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Molecular and environmental analysis of Campania (Italy) sweet cherry (Prunus avium L.) cultivars for biocultural refugia identification and conservation

机译:坎帕尼亚(意大利)甜樱桃(Prunus avium L.)品种的分子和环境分析,用于生物文化保护和鉴定

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Conservation of agrobiodiversity is a major concern worldwide. Several strategies have been designed and programmed to reduce biodiversity erosion due to anthropic and non-anthropic causes. To this end, we set up a multidisciplinary approach based on the genetic analysis of selected cultivars and recognition of the environmental parameters. We genotyped the sweet cherry cultivars of Campania region in southern Italy by using simple sequence repeats and further investigated them by cluster analysis, disclosing a homogeneous genetic constitution, different from that of commercial accessions. By structure analysis we identified three distinct genetic clusters, each characterized by common and distinct alleles. Survey of the cultivars' geographical distribution by quartic kernel function identified four preferred districts further characterized for soil origin, pedologic, agronomic features and urbanization impact. We correlated these environmental parameters, typical of the identified areas, with the three genetic pools and found a statistically significant association for each cluster. When we overlaid the cultivation traditions and cultural heritage, we found they have a dominant role; on these premises, we generated new territorial maps. In conclusion, we propose a novel methodological approach based on molecular, geo-pedological and cultural parameters with the aim to recognize biocultural refugia and preserve endangered or valuable cultivars.
机译:农业生物多样性的保护是全世界的主要关注点。为了减少由于人类和非人类原因造成的生物多样性侵蚀,已经设计并制定了几种策略。为此,我们基于所选品种的遗传分析和环境参数的识别建立了多学科方法。我们使用简单的序列重复序列对意大利南部坎帕尼亚地区的甜樱桃品种进行了基因分型,并通过聚类分析对其进行了进一步研究,揭示了与商业登录品种不同的同质遗传构成。通过结构分析,我们确定了三个不同的遗传簇,每个簇均具有共同的和不同的等位基因。通过四次核函数对品种的地理分布进行调查,确定了四个首选地区,这些地区进一步针对土壤来源,土壤学,农艺学特征和城市化影响进行了表征。我们将典型的已识别区域的这些环境参数与三个遗传库相关联,并发现每个簇在统计上具有显着关联。当我们覆盖耕作传统和文化遗产时,我们发现它们具有主导作用。在这些前提下,我们生成了新的领土图。总之,我们提出了一种基于分子,地理学和文化参数的新颖方法论方法,旨在认识生物文化的避难所并保护濒危或有价值的品种。

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