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Introduction bottleneck and the contribute of Mesoamerican and Andean gene pools to common bean (Phaseolus vulgaris L.) diversity in Europe.

Giuseppina Logozzo, Tania Gioia, Giovanna Attene, Valeria Negri, Stefano Benedettelli, Roberto Papa, Pierluigi Spagnoletti Zeuli

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Abstract

Common bean (Phaseolus vulgaris L., 2n = 2x = 22) is the most important edible food legume for direct human consumption in Europe and in the world as it represents a valuable source of proteins, vitamins, fibres, and minerals. Genetic and archaeological studies have shown that domestication of P. vulgaris was originated and domesticated in the New World and has two major gene pools, the Andean and the Mesoamerican, based on their centers of origin in South and Central America, respectively. After the first voyages of Columbus (1492) common bean was brought to Europe but historical and linguistic sources provide little evidence of the introduction and expansion of common bean in Europe. In common bean a large number of nuclear microsatellite markers (nuSSRs) have been already developed and mapped that show relatively high levels of polymorphism, thus providing an attractive choice for describing population structure. However, to the best of our knowledge, population studies of the European common bean, using nuSSRs, so far have been performed with only a small number of landraces or a small number of samples from a few geographic regions. In the present study, we used thirteen highly polymorphic nuSSRs to assess\nthe genetic structure and level of diversity of a large collection of European landraces (256\nindividuals), in comparison with a representative American sample (89 individuals). Moreover, to\nobtain a detailed picture and to elucidate the effects of bottleneck of introduction and selection for\nadaptation during the expansion of common bean over the whole Europe, we also complemented\nthe nuSSRs analysis by information provided by a Bayesian analysis implemented in\nSTRUCTURE. Here, we present and discuss the role that inter-gene pool hybridization have had in\nshaping the genetic structure of the European bean landraces. The implication for evolution and the\nadvantages for common bean breeding are also discussed.

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Common bean (Phaseolus vulgaris L., 2n = 2x = 22) is the most important edible food legume for direct human consumption in Europe and in the world as it represents a valuable source of proteins, vitamins, fibres, and minerals. Genetic and archaeological studies have shown that domestication of P. vulgaris was originated and domesticated in the New World and has two major gene pools, the Andean and the Mesoamerican, based on their centers of origin in South and Central America, respectively. After the first voyages of Columbus (1492) common bean was brought to Europe but historical and linguistic sources provide little evidence of the introduction and expansion of common bean in Europe. In common bean a large number of nuclear microsatellite markers (nuSSRs) have been already developed and mapped that show relatively high levels of polymorphism, thus providing an attractive choice for describing population structure. However, to the best of our knowledge, population studies of the European common bean, using nuSSRs, so far have been performed with only a small number of landraces or a small number of samples from a few geographic regions. In the present study, we used thirteen highly polymorphic nuSSRs to assess\nthe genetic structure and level of diversity of a large collection of European landraces (256\nindividuals), in comparison with a representative American sample (89 individuals). Moreover, to\nobtain a detailed picture and to elucidate the effects of bottleneck of introduction and selection for\nadaptation during the expansion of common bean over the whole Europe, we also complemented\nthe nuSSRs analysis by information provided by a Bayesian analysis implemented in\nSTRUCTURE. Here, we present and discuss the role that inter-gene pool hybridization have had in\nshaping the genetic structure of the European bean landraces. The implication for evolution and the\nadvantages for common bean breeding are also discussed.

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Available abstract

Common bean (Phaseolus vulgaris L., 2n = 2x = 22) is the most important edible food legume for direct human consumption in Europe and in the world as it represents a valuable source of proteins, vitamins, fibres, and minerals. Genetic and archaeological studies have shown that domestication of P. vulgaris was originated and domesticated in the New World and has two major gene pools, the Andean and the Mesoamerican, based on their centers of origin in South and Central America, respectively. After the first voyages of Columbus (1492) common bean was brought to Europe but historical and linguistic sources provide little evidence of the introduction and expansion of common bean in Europe. In common bean a large number of nuclear microsatellite markers (nuSSRs) have been already developed and mapped that show relatively high levels of polymorphism, thus providing an attractive choice for describing population structure. However, to the best of our knowledge, population studies of the European common bean, using nuSSRs, so far have been performed with only a small number of landraces or a small number of samples from a few geographic regions. In the present study, we used thirteen highly polymorphic nuSSRs to assess\nthe genetic structure and level of diversity of a large collection of European landraces (256\nindividuals), in comparison with a representative American sample (89 individuals). Moreover, to\nobtain a detailed picture and to elucidate the effects of bottleneck of introduction and selection for\nadaptation during the expansion of common bean over the whole Europe, we also complemented\nthe nuSSRs analysis by information provided by a Bayesian analysis implemented in\nSTRUCTURE. Here, we present and discuss the role that inter-gene pool hybridization have had in\nshaping the genetic structure of the European bean landraces. The implication for evolution and the\nadvantages for common bean breeding are also discussed.

Key concepts: Phaseolus, Gene pool, Biology, Bottleneck, Diversity (politics), Geography, Botany, Genetic diversity

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Introduction bottleneck and the contribute of Mesoamerican and Andean gene pools to common bean (Phaseolus vulgaris L.) diversity in Europe. — Research Paper | ScholarLens