Nuclear SSR-based genetic diversity and STRUCTURE analysis of Greek tomato landraces and the Greek Tomato Database (GTD)

Androniki C. Bibi, John Marountas, Konstantina Katsarou, Anastasios Kollias, Pavlos Pavlidis, Eleni Goumenaki, Dimitris Kafetzopoulos
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Abstract

Tomato has been cultivated in Greece for more than 200 years, even though is not native to the country. Greece with a favourable environment all-round the year, has become a major competitor in tomato production around Europe. However, there is an increasing demand to improve tomato crop, to withstand harsh environmental conditions (extreme temperatures, salinity, etc.), and to develop high-quality final products. People have devoted a significant effort to crop improvement through phenotypic screening resulting in a large number of tomato landraces. An increasing demand to clarify the relationships among local tomato landraces and hybrids utilizing the most preferred molecular markers the simple sequence repeats (SSR-markers) is the main objective of this study. Twenty-seven tomato landraces and two tomato hybrids cultivated in Crete, Greece, were genotyped utilizing eleven simple sequence repeats (SSR) along with the Structure analysis of the germplasm. A neighbour-joining dendrogram of the 27 landraces and the two hybrids was produced. The Structure analysis indicated that nine ancestral populations are hidden inside the group of all the genotypes tested, using Evanno's method. The final objective was to make these data publicly available through the first Greek relational database (Greek Tomato Database-GTD). GTD was developed allowing the users to update and enrich the database, with new and supplemental information. This work is the first molecular fingerprint of the 27 landraces of Greece which is documented along with the phenotypic information in the GTD.
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基于核 SSR 的希腊番茄陆生品系遗传多样性和 STRUCTURE 分析以及希腊番茄数据库 (GTD)
尽管番茄不是希腊的原产作物,但希腊种植番茄已有 200 多年的历史。希腊全年气候适宜,已成为欧洲番茄生产的主要竞争者。然而,人们对改良番茄作物、抵御恶劣环境条件(极端温度、盐度等)以及开发优质最终产品的需求日益增长。人们在通过表型筛选进行作物改良方面付出了巨大努力,从而培育出了大量番茄陆生品系。本研究的主要目的是利用最常用的分子标记--简单序列重复(SSR 标记)来阐明当地番茄地方品种和杂交品种之间的关系。利用 11 个简单序列重复序列(SSR)和种质结构分析对希腊克里特岛种植的 27 个番茄地方品种和 2 个番茄杂交种进行了基因分型。绘制了 27 个地方品种和两个杂交种的邻接树枝图。结构分析表明,利用埃文诺方法,在所有测试基因型的群体中隐藏着九个祖先种群。最终目标是通过希腊第一个关系数据库(希腊番茄数据库-GTD)公开这些数据。GTD 的开发允许用户利用新的补充信息更新和丰富数据库。这项工作是希腊 27 个陆地品种的首个分子指纹图谱,与表型信息一起记录在 GTD 中。
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