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Genetic Diversity of Andean Tuber Crop Species in the in situ Microcenter of Huanuco, Peru

机译:秘鲁瓦努科原位微中心安第斯块茎作物品种的遗传多样性

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Andean tuber crop species oca (Oxalis tuberosa Molina), ulluco (Ullucus tuberosus Caldas), and mashua (Tropaeolum tuberosum Ruiz & Pav.) play major roles in Andean communities. These species show high variability but are threatened with genetic erosion. To study the management of genetic resources of neglected vegetatively propagated crop species, we studied genetic diversity and structure of these species in an in situ diversity microcenter (Huanuco, Peru). A sample of 15 varieties of oca, 15 of ulluco, and 26 of mashua was analyzed with the inter simple sequence repeats (ISSR) molecular markers. Mean genetic distances and global genetic diversities were high for the three species, with higher values for mashua than for oca and ulluco. Assignment technique divided both oca and ulluco samples into two genetic clusters; the mashua sample probably belongs to a single genetic cluster. Inter simple sequence repeats (ISSR) technique showed intravarietal genetic variability for most varieties, suggesting an underestimation of the in situ genetic variability. These results are discussed considering how variation in breeding systems and farmers' practice influenced patterns of genetic diversity. Our findings confirm the hypothesis of a considerable amount of variability found in neglected Andean tubers and are essential to deserve adequate conservation strategies and to maintain genetic resources of neglected Andean tuber crop species under a threat of genetic erosion.
机译:安第斯块茎作物物种oca(Oxalis tuberosa Molina),ulluco(Ullucus tuberosus Caldas)和mashua(Tropaeolum tuberosum Ruiz&Pav。)在安第斯社区中发挥着重要作用。这些物种表现出高变异性,但受到遗传侵蚀的威胁。为了研究被忽视的无性繁殖作物物种的遗传资源管理,我们在一个原位多样性微中心(秘鲁瓦努科)研究了这些物种的遗传多样性和结构。使用内部简单序列重复(ISSR)分子标记分析了15种oca,15种ulluco和26种mashua的样品。这三个物种的平均遗传距离和全球遗传多样性都很高,而与oca和ulluco相比,mashua的价值更高。分配技术将oca和ulluco样本分为两个遗传簇。 mashua样本可能属于单个遗传簇。间简单序列重复(ISSR)技术显示了大多数品种的品种内遗传变异性,表明对原位遗传变异性的低估。考虑到育种系统和农民实践的变化如何影响遗传多样性的模式,讨论了这些结果。我们的发现证实了在被忽视的安第斯块茎中发现大量可变性的假设,对于应采取适当的保护策略和在遗传侵蚀的威胁下维持被忽视的安第斯块茎作物物种的遗传资源至关重要。

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