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首页> 外文期刊>Theoretical and Applied Genetics >Substitutes for genome differentiation in tuber-bearing Solanum: interspecific pollen-pistil incompatibility, nuclear-cytoplasmic male sterility, and endosperm
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Substitutes for genome differentiation in tuber-bearing Solanum: interspecific pollen-pistil incompatibility, nuclear-cytoplasmic male sterility, and endosperm

机译:马铃薯块茎基因组分化的替代品:种间花粉雌蕊不相容,核胞质雄性不育和胚乳

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摘要

The cultivated potato, Solanum tuberosum L. (2n=4x=48), has a very large number of related wild and cultivated tuber-bearing species widely distributed in the Americas. These species, grouped in 16 taxonomic series, range from the diploid to the hexaploid level. Polyploid species are either disomic or polysomic, and sexual polyploidization via genetically controlled 2n gametes has played a major role in their evolution. Species are separated in nature by geographical and ecological barriers. However, there are several examples of sympatric species that share the same niches but do not readily cross (i.e., the diploids S. commersonii and S. chacoense in certain areas of Argentina). External barriers alone are, therefore, not sufficient to explain species integrity. In addition, there is no strong evidence indicating that genome differentiation is important in the group. In this review we present evidence supporting the assertion that interspecific pollen-pistil incompatibility, nuclear-cytoplasmic male sterility, and the endosperm are major forces that strengthen the external hybridization barriers allowing, at the same time and under specific circumstances, a certain amount of gene exchange without jeopardizing the integrity of the species.
机译:栽培马铃薯Solanum tuberosum L.(2n = 4x = 48),具有大量在美洲广泛分布的相关野生和栽培块茎物种。这些物种分为16个分类系列,范围从二倍体到六倍体。多倍体物种是二体的或多体的,通过基因控制的2n配子进行的有性多倍体化在其进化中发挥了重要作用。自然界中的物种被地理和生态障碍所分隔。但是,有几个同胞物种共有相同的生态位但不容易杂交的例子(即阿根廷某些地区的二倍体S. commersonii和S. chacoense)。因此,仅凭外部障碍不足以解释物种的完整性。另外,没有强有力的证据表明基因组分化在该组中很重要。在这篇综述中,我们提供了支持以下观点的证据:种间花粉雌蕊不相容,核质细胞质雄性不育和胚乳是加强外部杂交障碍的主要力量,在同一时间和特定情况下,可以允许一定量的基因交换而不会损害物种的完整性。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第7期|1369-1376|共8页
  • 作者单位

    Estación Experimental Agropecuaria Balcarce Instituto Nacional de Teconología Agropecuaria (INTA) Facultad de Cs. Agrarias Universidad Nacional de Mar del Plata (UNMdP) and Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET);

    DISSPA Department of Soil Plant and Environmental Sciences University of Naples “Federico II”;

    Department of Horticulture University of Wisconsin;

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