The antioxidants in goji berry (Lycium spp.) fruits might confer many health protective benefits by alleviating oxidative stress. The aim of this study was to describe quality traits and the level of potentially bioactive compounds (HPLC fingerprint) and their influence on fruit phytocomplex and antioxidant activity in goji in comparison to the most common fruits. Goji berry was identified as a rich source of antioxidant compounds, with health-promoting properties comparable to other common fruit species.The obtained fingerprint may be useful to better understand the nutraceutical traits of this species recently considered as functional food thanks to its antioxidant properties.
Modern food production is very diverse with high levels of specialisation and complexity. These features inevitably reflect on methods in the application of LCA to food products and agro-systems. System boundaries, functional units, allocation procedures and several other aspects contribute to there being substantial differentiation in the structure of LCA applications in fruit production systems, leading to significantly different results. Indeed, although scientific literature on the topic is recent and not particularly extensive, there are already many different ways of conducting LCAs in orchards. The aim of this paper is to propose a framework for selecting the best parameters for an LCA application in fruit production systems according to the objective of the study. This has been achieved by reviewing the scientific and technical literature on the topic. In particular papers from international journals and conference proceedings have been considered and the review has covered all main aspects for conducting an LCA in fruit production systems. The particular characteristics considered were objectives, system boundaries, the product considered, the functional unit, data origin and the environmental impact assessment method used. A substantial part of the paper is devoted to the modelling of the orchard, as this is key to a reliable application of any impact assessment approach. Rather than merely describing the theoretical model, this paper presents concrete recommendations about how to build the orchard system for LCA application avoiding over or under-estimations of the different orchard stages.
With the diffusion of commercial apple varieties since the second half of the last century, hundreds of different local cultivars rapidly disappeared from orchards in Italy, and the particular quality attributes of these fruits are still at risk of being lost today. The aim of this research was to use sensory, nutritional and genetic techniques in order to define the overall quality of fruits from ancient apple cultivars grown in Northern Italy. Cluster analysis arranged the 10 genotypes into five groups; in most cases, the analyzed cultivars demonstrated higher sensory and nutritional qualities than the control (Golden Delicious cv). The cultivars showed higher values of total polyphenolic compounds and a stronger antioxidant activity. The vitamin C content also differed from the control. The sensory analysis, performed by the Fruit Tasters Italian Organization, was an effective characterization tool and genetic analysis further helped to characterize the identity of these interesting cultivars. PRACTICAL APPLICATIONSThe characterization and valorization of old apple cultivars are essential to avoid loss of potentially useful germplasm. The reduction of biodiversity of cultivars found in agriculture could lead to problems such as higher susceptibility to widespread outbreaks of plant diseases and pests, and at the same time, the loss of precious source of nutrients. The conservation of apple biodiversity is valuable in order to maintain the gene pool of the species and to introduce superior quality traits into apple-breeding programs.bs_bs_banner Journal of Food Quality
Centuries of co-evolution between Castanea spp. biodiversity and human populations has resulted in the spread of rich and varied chestnut genetic diversity throughout most of the world, especially in mountainous and forested regions. Its plasticity and adaptability to different pedoclimates and the wide genetic variability of the species determined the spread of many different ecotypes and varieties in the wild. Throughout the centuries, man has used, selected and preserved these different genotypes, vegetatively propagating them by grafting, for many applications: fresh consumption, production of flour, animal nutrition, timber production, thereby actively contributing to the maintenance of the natural biodiversity of the species, and providing an excellent example of conservation horticulture.Nonetheless, currently the genetic variability of the species is critically endangered and hundreds of ecotypes and varieties are at risk of being lost due to a number of phytosanitary problems (canker blight, Chryphonectria parasitica; ink disease, Phytophthora spp.; gall wasp, Dryocosmus kuriphilus), and because of the many years of decline and abandonment of chestnut cultivation, which resulted in the loss of the binomial male chestnut. Recently, several research and experimentation programmes have attempted to develop strategies for the conservation of chestnut biodiversity. 3The purpose of this paper is to give an overview of the status of biodiversity conservation of the species and to present the results of a 7 year project aimed at the individuation and study of genetic diversity and conservation of Castanea spp. germplasm.
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