Pathogens causing root rot in soursop (Annona muricata L.), in Nayarit, Mexico

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DOI:

https://doi.org/10.19136/era.a11n2.3672

Keywords:

Isolation, disease, identification, necrosis, pathogenicity

Abstract

In commercial soursop orchards in the state of Nayarit, Mexico, trees with apparent symptoms of root rot are observed, without the causal agent being known. Therefore, the objective of the research was to identify the fungi that cause soursop root rot. From January 2020 to January 2021, in orchards of Compostela and San Blas, Nayarit, from two trees with symptoms of possible root rot, root sections with rot were collected. Microorganisms associated with the disease were isolated and identified to carry out pathogenicity tests in one-year-old soursop trees. Fusarium falciforme and Lasiodiplodia theobromae were identified as root pathogens, both fungi are reported for the first time in this fruit tree and for Mexico.

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References

Auger J, Pérez I, Esterio M (2015) Ocurrence of root tor disease of Cherimoya (Annona cherimola Mill.) caused by Dactylonectria macrodidyma in Chile. Plant Disease 99(9). https://doi.org/10.1094/PDIS-03-15-0257-PDN

Almaraz SA, Alvarado RD, Leyva MG, Equihua MA, Aranda OS, Hernández MJ (2016) Phytophthora cinnamomi Rands. pathogenicity tests in Pseudotsuga mensiezii. Revisa Mexicana de Fitopatología 34(2): 142-157.

Ángel GC, Robledo BJ, Castaño ZJ (2018) Comparación de métodos de inoculación de Fusarium solani f. sp. passiflorae en plántulas de maracuyá (Passiflora edulis f. flavicarpa). Revista U.D.C.A. Actualidad y Divulgación Científica 21(1): 23-31.

Betancourt AA, Cambero CO, Rios VC, Cruz CE, Cambero AC, Luna EG (2019) In vitro evaluation of antagonistic microorganisms and fungicides against Colletotrichum theobromicola Delacr, causal agent of anthracnose on soursop (Annona muricata L.) inflorescences. Revista Bio Ciencias 6: 1-13.

Betancourt AA, Luna EG, Rios VC, López GG, Cambero CO, Cruz CE (2024) Descending death in soursop (Annona muricata L.) caused by Lasiodiplodia theobromae in Nayarit, Mexico. Revista Bio Ciencias 11: 1-14.

Bobadilla CG, Magallón SP, López VM, Palomino HY, Ramírez RJ, Gutiérrez LR, Ibarra CL, Bautista RP (2020) Characterization and proliferation capacity of potentially pathogenic fungi in marine and freshwater fish commercial feeds. Archives of Microbiology 202(9): 2379-2390.

Cambero AC, Luna EG, Rios VC, Díaz HM, Rodríguez PM, Betancourt AA, Cambero CJ (2019) Causal agents of rot in soursop fruit (Annona muricata L.) in Nayarit, Mexico. Revista Bio Ciencias 6: 1-13.

De Oliveira J, Pereira AI, De Andrade G, Silva M, Newman E (2016) First report of Phytophthora nicotianae causing root rot of soursop in Northeastern Brazil. Revista Brasileira de Fruticultura 38(3): 1-5. https://doi.org/10.1590/0100-29452016048

Díaz NJ, Ayvar SS, Mena BA, Baranda CE, Vargas HM, Alvarado GO, Fuente AD (2021) First report of Fusarium falciforme (FSSC 3+4) causing wilt disease of Phaseolus vulgaris in México. Plant Disease 105(3): 710. https://doi.org/10.1094/PDIS-06-20-1160-PDN

Henao HE, Hernández MC, Salazar GC, Velasco BM, Gómez LE (2018) Identificación molecular de aislamientos de Fusarium asociados a maracuyá en el Valle del Cauca, Colombia. Agronomía Mesoamericana 29(1): 1-9.

Herrera PE, Cristóbal AJ, Martínez BM, Hernández AM, López GG (2017) Primer registro de Fusarium solani y F. equiseti en plantaciones de Jatropha curcas en México. Revista Mexicana de Fitopatología 35(1): 150-161.

Huaman CN, Valeriano ZJ, Granados CE (2015) Aislamiento e identificación de Phytophthora cinnamomi Rands en el cultivo de palto variedades Hass y Fuerte. CienciaAgro 1: 57-63.

Khanzada MA, Mubeen LA, Shahzad S (2004) Pathogenicity of Lasiodiplodia theobromae and Fusarium solani on mango. Pakistan Journal of Botany 36(1): 181-189.

Moreira MA, Cedeño MÁ, Canchignia MF, Garcés FF (2021) Lasiodiplodia theobromae (Pat.) Griffon & Maubl [(syn.) Botryodiplodia theobromae Pat] in the cocoa crop: symptoms, biological cycle, and strategies management. Scientia Agropecuaria 12(4): 653-662. http://dx.doi.org/10.17268/sci.agropecu.2021.068

NCBI (2020). National Center for Biotechnology Information. Gen Bank https://www.ncbi.nlm.nih.gov/. Fecha de consulta: 12 de octubre de 2022.

Olalde LG, Raya MY, Apáez BP, Vargas SM, Pedraza SM, Raymundo T, Valenzuela R, Lara CM (2020) Characterization of Fusarium spp., a phytopathogen of avocado (Persea americana Miller var. drymifolia (Schltdl. and Cham.) in Michoacan, Mexico. Revista de la Facultad de Ciencias Agrarias UNCUYO 52(2): 301-316.

Parra CF, García PJ, Aviña MJ, De los Santos VS (2019) First report of Fusarium wilt on Citrus sinensis var. Valencia in the Yaqui Valley, Mexico. Revista Mexicana de Fitopatología 37(1): 193-201.

Picos MP, García ER, León FJ, Sañudo B, Allende M (2015) Lasiodiplodia theobromae en cultivos agrícolas de México: Taxónomia, hosédantes, diversidad y control. Revista Mexicana de Fitopatología 33(1): 54-74.

Reyes TA, Rodríguez AG, Santillán MR, Díaz CM, Fernández PS (2019) Marchitez causada por Fusarium solani en chile chilaca (Capsicum annuum) en Michoacán. Revista Mexicana de Fitopatología 37(No. Esp. 1): 43-47.

Rosado FM, González PJ, Mireles MM, Torres OJ, Rosas GN, Villegas MJ (2020) Identificación de microorganismos aislados de suelos agrícolas con capacidad de tolerar 2.4-D y malatión. TIP Revista Especializada en Ciencias Químico-Biológicas 23: 1-9.

Ruiz CM, Rios VV, Berlanga RD, Ornelasn PJ, Acosta MH, Romo CA, Zamudio F, Pérez CD (2017) Incidence and causal agents of root diseases and its antagonists in apple orchards of Chihuahua, Mexico. Mexican Journal of Phytopathology 35(3): 437-462.

Salazar GC, Serna CL, Gómez LE (2016). Caracterización molecular de Fusarium asociado a pudrición basal del fruto de pitahaya (Selenicereus megalanthus). Agronomía Mesoamericana 27(2): 277-285.

SIAP (2022) Anuario Estadístico de la Producción Agrícola. Servicio de Información Agroalimentaria y Pesquera. https://nube.siap.gob.mx/cierreagricola/. Fecha de consulta: 15 de abril de 2024.

Thao LD, Anh PT, Trang TT, Khanh TN, Hien LT, Binh VT, Thanh HM, Thanh DT (2021) Fusarium falciforme, a pathogen causing wilt disease of chrysanthemum in Vietnam. New Disease Reports 43(2): 1-2.

Torres CT, Whitaker B, Proctor R, Broders K, Laraba I, Kim H, Brown D, O´Donell K, Estrada RT, Yong L, Cheong K, Wallace E, Mcgee C, Kang S, Gelser D (2022) FUSARIUM-ID v.3.0: An updated, downloadabl https://doi.org/10.1094/PDIS-09-21-2105-SR e resource for Fusarium species identification. Plant Disease 106(6): 1611-1615.

Valle M, Guillén SD, Gijón HA, Alia TI, López MV, Juárez P, Martínez E, Hernández AM, Ariza FR (2019) Species of Lasiodiplodia in lima persa (Citrus latifolia Tanaka) in Morelos, Mexico. Revista Biociencias 6: 1-17. https://doi.org/10.15741/revbio.06.e595

Valle S, Carreara K, Alemán R, Caicedo W (2021) Characterization of native isolates of Metarhizium spp. For the control of Mahanarva andigena in the sugarcane cultivar POJ3 in the Ecuadorian Amazon. IDESIA (Chile) 39(1): 69-75. http://dx.doi.org/10.4067/S0718-34292021000100069

Vega GT, Tirado RM, López UG, Angulo CA, Martínez GJ, López OC (2019) Fusarium falciforme (FSSC 3 + 4) causing root and stem rot in papaya (Carica papaya) in Mexico. Plant Disease 103(10): 1-2. https://doi.org/10.1094/PDIS-05-19-0917-PDN

Wang C, Wang M, Xu L, Yang Y (2022) First report of Lasiodiplodia theobromae causing dieback in custard apple (Annona squamosa) tree in China. Plant Disease 106 (1): 327-327. https://doi.org/10.1094/PDIS-05-21-1034-PDN

Watanabe T (2002) Pictorial atlas of soil and seed fungi: morphologies of cultured fungi and key to species. Second edition. Washington D.C. USA. CRC PRES, New York. 504p.

Xie HH, Wei JG, Liu F, Pan XH, Yang XB (2014) First report of mulberry root rot caused by Lasiodiplodia theobromae in China. Plant Disease 98(11): 1581-1581. https://doi.org/10.1094/PDIS-03-14-0261-PDN

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Published

2024-05-30

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SCIENTIFIC NOTE

How to Cite

Pathogens causing root rot in soursop (Annona muricata L.), in Nayarit, Mexico. (2024). Ecosistemas Y Recursos Agropecuarios, 11(2). https://doi.org/10.19136/era.a11n2.3672

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