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A test of taxonomic and biogeographic predictivity: resistance to Potato virus Y in wild relatives of the cultivated potato.

机译:分类学和生物地理学可预测性测试:栽培马铃薯的野生近缘种对马铃薯i病毒的抗性。

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A major justification for taxonomic research is its assumed ability to predict the presence of traits in a group for which the trait has been observed in a representative subset of the group. Similarly, populations in similar environments are expected to be more alike than populations in divergent environments. Consequently, it is logical to assume that taxonomic relationships and biogeographical data have the power to predict the distribution of disease resistance phenotypes among plant species. The objective of this study was to test predictivity in a group of widely distributed wild potato species, based on hypotheses that closely related organisms (taxonomy) or organisms from similar environments (biogeography) share resistance to a simply inherited trait (Potato virus Y [PVY]). We found that wild potato species with an endosperm balance number (EBN) of 1 (a measure of cross compatibility) shared resistances to PVY more than species with different EBN values. However, a large amount of variation was found for resistance to PVY among and within species. We also found that populations from low elevations were more resistant than those from high elevations. Because PVY is vectored by aphids, we speculate that the distribution of aphids may determine the level of selection pressure for PVY resistance.Digital Object Identifier http://dx.doi.org/10.1094/PHYTO-02-11-0060
机译:分类学研究的一个主要理由是它具有预测一组特征的存在的能力,而该特征已在该组的代表性子集中被观察到。同样,在类似环境中的种群比在不同环境中的种群更相似。因此,合理的假设是分类学关系和生物地理数据具有预测植物物种间抗病表型分布的能力。这项研究的目的是基于一组假设,即紧密相关的生物(分类学)或来自相似环境的生物(生物地理学)具有对简单遗传性状(马铃薯病毒)的抗性的假设Y [PVY])。我们发现胚乳平衡数(EBN)为1(交叉相容性的一种度量)的野生马铃薯物种比具有不同EBN值的物种对PVY的抵抗力更大。然而,发现物种之间和内部对PVY的抗性有很大的差异。我们还发现,低海拔地区的人口比高海拔地区的人口更具抵抗力。由于PVY是由蚜虫引导的,因此我们推测蚜虫的分布可能决定PVY抗性的选择压力水平。数字对象标识符http://dx.doi.org/10.1094/PHYTO-02-11-0060

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