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Large Scale Phenotyping Provides Insight into the Diversity of Vegetative and Reproductive Organs in a Wide Collection of Wild and Domesticated Peppers (Capsicum spp.)

机译:大规模的表型术语在广泛的野生和驯化辣椒(Capsicum SPP)中提供了对植物和生殖器官的多样性的洞察力

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摘要

In the past years, the diversity of Capsicum has been mainly investigated through genetics and genomics approaches, fewer efforts have been made in the field of plant phenomics. Assessment of crop traits with high-throughput methodologies could enhance the knowledge of the plant phenome, giving at the same time a key contribution to the understanding of the function of many genes. In this study, a wide germplasm collection of 307 accessions retrieved from 48 world regions, and belonging to nine Capsicum species was characterized for 54 plant, leaf, flower and fruit traits. Conventional descriptors and semi-automated tools based on image analysis and colour coordinate detection were used. Significant differences were found among accessions, between species and between sweet and spicy cultivated types, revealing a large diversity. The results highlighted how the domestication process and the continued selection have increased the variability of fruit shape and colour. Hierarchical clustering based on conventional and fruit morphological descriptors reflected the separation of species on the basis of their phylogenetic relationships. These observations suggested that the flow between distinct gene pools could have contributed to determine the similarity of the species on the basis of morphological plant and fruit parameters. The approach used represents the first high-throughput phenotyping effort in Capsicum spp. aimed at broadening the knowledge of the diversity of domesticated and wild peppers. The data could help to select best the candidates for breeding and provide new insight into the understanding of the genetic base of the fruit shape of pepper.
机译:在过去几年中,辣椒的多样性主要通过遗传和基因组学方法来研究,植物表情领域已经造成的努力减少。具有高通量方法的作物特征的评估可以增强植物缺陷的知识,同时给予对许多基因功能的理解的关键贡献。在这项研究中,从48个世界地区检索的307种附加的宽种质收集,属于九种胶囊物种,适用于54种植物,叶,花和果实性状。使用基于图像分析和颜色坐标检测的传统描述符和半自动工具。在物种和甜味和辛辣栽培类型之间的饲料中发现了显着差异,揭示了大的多样性。结果强调了驯化过程和持续的选择如何增加果实形状和颜色的可变性。基于常规和果实形态描述符的分层聚类反映了物种的分离,基于它们的系统发育关系。这些观察结果表明,不同的基因库之间的流动可能导致基于形态植物和果实参数确定物种的相似性。所用方法代表了辣椒SPP中的第一种高通量表型努力。旨在扩大驯化和野辣椒的多样性的知识。这些数据可以帮助选择最佳育种者进行繁殖,并为对胡椒果实形状的遗传基础的理解提供新的洞察力。

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