
2. Materials and Methods
2.1. Vanilla Material Multiplied In Vitro
2.2. Characterization of Fungal Endophytes in Vanilla Accessions Multiplied In Vitro
2.3. Reactivation, Obtaining of Monosporic Cultures, and Identification of Fungal Isolates
2.4. Inoculation of Fusarium Isolates in In Vitro Multiplied Vanilla Accessions
2.5. Evaluation of the Development of Symptoms in Vanilla Accessions Multiplied In Vitro
2.6. Statistical Data Analysis
3. Results
3.1. Community of Fungal Endophytes in Vanilla Accessions Multiplied In Vitro
3.2. Identification of Fungal Isolates
3.3. Evaluation of Fusarium Wilt in Vanilla Accessions Multiplied In Vitro
3.4. Description of Symptoms Induced by Isolates of Fusarium spp. In Vitro Vanilla Accessions
3.5. Re-Isolation of Fusarium spp. Isolates Following Koch’s Postulates
3.6. Evaluation of the Development of Fusarium Wilt in Vanilla Accessions In Vitro
4. Discussion
4.1. Community of Fungal Endophytes in Vanilla Accessions Multiplied In Vitro
4.2. Identification of Fungal Isolates
4.3. Symptoms Induced by Fusarium spp. Isolates in Vanilla Accessions In Vitro
4.4. Re-Isolation of Isolates of Fusarium spp. Inoculated in Vanilla Accessions In Vitro
4.5. Evaluation of Symptoms Development and Description of Fusarium Wilt in Vanilla Accessions In Vitro
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Flanagan, N.S.; Chavarriaga, P.; Mosquera-Espinosa, A.T. Conservation and sustainable use of Vanilla crop wild relatives in Colombia. In Handbook of Vanilla Science and Technology; Havkin-Frenkel, D., Belanger, F.C., Eds.; Wiley-Blackwell Publishing: Oxford, UK, 2019; pp. 85–110. [Google Scholar]
- Soto, M.; Cribb, P. A new infrageneric classification and synopsis of the genus Vanilla Plum. ex mill. (Orchidaceae: Vanillinae). Lankesteriana 2010, 9, 355–398. [Google Scholar]
- Koyyappurath, S.; Conéjero, G.; Dijoux, J.; LApeyre-Montés, F.; Jade, K.; Chiroleu, F.; Verdeil, J.; Besse, P.; Grisoni, M. Differential responses of Vanilla Accessions to Root Rot and Colonization by Fusarium oxysporum f. sp. radicis-vanillae. Front. Plant Sci. 2015, 6, 1125. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Cardona, C.S.; Marín Montoya, M.; Díez, M.C. Identificación del agente causal de la pudrición basal del tallo de vainilla en cultivos bajo cobertizos en Colombia. Rev. Mex. Micol. 2012, 35, 23–34. [Google Scholar]
- Cid-Pérez, T.S.; López-Malo, A. Extractos de vainilla: Una mezcla de componentes químicos de aroma y sabor. TSIA 2011, 5, 51–63. [Google Scholar]
- Ramírez-Mosqueda, M.A.; Iglesias-Andreu, L.G.; da Silva, J.A.T.; Luna-Rodríguez, M.; Noa-Carrazana, J.C.; Bautista-Aguilar, J.R.; Leyva Ovalle, O.R.; Murguía-González, J. In vitro selection of vanilla plants resistant to Fusarium oxysporum f. sp. vanillae. Acta Physiol. Plant 2019, 41, 1–8. [Google Scholar] [CrossRef]
- Xiong, W.; Li, R.; Ren, Y.; Liu, C.; Zhao, Q.; Wu, H.; Jousset, A.; Shen, Q. Distinct roles for soil fungal and bacterial communities associated with the suppression of vanilla Fusarium wilt disease. Soil Biol. Biochem. 2017, 107, 198–207. [Google Scholar] [CrossRef]
- Flanagan, N.S.; Mosquera-Espinosa, A.T. An Integrated strategy for the conservation and sustainable use of native Vanilla species in Colombia. Lankesteriana 2016, 16, 201–218. [Google Scholar] [CrossRef] [Green Version]
- Azofeifa-Bolaños, J.B.; Paniagua-Vásquez, A.; García-García, J.A. Importancia y desafíos de la conservación de Vanilla spp. (Orquidaceae) en Costa Rica. Agron Mesoam 2014, 25, 189–202. [Google Scholar] [CrossRef] [Green Version]
- Bory, S.; Lubinsky, P.; Risterucci, A.M.; Noyer, J.L.; Grisoni, M.; Duval, M.F.; Besse, P. Patterns of introduction and diversification of Vanilla planifolia (Orchidaceae) in Reunion Island (Indian Ocean). Am. J. Bot. 2008, 95, 805–815. [Google Scholar] [CrossRef] [Green Version]
- Hernández-Hernández, J. Vanilla Diseases. In Handbook of Vanilla Science and Technology, 2nd ed.; Havkin-Frenkel, D., Belanger, F.C., Eds.; Wiley-Blackwell Publishing: Oxford, UK, 2019; pp. 27–29. [Google Scholar]
- Pinaria, A.G.; Liew, E.C.Y.; Busgess, L.W. Fusarium species associated with Vanilla stem rot in Indonesia. Australas. Plant Pathol. 2010, 39, 176–183. [Google Scholar] [CrossRef]
- Koyyappurath, S.; Atuahiva, T.; Le Guen, R.; Batina, H.; Le Squin, S.; Gautheron, N.; Edel Hermann, V.; Peribe, J.; Jahiel, M.; Steinberg, C.; et al. Fusarium oxysporum f. sp. radicis-vanillae is the causal agent of root and stem rot of Vanilla. Plant Pathol. 2016, 65, 612–625. [Google Scholar] [CrossRef]
- Ploetz, R.C. Fusarium-Induced Diseases of Tropical, Perennial Crops. Phytopathology 2006, 96, 648–652. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Tucker, C.M. Vanilla root rot. J. Agric. Res. 1927, 35, 1121–1136. [Google Scholar]
- Alconero, R.; Santiago, A.G. Fusarium pathogenic to Vanilla. Plant Dis. Rep. 1969, 53, 854–857. [Google Scholar]
- Bhai, R.S.; Dhanesh, J. Occurrence of fungal diseases in Vanilla (Vanilla planifolia Andrews) in Kerala. JOSAC 2008, 17, 140–148. [Google Scholar]
- Pickova, D.; Ostry, V.; Malir, J.; Toman, J.; Malir, F. A review on mycotoxins and microfungi in spices in the light of the last five years. Toxins 2020, 12, 789. [Google Scholar] [CrossRef]
- Divakaran, M.; Babu, K.N.; Peter, K.V. Conservation of Vanilla species, in vitro. Sci. Hortic. 2006, 110, 175–180. [Google Scholar] [CrossRef]
- Bayman, P. Fungal Endophytes. Environ. Microb. Relatsh. 2007, 4, 213. [Google Scholar]
- Porras, A.; Bayman, P. Hidden Fungi, Emergent Properties: Endophytes and Microbiomes. Annu. Rev. Phytopathol. 2011, 49, 291–315. [Google Scholar] [CrossRef] [Green Version]
- Ordoñez, C.N.F.; Otero, J.T.; Diez, G.M.C. Hongos endófitos de orquídeas y su efecto sobre el crecimiento sobre Vanilla planifolia Andrews. Acta Agronómica 2013, 61, 259–266. [Google Scholar]
- Manosalva, L.; Mosquera-Espinosa, A.T. Diagnóstico de hongos patógenos en el cultivo de uchuva (Physalis peruviana L.) y la evaluación in vitro de algunos hongos con actividad biocontroladora. Fitopatol. Colomb. 2014, 38, 1–7. [Google Scholar]
- Bedoya-Moreno, A. Aislamiento e Identificación de Poblaciones Fungosas en Tejido de Especies del Género Vanilla. Tesis pregrado, Carrera de Biología, PontificiaUniversidad Javeriana Cali, Cali, Colombia, 2020. [Google Scholar]
- Mroginski, L.; Sansberro, P.; Flaschland, E. Biotecnología y mejoramiento vegetal II; Levitus, G., Echenique, V., Rubinstein, C., Hopp, E., Mroginski, L., Eds.; Instituto Nacional de Tecnología Agropecuaria: Buenos Aires, Argentina, 2010; pp. 17–25. [Google Scholar]
- Roca, W.; Beltrán, J. El Cultivo de Meristemas para la Conservación de Germoplasma de Yuca in vitro; Centro Internacional de Agricultura Tropical: Palmira, Colombia, 1983; p. 45. [Google Scholar]
- Chambers, A.H. Vanilla (Vanilla spp.) Breeding. In Advances in Plant Breeding Strategies: Industrial and Food Crops; Al-Khayri, J., Jain, S., Johnson, D., Eds.; Springer: Cham, Switzerland, 2019; pp. 707–734. [Google Scholar] [CrossRef]
- Mosquera-Espinosa, A.T.; Bayman, P.; Otero, J.T. Ceratobasidium como hongo micorrízico de orquídeas en Colombia. Acta Agron. 2010, 59, 316–326. [Google Scholar]
- Gilchrist Saavedra, L.G.; Fuentes Dávila, C.; Martínez Cano, R.M.; López Atilano, E.; Duveiller, R.P.; Singh, M.; Henry, I.; García, A. Guía Práctica para la Identificación de Algunas Enfermedades de Trigo y Cebada, 2nd ed.; CIMMYT: México, México, 2005. [Google Scholar]
- Lee, S.B.; Taylor, J.W. Isolation of DNA from fungal mycelia and single spore. In PCR protocols: A Guide to Methods and Applications; Innis, M.A., Gelfand, D.H., Sninsky, J.J., White, J., Eds.; Academic Press: San Diego, CA, USA, 1990; pp. 282–287. [Google Scholar]
- White, T.J.; Bruns, T.; Lee, S.; y Taylor, J.W. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In PCR Protocols: A Guide to Methods and Applications; Innis, M.A., Gelfand, D.H., Sninsky, J.J., White, J., Eds.; Academic Press: San Diego, CA, USA, 1990; pp. 315–322. Available online: http://www.ncbi.nlm.nih.gov (accessed on 18 April 2020).
- Hall, T.A. BioEdit: A User-Friendly Biological Sequence Alignment Editor and Analysis Program for Windows 95/98/NT. Nucleic Acids Symp. Ser. 1999, 41, 95–98. [Google Scholar]
- Adame-García, J.; Rodríguez-Guerra, R.; Iglesias-Andreu, L.G.; Ramos-Prado, J.M.; Luna-Rodríguez, M. Molecular identification and pathogenic variation of Fusarium species isolated from Vanilla planifolia in Papantla México. Bot. Sci. 2015, 93, 669–678. [Google Scholar] [CrossRef] [Green Version]
- Tamura, K.; Stecher, G.; Peterson, D.; Filipski, A.; Kumar, S. MEGA6: Molecular Evolutionary Genetics Analysis Version 6.0. Mol. Biol. Evol. 2013, 30, 2725–2729. [Google Scholar] [CrossRef] [Green Version]
- Keane, T.; Creevey, C.; Pentony, M.; Naughton, T.; McInerney, J. Assessment of methods for amino acid matrix selection and their use on empirical data shows that ad hoc assumptions for choice of matrix are not justified. BMC Evol. Biol. 2006, 6, 29. [Google Scholar] [CrossRef] [Green Version]
- Agrios, G.N. Fitopatología, 2nd ed.; Limusa, S.A., Ed.; Traducción de Plant Pathology; Limusa: Ciudad de México, México, 2002; p. 830. [Google Scholar]
- Legendre, P. Anova. 2 Way. R: Two-way crossed-factor ANOVA with permutation tests (balanced design): Models I, II, and III. 2007. [Google Scholar]
- Alam, I.; Akhtar, S.; Kamrun, M.; Jahangir, M.; Anisuzzaman, M.; Firoz, M. Elimination and detection of viruses in meristem-derived plantlets of sweetpotato as a low-cost option toward commercialization. Biotech 2013, 3, 153–164. [Google Scholar] [CrossRef] [Green Version]
- Niubó, E.; Díaz, P.; Oliva, O.; Portieles, R.; Díaz, A.; Ancheta, O.; Rodríguez, S.; Soto, A.; Sánchez, C. Metodología para la obtención in vitro de plantas y tejidos de la caña de azúcar libres de contaminantes exófitos y endófitos. RCCB 2004, 35, 155–161. [Google Scholar]
- Izquierdo-García, L.F. Interacciones Microbianas en un Consorcio de Trichoderma virens y Bacillus velezensis con Actividad Biocontroladora en el Patosistema Fusarium oxysporum f. sp. physali-uchuva. Doctoral dissertation, Universidad Nacional de Colombia, Bogotá, Colombia, 2019. Available online: http://bdigital.unal.edu.co/71412/1/TesisMSc-LFIGUREpdf (accessed on 27 June 2020).
- Mis-Mut, M.D.R.; Cristóbal-Alejo, J.; Tun-Suárez, J.M.; Reyes-Ramírez, A.; Moo-Koh, F.A. Identificación molecular de dos cepas de Trichoderma y su actividad in vitro antagónica contra Fusarium spp. Revista Protección Vegetal 2015, 30, 69. [Google Scholar]
- Peeran, M.F.; Muthalagu, A.; Sarathambal, C. Morphological and Molecular Characterization of Fusarium oxysporum f.sp. Vanilla Inciting Root and Stem Rot Disease in Vanilla. Int. J. Curr. Microbiol. Appl. Sci. 2019, 8, 1578–1590. [Google Scholar] [CrossRef]
- Tombe, M.; Liew, E. Fungal diseases of vanilla. In Vanilla; Odoux, E., Grisoni, M., Eds.; CRC Press Taylor & Francis Group: Boca Raton, FL, USA, 2010; pp. 125–137. [Google Scholar]
- Rentería-Martínez, M.E.; Guerra-Camacho, M.Á.; Ochoa-Meza, A.; Moreno-Salazar, S.F.; Meza-Moller, A.D.C.; Guzmán-Ortiz, J.M. Descripción y comparación entre morfotipos de Fusarium brachygibbosum, F. falciforme y F. oxysporum patogénicos en sandía cultivada en Sonora, México. Rev. Mex. Fitopatol. 2018, 37, 16–34. [Google Scholar] [CrossRef]
- Robles, A.; Leiva, M.; Herrera, L.; Sánchez, A.; Torres, R. Morphological and molecular identification of Fusarium species associated with vascular wilt of babaco (Vasconcellea heilbornii var. pentagona Badillo). Rev. Protección Veg. 2016, 31, 184–193. [Google Scholar]
- Martínez-Fernández, E.; Martínez-Jaimes, P.; Guillén Sánchez, D.; Peña-Chora, G.; Hernández-Hernández, V.M. Diversidad de Fusarium en las raíces de caña de azúcar (Saccharum officinarum) en el estado de Morelos, México. Rev. Mex. Micol. 2015, 42, 33–43. [Google Scholar]
Code | Fungus Species | Characteristics of Colony | Tissue | Accession Number in GenBank |
---|---|---|---|---|
1Fov | F. oxysporum f. sp. vanillae | Purple tonality, cottony mycelium | Leaf | OP035624 |
2Fov | F. oxysporum f. sp. vanillae | Purple-violaceous tonality, creeping mycelium | Root | OP035625 |
3Fs | F. solani | White hue with yellow areas, cottony mycelium | Root | OP035626 |
Fusarium Isolates | Vanilla Accessions | ||||||
---|---|---|---|---|---|---|---|
Comparison | Stat | p Value | p Adjust | Comparison | Stat | p Value | p Adjust |
Control−1Fov | 0–12.85 | 8.82 × 10−38 | 2.646 × 10−37 | NSF021-NSF023 | 0–0.5231 | 0.6009 | 0.7172 |
Control−2Fov | 0–12.35 | 4.89 × 10−35 | 9.784 × 10−35 | NSF021-NSF059 × NSF073 | 0–0.9097 | 0.363 | 0.5445 |
Control−3Fs | 0–10.4 | 2.542 × 10−22 | 3.813 × 10−25 | NSF021-NSF092 | 0–2.185 | 0.02889 | 0.1733 |
1Fov−2Fov | 0–3.316 | 0.0009141 | 9.141 × 10−4 | NSF023-NSF059 × NSF073 | 0–0.3623 | 0.7172 | 0.7172 |
1Fov−3Fs | 0.958 | 0 | 0.000 × 10e | NSF023-NSF092 | 0–1.608 | 0.1078 | 0.3234 |
2Fov−3Fs | 0 8.264 | 2.22 × 10−16 | 2.664 × 10−16 | NSF059 × NSF073-NSF092 | 0–1.278 | 0.2013 | 0.4026 |
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Mosquera-Espinosa, A.T.; Bonilla-Monar, A.; Flanagan, N.S.; Rivas, Á.; Sánchez, F.; Chavarriaga, P.; Bedoya, A.; Riascos-Ortiz, D. In Vitro Evaluation of the Development of Fusarium in Vanilla Accessions. Agronomy 2022, 12, 2831. https://doi.org/10.3390/agronomy12112831
Mosquera-Espinosa AT, Bonilla-Monar A, Flanagan NS, Rivas Á, Sánchez F, Chavarriaga P, Bedoya A, Riascos-Ortiz D. In Vitro Evaluation of the Development of Fusarium in Vanilla Accessions. Agronomy. 2022; 12(11):2831. https://doi.org/10.3390/agronomy12112831
Chicago/Turabian StyleMosquera-Espinosa, Ana T., Andrea Bonilla-Monar, Nicola S. Flanagan, Álvaro Rivas, Francisco Sánchez, Paul Chavarriaga, Alejandra Bedoya, and Donald Riascos-Ortiz. 2022. "In Vitro Evaluation of the Development of Fusarium in Vanilla Accessions" Agronomy 12, no. 11: 2831. https://doi.org/10.3390/agronomy12112831
APA StyleMosquera-Espinosa, A. T., Bonilla-Monar, A., Flanagan, N. S., Rivas, Á., Sánchez, F., Chavarriaga, P., Bedoya, A., & Riascos-Ortiz, D. (2022). In Vitro Evaluation of the Development of Fusarium in Vanilla Accessions. Agronomy, 12(11), 2831. https://doi.org/10.3390/agronomy12112831