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Should we treat the ionome as a combination of individual elements or should we be deriving novel combined traits?

机译:我们应该将离子组视为单个元素的组合还是应该衍生出新颖的组合特征?

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摘要

It has been more than 10 years since the concept of the ionome, all of the mineral nutrients in a cell tissue or organism, was introduced. In the intervening years, ionomics, high throughput elemental profiling, has been used to analyse over 400 000 samples from at least 10 different organisms. There are now multiple published examples where an ionomics approach has been used to find genes of novel function, find lines or environments that produce foods with altered nutritional profiles, or define gene by environmental effects on elemental accumulation. In almost all of these studies, the ionome has been treated as a collection of independent elements, with the analysis repeated on each measured element. However, many elements share chemical properties, are known to interact with each other, or have been shown to have similar interactions with biological molecules. Accordingly, there is strong evidence from ionomic studies that the elements of the ionome do not behave independently and that combinations of elements should be treated as the phenotypes of interest. In this review, I will consider the evidence that we have for the interdependence of the ionome, some of its causes, methods for incorporating this interdependence into analyses and the benefits, drawbacks, and challenges of taking these approaches.
机译:自从引入离子组的概念以来已有十多年了,离子组是细胞组织或生物体中所有矿物质的营养成分。在过去的几年中,ionomics,高通量元素分析已用于分析至少10种不同生物的40万个样品。现在有多个已发表的例子,其中使用了一种经济学方法来寻找具有新功能的基因,寻找生产出具有营养成分改变的食物的品系或环境,或者通过环境对元素积累的影响来定义基因。在几乎所有这些研究中,离子组均被视为独立元素的集合,并对每个被测元素重复进行分析。然而,许多元素具有化学性质,已知彼此相互作用或已显示与生物分子具有相似的相互作用。因此,从基因组学研究中有强有力的证据表明,离子组的元素不能独立发挥作用,并且应该将元素的组合视为感兴趣的表型。在这篇综述中,我将考虑我们对于离子组的相互依赖性,其某些原因,将这种相互依赖性纳入分析的方法以及采用这些方法的利弊和挑战的证据。

著录项

  • 期刊名称 Journal of Experimental Botany
  • 作者

    Ivan Baxter;

  • 作者单位
  • 年(卷),期 -1(66),8
  • 年度 -1
  • 页码 2127–2131
  • 总页数 5
  • 原文格式 PDF
  • 正文语种
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