Phytoparasitic Nematodes of Musa spp. with Emphasis on Sources of Genetic Resistance: A Systematic Review
Author:
Sousa Amanda Bahiano Passos1ORCID, Rocha Anelita de Jesus2ORCID, Oliveira Wanderley Diaciso dos Santos1, Rocha Leandro de Souza2, Amorim Edson Perito2ORCID
Affiliation:
1. Department of Biological Sciences, Feira de Santana State University, Feira de Santana 44036-900, BA, Brazil 2. Embrapa Mandioca e Fruticultura, Cruz das Almas 44380-000, BA, Brazil
Abstract
Bananas are a staple food that considerably contributes to both food security and income generation, especially in countries of Africa, Asia, and Central and South America. The banana plant (Musa spp.) is affected by various pathogens, of main concern being the plant-parasitic nematodes associated with the rhizosphere, the most important of which are Radopholus similis (burrowing nematode), Helicotylenchus sp. (spiral nematode), Pratylenchus sp. (root lesion nematode), and Meloidogyne sp. (gall nematode). Infected plants reduce their ability to absorb water and nutrients, which can lead to delayed flowering, fewer bunches, and lower fruit mass. Obtaining nematode-resistant banana cultivars through genetic improvement is an effective and sustainable option compared with chemical control with nematicides. Here, we provide the first systematic review of existing banana sources of resistance to nematodes to aid the management and control of nematodes in banana and plantain crops. Articles selected from different databases were evaluated, and searches were conducted using pre-established inclusion and exclusion criteria. We found 69 studies dealing with genetic improvement for nematode resistance in banana cultivation. Our findings revealed that sources of resistance are currently under investigation to combat the diseases caused by different nematode species in banana plants.
Funder
IITA/The Bill and Melinda Gates Foundation—Accelerated Breeding of Better Bananas
Reference99 articles.
1. Chabi, M.C., Dassou, A.G., Dossou-Aminon, I., Ogouchoro, D., Aman, B.O., and Dansi, A. (2018). Banana and plantain production systems in Benin: Ethnobotanical investigation, varietal diversity, pests, and implications for better production. J. Ethnobiol. Ethnomed., 14. 2. Ntui, V.O., Tripathi, J.N., and Tripathi, L. (2020). Robust CRISPR/Cas9 mediated genome editing tool for banana and plantain (Musa spp.). Curr. Plant Biol., 21. 3. Value-adding post harvest processing of cooking bananas (Musa spp. AAB and ABB genome groups);Adeniji;Afr. J. Biotechnol.,2010 4. Occurrence and spread of the banana fungus Fusarium oxysporum f. sp. cubense TR4 in Mozambique;Viljoen;S. Afr. J. Sci.,2020 5. Rocha, A.D.J., Soares, J.M.D.S., Nascimento, F.D.S., Santos, A.S., Amorim, V.B.D.O., Ferreira, C.F., Haddad, F., Santos-Serejo, J.A.D., and Amorim, E.P. (2021). Improvements in the Resistance of the Banana Species to Fusarium Wilt: A Systematic Review of Methods and Perspectives. J. Fungi, 7.
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