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1.
Plant Sci ; 340: 111937, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38043729

RESUMEN

Due to the increasing demand for high-quality and high fiber-yielding cotton (Gossypium spp.), research into the development of stress-resilient cotton cultivars has acquired greater significance. Various biotic and abiotic stressors greatly affect cotton production and productivity, posing challenges to the future of the textile industry. Moreover, the content and quality of cottonseed oil can also potentially be influenced by future environmental conditions. Apart from conventional methods, genetic engineering has emerged as a potential tool to improve cotton fiber quality and productivity. Identification and modification of genome sequences and the expression levels of yield-related genes using genetic engineering approaches have enabled to increase both the quality and yields of cotton fiber and cottonseed oil. Herein, we evaluate the significance and molecular mechanisms associated with the regulation of cotton agronomic traits under both normal and stressful environmental conditions. In addition, the importance of gossypol, a toxic phenolic compound in cottonseed that can limit consumption by animals and humans, is reviewed and discussed.


Asunto(s)
Gossypium , Gosipol , Humanos , Gossypium/metabolismo , Aceite de Semillas de Algodón/metabolismo , Fibra de Algodón , Gosipol/metabolismo , Genómica
2.
Pest Manag Sci ; 78(7): 3183-3192, 2022 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-35478320

RESUMEN

BACKGROUND: Phytophthora infestans is a late blight-causing oomycetes pathogen. It rapidly evolves and adapts to the host background and new fungicide molecules within a few years of their release, most likely because of the predominance of transposable elements in its genome. Frequent applications of fungicides cause environmental concerns. Here, we developed target-specific RNA interference (RNAi)-based molecules, along with nanoclay carriers, that when sprayed on plants are capable of effectively reducing late blight infection. RESULTS: Targeted the genes unique to sporulation, early satge infection and the metabolism pathway stages based on in an our own microarray data. We used nanoclay as a carrier for sorbitol dehydrogenase, heat shock protein 90, translation elongation factor 1-α, phospholipase-D like 3 and glycosylphosphatidylinositol-anchored acidic serine-threonine-rich HAM34-like protein double-stranded (ds)RNAs, which were assessed by culture bioassay, detached leaf assay and spray methods, and revealed a reduction in growth, sporulation and symptom expression. Plants sprayed with multigene targeted dsRNA-nanoclay showed enhanced disease resistance (4% disease severity) and less sporulation (<1 × 103 ) compared with plants sprayed with dsRNA alone. CONCLUSION: The use of nanoclay with multigene targeted dsRNA was assumed to be involved in effective delivery, protection and boosting the action of RNAi as a spray-induced gene silencing approach (SIGS). A significant reduction in growth, sporulation, disease severity and decreased gene expression authenticates the effects of SIGS on late blight progression. This study demonstrated as a proof of concept the dsRNA-nanoclay SIGS approach, which could be used as an alternative to chemical fungicides and transgenic approaches to develop an environmentally friendly novel plant protection strategy for late blight. © 2022 Society of Chemical Industry.


Asunto(s)
Fungicidas Industriales , Phytophthora infestans , Solanum tuberosum , Resistencia a la Enfermedad/genética , Fungicidas Industriales/farmacología , Phytophthora infestans/genética , Enfermedades de las Plantas/prevención & control , ARN Bicatenario/genética , Solanum tuberosum/genética
3.
Biomed Pharmacother ; 146: 112498, 2022 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-34953395

RESUMEN

Huge quantities of byproducts/wastes generated in onion processing are usually discarded, but they are excellent sources of bioactive compounds and phytochemicals. However, with growing interest in the sustainable use of resources and the circular economy to reduce adverse impacts on the environment, food processing wastes such as onion peel/skin can be extracted and employed as inputs in developing or reformulating nutrient supplements, and pharmacological drugs. This review highlights major bioactive components, especially total phenolics, total flavonoid, quercetin and its derivatives present in onion peel/skin and their therapeutic applications as cardioprotective, neuroprotective, antiobesity, antidiabetic, anticancer and antimicrobial agents. The present review emphasized that onion peel is one of the important agricultural by-products which is rich in bioactive compounds and can be utilized as health promoting ingredient especially in pharmacological and biomedical fields. Thus, with increasing burden of life style disorders/non-communicable diseases, finding suitable natural alternative for their treatment is one major concern of the researchers and onion peel and its extract can be exploited as a prime ingredient.


Asunto(s)
Cebollas/química , Fitoquímicos/farmacología , Extractos Vegetales/farmacología , Antiinfecciosos/farmacología , Fármacos Antiobesidad/farmacología , Antineoplásicos/farmacología , Antioxidantes/farmacología , Cardiotónicos/farmacología , Flavonoides/farmacología , Hipoglucemiantes/farmacología , Fármacos Neuroprotectores/farmacología , Fenoles/farmacología
4.
Biomed Pharmacother ; 142: 112018, 2021 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-34449317

RESUMEN

The processing of tomato fruit into puree, juices, ketchup, sauces, and dried powders generates a significant amount of waste in the form of tomato pomace, which includes seeds and skin. Tomato processing by-products, particularly seeds, are reservoirs of health-promoting macromolecules, such as proteins (bioactive peptides), carotenoids (lycopene), polysaccharides (pectin), phytochemicals (flavonoids), and vitamins (α-tocopherol). Health-promoting properties make these bioactive components suitable candidates for the development of novel food and nutraceutical products. This review comprehensively demonstrates the bioactive compounds of tomato seeds along with diverse biomedical activities of tomato seed extract (TSE) for treating cardiovascular ailments, neurological disorders, and act as antioxidant, anticancer, and antimicrobial agent. Utilization of bioactive components can improve the economic feasibility of the tomato processing industry and may help to reduce the environmental pollution generated by tomato by-products.


Asunto(s)
Fitoquímicos/química , Extractos Vegetales/química , Solanum lycopersicum/química , Animales , Suplementos Dietéticos , Industria de Alimentos/economía , Humanos , Residuos Industriales/economía , Residuos Industriales/prevención & control , Fitoquímicos/aislamiento & purificación , Extractos Vegetales/aislamiento & purificación , Extractos Vegetales/farmacología , Semillas , Administración de Residuos/métodos
5.
Carbohydr Polym ; 269: 118319, 2021 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-34294331

RESUMEN

Pectin is a plant-based heteropolysaccharide macromolecule predominantly found in the cell wall of plants. Pectin is commercially extracted from apple pomace, citrus peels and sugar beet pulp and is widely used in the food industry as a stabilizer, emulsifier, encapsulant, and gelling agent. This review highlights various parameters considered important for describing the inherent properties and biofunctionalities of pectins in food systems. These inherent descriptors include monosaccharide composition, galacturonic acid content, degree of esterification, molecular weight, structural morphology, functional group analysis, and functional properties, such as water and oil holding capacity, emulsification, foaming capacity, foam stability, and viscosity. In this study, we also delineate their potential as a nutraceutical, prebiotic, and carrier for bioactive compounds. The biofunctionalities of pectin as an anticancer, antioxidant, lipid-lowering, and antidiabetic agent are also conceptually elaborated in the current review. The multidimensional characteristics of pectin make it a potential candidate for use in food and biomedical science.


Asunto(s)
Pectinas/química , Pectinas/uso terapéutico , Animales , Línea Celular Tumoral , Emulsionantes/química , Humanos , Hidrólisis , Estructura Molecular , Pectinas/farmacología , Plantas/química , Reología , Relación Estructura-Actividad , Viscosidad
6.
Biomolecules ; 11(5)2021 04 21.
Artículo en Inglés | MEDLINE | ID: mdl-33919068

RESUMEN

Annona squamosa L. (custard apple) belongs to the family Annonaceae and is an important tropical fruit cultivated in the West Indies, South and Central America, Ecuador, Peru, Brazil, India, Mexico, the Bahamas, Bermuda, and Egypt. Leaves of custard apple plants have been studied for their health benefits, which are attributed to a considerable diversity of phytochemicals. These compounds include phenol-based compounds, e.g., proanthocyanidins, comprising 18 different phenolic compounds, mainly alkaloids and flavonoids. Extracts from Annona squamosa leaves (ASLs) have been studied for their biological activities, including anticancer, antidiabetic, antioxidant, antimicrobial, antiobesity, lipid-lowering, and hepatoprotective functions. In the current article, we discussed the nutritional and phytochemical diversity of ASLs. Additionally, ASL extracts were discussed with respect to their biological activities, which were established by in vivo and in vitro experiments. A survey of the literature based on the phytochemical profile and health-promoting effects of ASLs showed that they can be used as potential ingredients for the development of pharmaceutical drugs and functional foods. Although there are sufficient findings available from in vitro and in vivo investigations, clinical trials are still needed to determine the exact effects of ASL extracts on human health.


Asunto(s)
Annona/química , Annona/metabolismo , Fitoquímicos/análisis , Alcaloides/análisis , Alcaloides/química , Annona/efectos de los fármacos , Antiinfecciosos , Antioxidantes/farmacología , Flavonoides/análisis , Flavonoides/química , Humanos , Hipoglucemiantes/análisis , Fenoles/análisis , Fenoles/química , Extractos Vegetales/farmacología , Hojas de la Planta/química , Hojas de la Planta/metabolismo
7.
Food Chem ; 353: 129431, 2021 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-33714109

RESUMEN

Phenolic compounds from plant sources have significant health-promoting properties and are known to be an integral part of folk and herbal medicines. Consumption of phenolics is known to alleviate the risk of various lifestyle diseases including cancer, cardiovascular, diabetes, and Alzheimer's. In this context, numerous plant crops have been explored and characterized based on phenolic compounds for their use as supplements, nutraceutical, and pharmaceuticals. The present review highlights some important source of bioactive phenolic compounds and novel technologies for their efficient extraction. These techniques include the use of microwave, ultrasound, and supercritical methods. Besides, the review will also highlight the use of response surface methodology (RSM) as a statistical tool for optimizing the recoveries of the phenolic bioactives from plant-based matrices.


Asunto(s)
Tecnología Química Verde , Extractos Vegetales/química , Plantas/química , Antocianinas/química , Antocianinas/aislamiento & purificación , Flavonoides/química , Flavonoides/aislamiento & purificación , Microondas , Fenoles/química , Fenoles/aislamiento & purificación , Plantas/metabolismo , Extracción en Fase Sólida
8.
Funct Integr Genomics ; 21(2): 215-229, 2021 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-33611637

RESUMEN

Temperature plays an important role in potato tuberization. The ideal night temperature for tuber formation is ~17 °C while temperature beyond 22 °C drastically reduces the tuber yield. Moreover, high temperature has several undesirable effects on the plant and tubers. Investigation of the genes involved in tuberization under heat stress can be helpful in the generation of heat-tolerant potato varieties. Five genes, including StSSH2 (succinic semialdehyde reductase isoform 2), StWTF (WRKY transcription factor), StUGT (UDP-glucosyltransferase), StBHP (Bel1 homeotic protein), and StFLTP (FLOWERING LOCUS T protein), involved in tuberization and heat stress in potato were investigated. The results of our microarray analysis suggested that these genes regulate and function as transcriptional factors, hormonal signaling, cellular homeostasis, and mobile tuberization signals under elevated temperature in contrasting KS (Kufri Surya) and KCM (Kufri Chandramukhi) potato cultivars. However, no detailed report is available which establishes functions of these genes in tuberization under heat stress. Thus, the present study was designed to validate the functions of these genes in tuber signaling and heat tolerance using virus-induced gene silencing (VIGS). Results indicated that VIGS transformed plants had a consequential reduction in StSSH2, StWTF, StUGT, StBHP, and StFLTP transcripts compared to the control plants. Phenotypic observations suggest an increase in plant senescence, reductions to both number and size of tubers, and a decrease in plant dry matter compared to the control plants. We also establish the potency of VIGS as a high-throughput technique for functional validation of genes.


Asunto(s)
Silenciador del Gen , Respuesta al Choque Térmico/genética , Tubérculos de la Planta/genética , Solanum tuberosum/genética , Regulación de la Expresión Génica de las Plantas/genética , Calor , Proteínas de Plantas/genética , Tubérculos de la Planta/crecimiento & desarrollo , Tubérculos de la Planta/virología , Solanum tuberosum/crecimiento & desarrollo , Solanum tuberosum/virología , Temperatura
9.
Food Chem ; 334: 127561, 2021 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-32711272

RESUMEN

Grapefruit (Citrus paradisi) peel (GP) is rich in flavonoids and phenolics which have several proven pharmacological effects. However, their chemical instability towards oxygen, light and heat limits its applications in food industries. In the present study, we evaluated the feasibility of fabricating grapefruit-peel-phenolic (GPP) nano-emulsion in mustard oil using ultrasonication. Response surface methodology (RSM) optimization revealed that sonication time of 9.5 min at 30% amplitude and 0.52% Span-80 produced the stable GPP nano-emulsion with a droplet size of 29.73 ± 1.62 nm. Results indicate that both ultrasonication and Span-80 can assist the fabrication of a stabilized nano-emulsion. This study is one of its kind where nano-encapsulation of GPP into W/O emulsion was done to stabilize the active compound inside mustard oil and then the nano-emulsion was used to extend oxidative stability of mustard oil. Findings provide a basic guideline to formulate stable nano-emulsions for their use in active food packaging, oils, and pharmaceuticals.


Asunto(s)
Citrus paradisi/química , Emulsiones/química , Planta de la Mostaza/química , Nanoestructuras/química , Aceites de Plantas/química , Polifenoles/química , Antioxidantes/química , Almacenamiento de Alimentos , Frutas/química , Hexosas/química , Oxidación-Reducción , Sonicación
10.
Plant Foods Hum Nutr ; 75(4): 614-620, 2020 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-33006129

RESUMEN

Conventional techniques for phenolics extraction from pomegranate (Punica granatum) peel (PP) have several insufficiencies like longer time duration, bioactive degradation, excess use of harmful chemicals and solvents. In the present study, we established the synergistic use of two non-conventional extraction strategies i.e., enzyme-assisted extraction (EAE) using a cellulolytic enzyme preparation (Viscozyme) followed by microwave-assisted extraction (MAE) for efficient recovery of phenolics from PP. This optimized method was individually compared with EAE, MAE, and conventional solvent extraction (CSE) methods for recovering PP phenolics with maximum antioxidant activity (AOA). Extracts were analyzed for AOA using ferric reducing antioxidant power (FRAP) and cupric reducing AOA (CUPRAC) methods. Response surface methodology (RSM), was used as an optimization tool to achieve maximum yield of phenolics and with highest AOA at power 443.5 W, time 131.0 min, and solvent-to-solid ratio 23.6:1. The predicted values for maximum phenolics and AOA obtained through RSM were 305 mg GAE/g, 1788 µmol TE/g (FRAP) and 2641 µmol TE/g (CUPRAC), respectively. Phenolic contents of only 94.6, 165.46, and 197.6 mg GAE/g were achieved through CSE, EAE and MAE, respectively. Here we substantiate the auxiliary role of Viscozyme and microwave treatment in achieving high phenolic content and AOA from PPs. Phenolic rich extracts are known to act as multi-target ligands that inhibit various enzymes involved in diseases like Alzheimer's, Parkinson's, and diabetes mellitus. The extract can be commercially exploited for the development of functional foods, supplements, and natural preservatives.


Asunto(s)
Antioxidantes , Microondas , Fenoles , Extractos Vegetales , Granada (Fruta)
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