"Long-storage" tomato ( Solanum lycopersicum L.) is a niche product typical of the Mediterranean area, traditionally cultivated under no water supply, the fruits of which combine a good taste with excellent nutritional properties. High-performance liquid chromatography coupled with diode array detection and electron spray-mass spectrometry (HPLC/DAD/ESI-MS) was used to identify the phenolic profile in 10 landraces of long-storage tomato, grown under a typical semiarid climate, as compared to a processing tomato hybrid cultivated in the same environment, under both well-irrigated and unirrigated conditions. Sixteen different secondary metabolites, belonging to the classes of cinnamoylquinic acids and flavonoids, were identified. Quantitative analyses were also performed to monitor the changes in the phenolic content along the batch. The results highlighted that landraces originating from the same area exhibit different fruit morphologies but own a similar biochemical profile. Moreover, the two controls (well irrigated and unirrigated) are placed into the same cluster, suggesting that these secondary metabolites in tomato fruits may be more genetics-dependent than environment-dependent. Given the analysis of phenols nowadays represents a useful tool to assess the genetic variability in tomato, these compounds could be adopted as chemotaxonomic markers in the traceability of this niche product.
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http://dx.doi.org/10.1021/jf203858y | DOI Listing |
Chem Biodivers
January 2025
Univerzitet u Nišu Prirodno-matematički fakultet: Universitet u Nisu Prirodno-Matematicki fakultet, Department of Chemistry, Višegradska 33, Niš, SERBIA.
Gas chromatography and GC/MS analysis of essential oil composition obtained from different parts of Myrrhoides nodosa (L.) Cannon has been carried out. Regarding the essential oil composition, 33 compounds have been identified in the oil isolated from the aerial parts of M.
View Article and Find Full Text PDFInt J Syst Evol Microbiol
January 2025
Dpartement de Biotechnologie, Laboratoire des Productions, Valorisations Vgtales et Microbiennes (LP2VM), Facult des Sciences de la Nature et de la Vie, B.P. 1505, El-Mnaour, Universit des Sciences et de la Technologie dOran Mohamed Boudiaf USTO-MB, Oran 31000, Algeria.
A thorough polyphasic taxonomic study, integrating genome-based taxonomic approaches, was carried out to characterize the RB5 strain isolated from root nodules of growing on the coastal dunes of Bousfer Beach (Oran, Algeria). The 16S rRNA gene sequence analysis revealed that strain RB5 had the highest similarity to LMG27940 (98.94%) and IzPS32d (98.
View Article and Find Full Text PDFMicroorganisms
December 2024
Center for Molecular and Cellular Biology, 121205 Moscow, Skolkovo, Russia.
In our large-scale search for antimicrobial-producing bacteria, we isolated an actinomycete strain from rhizospheric soil of . The strain designated BP-8 showed noticeable antibacterial activity. BP-8 was subjected to a whole-genome analysis via a polyphasic taxonomy approach, and its antibacterial metabolite was identified by HRLS-MS.
View Article and Find Full Text PDFBMC Plant Biol
November 2024
Botany Department, Faculty of Science, Tanta University, Tanta, 31111, Egypt.
The genus Ficus of the family Moraceae, is one of the largest genera of angiosperms, with diverse pharmaceutical applications and biological activities. The traditional approaches based on the morphological traits have been frequently implemented for taxonomical identification of the different taxa of Ficus, however, encompassing these features are quite laborious, due to the dependence of these phenotypic traits on the environmental conditions. So, authenticating the taxonomical identity of the Ficus taxa with molecular barcoding and metabolic profiling, as relatively stable traits, could be a relevant approach for confirming the traditional phenotypic traits of this genus.
View Article and Find Full Text PDFInt J Syst Evol Microbiol
October 2024
Teagasc Food Research Centre, Moorepark, Cork, Ireland.
Four strains, representing two novel species, were isolated from water kefir, a fermented beverage. 16S rRNA gene analysis suggested that the novel species share high identities (98.82-98.
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