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1.
Front Plant Sci ; 15: 1397617, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39081528

RESUMO

Fusarium wilt of banana (FWB), caused by the soil-borne fungus Fusarium oxysporum f. sp. cubense (Foc), poses an undeniable threat to global banana production. This disease has intensified in recent years, with the tropical race 4 (TR4) strain spreading rapidly. Since 2018, the number of affected countries has increased from 16 to 23, presenting a significant challenge to researchers, producers, and National Plant Protection Organizations (NPPOs) worldwide. The potential impact of TR4 in Latin America and the Caribbean (LAC) is particularly concerning. This region boasts seven of the top ten banana-exporting countries, and bananas and plantains are crucial for food security and income generation. In Colombia, where TR4 was detected in 2019, the disease has already spread from La Guajira to Magdalena, and it is currently affecting 20 large commercial export farms. In Peru, the disease was detected in 2021 and although still restricted to the northern region, flood irrigation and heavy rains associated with the Yaku cyclone, boosted pathogen spread, and more than 400 small organic banana farmers are currently affected. In Venezuela, TR4 detection occurred in 2023, with plantations across three states and five municipalities now affected. Worryingly, TR4 has also been confirmed in plantains, a staple food in the region. Current national responses in LAC primarily rely on preventive and reactive measures: preventing initial incursions and containing outbreaks to avoid further spread. However, the disease's relentless progression suggests that its eventual presence in all banana-producing areas is likely. Therefore, exploring alternative management approaches beyond pathogen exclusion becomes crucial, both in affected and disease-free regions. This paper examines the current spread of TR4, focusing on epidemiological aspects and recent research-based management options. Key epidemiological features were highlighted, drawing practical examples from various scales (plots to landscapes) and utilizing experiences from LAC's fight against TR4. The paper also reviews field-tested approaches in biosecurity, biological control, resistant varieties, soil health, and integrated disease management, acknowledging the specific challenges faced by smallholder settings. In each section research initiatives were analyzed, identifying gaps, and proposing directions to minimize TR4 impact and accelerate the development of sustainable solutions for managing this devastating disease.

2.
Plants (Basel) ; 13(10)2024 May 08.
Artigo em Inglês | MEDLINE | ID: mdl-38794370

RESUMO

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.

3.
J Food Sci ; 89(5): 2774-2786, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38602038

RESUMO

Banana is one of the most consumed and popular fruits in all regions of the world, being cultivated mainly in tropical countries. It is not only a rich source of vitamins A, C, and B, calcium, iron, potassium, phosphorus, and other vitamins and nutrients, but it also contains several types of antioxidants with high nutritional value. In this context, the current study aimed to quantify the content of ascorbic acid, flavonoids, pigments, and minerals present in "Nanicão" bananas during the ripening process. As demonstrated, the level of flavonoids was higher in ripe and overripe fruits, whereas the mineral composition was high only at ripening stage 4 (more yellow than green) a stage that should be prioritized when recommending fruit consumption to the population deficient in these minerals. Regarding pigments, there was a reduction in chlorophylls a and b and an increase in carotenoids and anthocyanins in peels and pulps. PRACTICAL APPLICATION: Flavonoids are phenolic, bioactive compounds with proven antioxidant and anti-inflammatory activity and products of the plant's secondary metabolism. The degradation of chlorophylls and synthesis of carotenoids and anthocyanins, and as a consequence of the latter pigment, the increase in flavonoids in the pulp was evident during the monitoring of ripening, mainly in the fruit peels in relation to pigments. Minerals are essential elements, the main ones provided in balanced diets and important for dietary and nutritional health.


Assuntos
Antioxidantes , Carotenoides , Flavonoides , Frutas , Minerais , Musa , Flavonoides/análise , Frutas/química , Musa/química , Minerais/análise , Antioxidantes/análise , Carotenoides/análise , Pigmentos Biológicos/análise , Clorofila/análise , Ácido Ascórbico/análise , Valor Nutritivo , Antocianinas/análise
4.
Trop Anim Health Prod ; 56(4): 139, 2024 Apr 24.
Artigo em Inglês | MEDLINE | ID: mdl-38656618

RESUMO

We aimed to evaluate the effects of different drying methods for banana residues on the energy metabolism and respirometry of growing lambs. Twenty Santa Inês x Dorper lambs were fed five experimental diets: Tifton 85 grass hay (Control), shade-dried banana leaf hay (LH Shade), shade-dried pseudostem banana hay (PH Shade), sun-dried banana leaf hay (LH Sun), and sun-dried banana pseudostem hay (PH Sun). Nutrient intake and digestibility were assessed in metabolic cages, whereas O2 consumption and CO2, methane, and heat production were measured in a respirometry chamber with animals fed at maintenance and ad libitum levels. Nutrient and energy intake was not influenced by diet. Pseudostem hay had higher apparent digestibility of dry matter (71.5%), organic matter (72.4%), and neutral detergent fiber (58.0%). However, this led to greater energy loss in the form of methane (12.1%). The banana residue hays and drying methods did not alter oxygen consumption, CO2 production, or heat production of animals fed ad libitum or during maintenance. On the other hand, the use of leaf hay resulted in a reduction of 24.7% in enteric methane production of animals fed ad libitum. The inclusion of pseudostem hay is recommended in sheep feedlot diet. This residue provided greater use of DM, however promoted a greater loss of energy in the form of methane, resulting in similar energy consumption. The drying methods did not reduce the availability of nutrients and the sun drying method is recommended, since it is a faster drying method.


Assuntos
Ração Animal , Dieta , Digestão , Metabolismo Energético , Musa , Animais , Musa/química , Ração Animal/análise , Dieta/veterinária , Masculino , Carneiro Doméstico/fisiologia , Fenômenos Fisiológicos da Nutrição Animal , Consumo de Oxigênio , Dessecação
5.
Plant Dis ; 2023 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-37392029

RESUMO

Banana is a fruit of great importance in Brazil and crown rot cause considerable damage and losses (Ploetz et al. 2003). The disease is associated with fungal complexes, especially the Lasiodiplodia theobromae sensu lato (Kamel et al. 2016; Renganathan et al. 2020; Waliullah et al. 2022). Three asymptomatic bunches of banana cv. 'Prata Catarina' were collected in Russas, Brazil (04°58'11.6"S, 38°01'44.5"W), in 2017. The samples were disinfected (NaClO, 200 ppm), and incubated in a moist chamber at 28 °C, with 12 h light/12 h dark for 3 days. With the appearance of the symptoms (32% of severity), the isolation was conducted in potato dextrose agar (PDA). A monosporic culture (BAN14) was obtained from a typical crown rot lesion, which was subjected to morphological characterization, showing abundant aerial mycelium of olivaceous grey color on the surface and greenish grey on the back (Rayner 1970) in PDA after 15 days at 28 °C. The growth rate was 28.2 mm. day-1. The fungus produced pycnidia and conidia on water agar medium containing pine needles, with 3-4 weeks at 28 °C, presenting conidia initially aseptate, subglobose to subcylindrical, becoming pigmented with 1-central transverse septum and longitudinal striations 23.5 (18.7) 26.0 x 12.7 (9.7) 14.8 µm (n=50). Paraphyses, hyaline, cylindrical, thin-walled, apparently coenocytic with rounded apex, with length and width dimensions of 34 (43.8) 53.2 x 2.1 (2.5) 3.2 µm (n=30). Conidiophore absent, conidiogenous cells hyaline, smooth and with thin walls. The genomic DNA was extracted and amplified by PCR with primers TEF1-688F/TEF1-1251R, ITS1/ITS4, and Bt2a/Bt2b, and sequenced in both directions (O'Donnell et al. 1998; O'Donnell et al. 2010) (GenBank accession ON975017 [TEF1], ON986403 [TUB2], and ON921398 [ITS]). BLASTn analysis of TEF1, TUB2 and ITS sequences in NCBI database showed 99 to 100% nucleotide identity to a representative isolate of Lasiodiplodia iraniensis (IRAN921). Phylogenetic analysis using maximum parsimony based on the combined TEF1, TUB2 and ITS sequences indicated that the BAN14 formed a supported clade (82% bootstrap value) to L. iraniensis. The pathogenicity was evaluated in 20 banana fruit cv. 'Prata Catarina', at the point of harvest. For inoculation, the bananas were washed with water and soap, and disinfected with NaClO (200 ppm). Posteriorly, two wounds were made on the extremities of the fruits, in which were deposited mycelial discs of 5 mm in diameter, with 7 days of the growth on PDA. After inoculation, the fruits were incubated in plastic boxes in a wet chamber at 25 °C, with 12 h light/12 h dark for 5 days. The control fruits were not inoculated with the pathogen, only with PDA discs. The experiments were repeat twice. The BAN14 isolate was pathogenic to the banana cv. 'Prata Catarina'. The BAN14 was grouped with the species L. iraniensis described by Abdollahzadeh et al. (2010) in Iran. This species is distributed in Asia, South and North America, Australia, and Africa. In Brazil it was reported in association to Anacardium occidentale, Annona muricata, A. squamosa, Annona ×cherimola-squamosa, Citrus sp., Eucalyptus sp., Jatropha curcas, Mangifera indica, Manihot esculenta, Nopalea cochenillifera, Vitis sp. and V. vinifera. Until the moment, there is not description of the relation between banana crown rot and L. iraniensis (Farr and Rossman 2022). Our work is the first report on the pathogenicity of this species on banana fruit cv. 'Prata Catarina' worldwide.

6.
Toxicon ; 228: 107106, 2023 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-37031872

RESUMO

Accidents involving snakes from Bothrops spp. and Crotalus spp. constitute the most important cause of envenomation in Brazil and Argentina. Musa spp. (banana) have been reported to be used in popular medicine against snakebite by the members of the Canudos Settlement, located in Goiás. In this way, the aim of this work was to evaluate the antivenom effect of the Ouro (AA), Prata (AAB), Prata-anã (AAB) and Figo (ABB) cultivars against in vitro (phospholipase, coagulation and proteolytic) and in vivo (lethality and toxicity) activities caused by the venoms and toxicity (Artemia salina nauplii and Danio rerio embryos) of Musa spp. as well as the annotation of chemical compounds possibly related to these activities. From the in vitro antiophidic tests with the sap, we observed 100% inhibition of the phospholipase and coagulant activities with the cultivars Prata-anã and Figo against the venoms of B. alternatus and C. d. collineatus, B. diporus and B. pauloensis, respectively, and neutralisation of the lethality against the B. diporus venom. It was observed that the cultivars of Musa spp. did not show toxicity against Artemia salina nauplii and Danio rerio embryos. The sap analysis via HPLC-MS/MS allowed the annotation of the 13 compounds: abscisic acid, shikimic acid, citric acid, quinic acid, afzelechin, Glp-hexose, glucose, sucrose, isorhamnetin-3-O-galactoside-6-raminoside, kaempferol-3-glucoside-3-raminoside, myricetin-3-O-rutinoside, procyanidin B1 and rutin. Therefore, it can be seen that Musa spp. is a potential therapeutic agent that can act to neutralise the effects caused by snakebites.


Assuntos
Bothrops , Venenos de Crotalídeos , Musa , Mordeduras de Serpentes , Animais , Crotalus , Espectrometria de Massas em Tandem , Peixe-Zebra , Venenos de Serpentes , Venenos de Crotalídeos/toxicidade , Venenos de Crotalídeos/química , Antivenenos/farmacologia , Antivenenos/uso terapêutico , Mordeduras de Serpentes/tratamento farmacológico , Fosfolipases
7.
Pathogens ; 12(2)2023 Feb 08.
Artigo em Inglês | MEDLINE | ID: mdl-36839549

RESUMO

The fungus Fusarium oxysporum f. sp. cubense tropical race 4 (syn. Fusarium odoratissimum) (Foc TR4) causes vascular wilt in Musaceae plants and is considered the most lethal for these crops. In Latin America and the Caribbean (LAC), it was reported for the first time in Colombia (2019), later in Peru (2021), and recently declared in Venezuela (2023). This work aimed to analyze the evolution of Foc TR4 in Musaceae in LAC between 2018 and 2022. This perspective contains a selection of topics related to Foc TR4 in LAC that address and describe (i) the threat of Foc TR4 in LAC, (ii) a bibliometric analysis of the scientific production of Foc TR4 in LAC, (iii) the current situation of Foc TR4 in Colombia, Peru, and Venezuela, (iv) medium-term prospects in LAC member countries, and (v) export trade and local food security. In this study, the presence of Foc TR4 in Venezuela and the possible consequences of the production of Musaceae in the long term were reported for the first time. In conclusion, TR4 is a major threat to banana production in Latin America and the world, and it is important to take measures to control the spread of the fungus and minimize its impact on the banana industry. It is important to keep working on the control of Foc TR4, which requires the participation of the local and international industry, researchers, and consumers, among others, to prevent the disappearance of bananas.

8.
Rev. medica electron ; 45(1)feb. 2023.
Artigo em Espanhol | LILACS-Express | LILACS | ID: biblio-1442022

RESUMO

Los plátanos pertenecientes al género Musa spp. ABB han sido utilizados para el tratamiento de la inflamación y el dolor. La búsqueda de antiinflamatorios de origen natural, más que una alternativa, constituye una terapia complementaria del tratamiento de la inflamación, ya que los antiinflamatorios no esteroideos son los más utilizados para enfermedades inflamatorias agudas o crónicas, pero a la vez presentan efectos secundarios gastrointestinales, cardiovasculares y renales, por lo que no es recomendable su uso prolongado. En este trabajo se ofrece información actualizada sobre los efectos farmacológicos y los metabolitos secundarios del grupo Musa spp. ABB, para su uso en la elaboración de un medicamento antiinflamatorio. Los procedimientos realizados incluyen el análisis documental y bibliográfico -en bases de datos- de artículos científicos, tesis doctorales y comunicaciones científicas; el registro de la información, y la elaboración del artículo científico, teniendo en cuenta la actualización de la información y los sitios donde se promueve la misma. Se han comprobado, a partir de extractos acuosos y alcohólicos de la planta, efectos farmacológicos tales como antiinflamatorio, antioxidante, analgésico, gastroprotector, inmunomodulador, antidiabético, anticancerígeno, antibacteriano, antiviral, hipolipemiante, antidiarreico, antihipertensivo, hepatoprotector, cicatrizante, antiulceroso y antifúngico. Los efectos antiinflamatorios y antioxidantes están relacionados con la presencia de fenoles, ácidos fenólicos, flavonoides, fitoesteroles y carotenos. Es muy limitado el empleo de extractos del grupo Musa spp. ABB en medicamentos, de ahí la propuesta de desarrollar una crema antiinflamatoria como alternativa o complemento para el tratamiento de múltiples enfermedades inflamatorias.


Plantains belonging to the genus Musa spp. ABB have been used for the treatment of infection and pain. The search for anti-inflammatories of natural origins, more than an alternative, is a complementary therapy for the treatment of inflammation, since non-steroidal anti-inflammatories are the most used for acute or chronic inflammatory diseases, but at the same time they present gastrointestinal, cardiovascular and renal side effects, so their prolonged use is not recommended. In this paper, updated information is provided on the pharmacological effects and secondary metabolites of the Musa ssp. ABB group, for its use in elaborating an anti-inflammatory drug. The procedures carried out include documental and bibliographic analysis -in databases-of scientific articles, doctoral theses and scientific communications; the information record and preparation of the article taking into account the information updating and the sites where it is supported. From aqueous and alcoholic extracts of the plant, the following effects were proven: anti-inflammatory, antioxidant, analgesic, gastro-protective, inmuno-modulator, antidiabetic, anticancer, antibacterial, antiviral, lipid-lowering, antidiarrheal, antihypertensive, hepatoprotective, healing, anti-ulcerative and antifungal. The anti-inflammatory and antioxidant effects are related to the presence of phenols, phenolic acids, flavonoids, phytosterols and carotenes. The use of Musa spp. ABB group in drugs is very limited, therefore the proposal of developing an anti-inflammatory cream to treat multiple inflammatory diseases.

9.
Colloq. Agrar ; 19(1): 328-337, jan.-dez. 2023. ilus, tab
Artigo em Inglês | VETINDEX | ID: biblio-1509731

RESUMO

Brandy is one of the most consumed alcoholic beverages in Brazil, being produced with sweet vegetables, cereals, sugar cane and fruits that have fermentable sugars. This drink is confused with cachaça, from which it is distinguished by the alcoholic degree and typically Brazilian productivity. Banana stands out in Brazil and in the world as the second fruit in productivity, behind only orange, being an accessible raw material for the production of brandy. This processing is advantageous due to the rapid ripening of this fruit, which can often make it impossible to fresh to the consumer. This study aimed to carry out the fermentation through the inoculation of the yeast Saccharomyces cerevisiaeseparately for pulp and skins of Dwarf Cavendish bananas to verify the alcohol content produced. The banana pulp brandy reached an alcohol content of 39,5° GL, within the stipulated by the current legislation, the peel, however, did not allow adequate alcohol levels (7,5° GL). It is concluded that the pulp of Dwarf Cavendish banana is viable for the production of brandy.(AU)


A aguardente é uma das bebidasalcoólicasmais consumidasno Brasil, sendo produzida comvegetais doces, cereais, cana-de-açúcar e frutas que possuemaçúcares fermentescíveis. Esta bebida é confundida com a cachaça, da qual é diferenciadapelo grau alcoólicoe produtividade tipicamente brasileira. Abanana possui destaque no Brasil e no mundo como a segunda fruta em produtividade,atrás apenas da laranja, sendo uma matéria-prima acessível para a produção de aguardenteem razão do processo de amadurecimento rápido,o que acaba muitas vezes por inviabilizar a venda in naturapara o consumidor. Este estudo objetivou realizar a fermentação através da inoculação da levedura Saccharomyces cerevisiaeseparadamente para mostosdapolpa e cascas de bananas nanicapara verificar o teor alcóolico produzido. A aguardente de polpa de bananaatingiu teor alcoólicode 39,5° GL, dentro do estipulado pela legislação vigente, a casca, contudo, não permitiuníveis alcóolicos adequados(7,5°GL). Conclui-se que a polpa da banana nanica é viável para a produção de aguardente.(AU)


Assuntos
Saccharomyces cerevisiae/química , Destilação/métodos , Musa/química , Fermentação , Alcoólicos
10.
World J Microbiol Biotechnol ; 39(2): 60, 2022 Dec 27.
Artigo em Inglês | MEDLINE | ID: mdl-36574179

RESUMO

Fusarium kalimantanense is a genetic lineage of Fusarium oxysporum f. sp. cubense (Foc) and belongs to the Fusarium oxysporum species complex (FOSC). This pathogen is a causative agent of Panama disease, an infection that has caused damage to the banana crop worldwide. Bacillus sp. (LPPC170) showed preliminary antagonist activity against F. kalimantanense (LPPC130) in vitro tests from the cultivation of axenic culture and co-culture with inhibition of mycelial growth of phytopathogen of 41.23%. According to these findings, volatile organic compounds (VOCs) emitted from Bacillus sp. were obtained by solid-phase microextraction and identified by gas chromatography coupled with a mass spectrometer (GC-MS). The multivariate data analysis tool (PLS-DA and Heatmap) identified short-chain organic acids as the main antagonistic VOCs responsible for inhibiting the mycelial growth of LPPC130. Acetic acid, propanoic acid, butanoic acid, valeric acid, and isovaleric acid exhibited a strong inhibitory effect on the mycelial growth of LPPC130, with inhibition of 20.68%, 33.30%, 26.87%, 43.71%, and 53.10%, respectively. Scanning electron microscopy revealed that VOCs caused damage to the vegetative and reproductive structures of the fungus. These results suggest Bacillus LPPC170 as an excellent biocontrol tool against the phytopathogen causative agents of Panama disease.


Assuntos
Bacillus , Fusarium , Musa , Compostos Orgânicos Voláteis , Compostos Orgânicos Voláteis/farmacologia , Fungos , Musa/microbiologia , Doenças das Plantas/prevenção & controle , Doenças das Plantas/microbiologia
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