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1.
J Exp Bot ; 74(20): 6285-6305, 2023 10 31.
Artículo en Inglés | MEDLINE | ID: mdl-37419672

RESUMEN

Eggplant (Solanum melongena) is a major vegetable crop with great potential for genetic improvement owing to its large and mostly untapped genetic diversity. It is closely related to over 500 species of Solanum subgenus Leptostemonum that belong to its primary, secondary, and tertiary genepools and exhibit a wide range of characteristics useful for eggplant breeding, including traits adaptive to climate change. Germplasm banks worldwide hold more than 19 000 accessions of eggplant and related species, most of which have yet to be evaluated. Nonetheless, eggplant breeding using the cultivated S. melongena genepool has yielded significantly improved varieties. To overcome current breeding challenges and for adaptation to climate change, a qualitative leap forward in eggplant breeding is necessary. The initial findings from introgression breeding in eggplant indicate that unleashing the diversity present in its relatives can greatly contribute to eggplant breeding. The recent creation of new genetic resources such as mutant libraries, core collections, recombinant inbred lines, and sets of introgression lines will be another crucial element and will require the support of new genomics tools and biotechnological developments. The systematic utilization of eggplant genetic resources supported by international initiatives will be critical for a much-needed eggplant breeding revolution to address the challenges posed by climate change.


Asunto(s)
Solanum melongena , Solanum , Solanum melongena/genética , Fitomejoramiento , Solanum/genética , Fenotipo
3.
Molecules ; 23(8)2018 Aug 17.
Artículo en Inglés | MEDLINE | ID: mdl-30126139

RESUMEN

DR2B and DR2C extracts, obtained by ethanolic maceration of peel from commercially and physiologically ripe aubergine berries, were studied for the antioxidative cytoprotective properties and anti-HSV-1 activity, in line with the evidence that several antioxidants can impair viral replication by maintaining reducing conditions in host cells. The antioxidative cytoprotective effects against tBOOH-induced damage were assessed in Caco2 cells, while antiviral activity was studied in Vero cells; polyphenolic fingerprints were characterized by integrated phytochemical methods. Results highlighted different compositions of the extracts, with chlorogenic acid and delphinidin-3-rutinoside as the major constituents; other peculiar phytochemicals were also identified. Both samples reduced reactive oxygen species (ROS) production and exhibited scavenging and chelating properties. DR2C partly counteracted the tBOOH-induced cytotoxicity, with a remarkable lowering of lactate metabolism under both normoxia and hypoxia; interestingly, it increased intracellular GSH levels. Furthermore, DR2C inhibited the HSV-1 replication when added for 24 h after viral adsorption, as also confirmed by the reduction of many viral proteins' expression. Since DR2C was able to reduce NOX4 expression during HSV-1 infection, its antiviral activity may be correlated to its antioxidant properties. Although further studies are needed to better characterize DR2C activity, the results suggest this extract as a promising new anti-HSV-1 agent.


Asunto(s)
Antioxidantes/química , Antioxidantes/farmacología , Antivirales/química , Antivirales/farmacología , Herpesvirus Humano 1/efectos de los fármacos , Extractos Vegetales/química , Extractos Vegetales/farmacología , Solanum melongena/química , Animales , Antocianinas/química , Antocianinas/farmacología , Línea Celular , Células Cultivadas , Quelantes/química , Quelantes/farmacología , Cromatografía Líquida de Alta Presión , Citoprotección , Flavonoides/química , Flavonoides/farmacología , Humanos , Estrés Oxidativo/efectos de los fármacos , Fitoquímicos/química , Fitoquímicos/farmacología , Polifenoles/química , Polifenoles/farmacología , Replicación Viral/efectos de los fármacos
4.
BMC Genomics ; 14: 540, 2013 Aug 09.
Artículo en Inglés | MEDLINE | ID: mdl-23937585

RESUMEN

BACKGROUND: Solanum torvum Sw is worldwide employed as rootstock for eggplant cultivation because of its vigour and resistance/tolerance to the most serious soil-borne diseases as bacterial, fungal wilts and root-knot nematodes. The little information on Solanum torvum (hereafter Torvum) resistance mechanisms, is mostly attributable to the lack of genomic tools (e.g. dedicated microarray) as well as to the paucity of database information limiting high-throughput expression studies in Torvum. RESULTS: As a first step towards transcriptome profiling of Torvum inoculated with the nematode M. incognita, we built a Torvum 3' transcript catalogue. One-quarter of a 454 full run resulted in 205,591 quality-filtered reads. De novo assembly yielded 24,922 contigs and 11,875 singletons. Similarity searches of the S. torvum transcript tags catalogue produced 12,344 annotations. A 30,0000 features custom combimatrix chip was then designed and microarray hybridizations were conducted for both control and 14 dpi (day post inoculation) with Meloidogyne incognita-infected roots samples resulting in 390 differentially expressed genes (DEG). We also tested the chip with samples from the phylogenetically-related nematode-susceptible eggplant species Solanum melongena. An in-silico validation strategy was developed based on assessment of sequence similarity among Torvum probes and eggplant expressed sequences available in public repositories. GO term enrichment analyses with the 390 Torvum DEG revealed enhancement of several processes as chitin catabolism and sesquiterpenoids biosynthesis, while no GO term enrichment was found with eggplant DEG.The genes identified from S. torvum catalogue, bearing high similarity to known nematode resistance genes, were further investigated in view of their potential role in the nematode resistance mechanism. CONCLUSIONS: By combining 454 pyrosequencing and microarray technology we were able to conduct a cost-effective global transcriptome profiling in a non-model species. In addition, the development of an in silico validation strategy allowed to further extend the use of the custom chip to a related species and to assess by comparison the expression of selected genes without major concerns of artifacts. The expression profiling of S. torvum responses to nematode infection points to sesquiterpenoids and chitinases as major effectors of nematode resistance. The availability of the long sequence tags in S. torvum catalogue will allow precise identification of active nematocide/nematostatic compounds and associated enzymes posing the basis for exploitation of these resistance mechanisms in other species.


Asunto(s)
Perfilación de la Expresión Génica , Interacciones Huésped-Parásitos/genética , Solanum/genética , Solanum/parasitología , Tylenchoidea/fisiología , Animales , Quitinasas/genética , Secuenciación de Nucleótidos de Alto Rendimiento , Anotación de Secuencia Molecular , Análisis de Secuencia por Matrices de Oligonucleótidos , ARN Mensajero/genética , Análisis de Secuencia de ARN , Sesquiterpenos/metabolismo , Solanum/enzimología , Solanum/fisiología , Especificidad de la Especie
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