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Phenotypic variability and modelling of root structure of wild Lupinus angustifolius genotypes

机译:野生羽扇豆基因型的表型变异和根结构建模

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摘要

Root plasticity in response to the edaphic environment represents a challenge in the quantification of phenotypic variation in crop germplasm. The aim of this study was to use various growth systems to assess phenotypic variation among wild genotypes of Lupinus angustifolius.Ten wild genotypes of L. angustifolius selected from an earlier phenotyping study were grown in three different growth systems: semi-hydroponics, potting-mix filled pots, and river-sand filled pots.Major root-trait data collected in the present study in the semi-hydroponic growth system were strongly correlated with those from the earlier large phenotyping trial. Plants grown in the two solid media had some of the measured parameters significantly correlated. Principal component analysis captured the major variability in three (semi-hydroponics) or four (solid media) principal components. The genotypes were grouped into five clusters for each growth media, but cluster composition varied among the media. We found genetic variation and phenotypic plasticity in some root traits among tested genotypes. Using input parameters derived from the semihydroponic phenotyping system, simulation models (ROOTMAP and SimRoot) closely reproduced the root systems of a diverse range of lupin genotypes.Wild L. angustifolius genotypes displayed genetic variation and phenotypic plasticity when exposed to various growth conditions. The consistent ranking of genotypes in the semihydroponic phenotyping system and the two solid media confirmed the capacity of the semihydroponic phenotyping system of providing simple and relevant growing conditions. The results demonstrated the utility of this system in gathering the data for parameterising the simulation models of root architecture.
机译:响应于水生环境的根可塑性代表了作物种质表型变异的量化挑战。本研究的目的是利用各种生长系统评估羽扇豆野生基因型之间的表型变异。从较早的表型研究中选择的十个野生基因型猕猴桃在三种不同的生长系统中生长:半水培,盆栽混合半水培生长系统中本研究收集的主要根性状数据与早期大型表型试验的数据密切相关。在两种固体培养基中生长的植物具有一些相关的实测参数。主成分分析捕获了三个(半水培)或四个(固体培养基)主成分的主要变异性。对于每种生长培养基,基因型被分为五个簇,但是簇的组成在培养基之间有所不同。我们发现基因型之间的某些根性状的遗传变异和表型可塑性。模拟模型(ROOTMAP和SimRoot)使用来自半水培表型系统的输入参数,紧密地复制了多种羽扇豆基因型的根系。野生的古铜色L.在半水培表型系统和两种固体培养基中基因型的一致排名证实了半水培表型系统提供简单且相关的生长条件的能力。结果证明了该系统在收集数据以参数化根体系结构仿真模型方面的实用性。

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