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High-throughput phenotyping of an apple core collection: identification of genotypes with high water use efficiency

机译:苹果核心收集的高吞吐量表型:鉴定水使用效率高的基因型

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摘要

To detect genotypeswith high water use efficiency (WUE) in apple [Mams x domestica), 193 genotypes from an INRA core collection were evaluated in 2014. Eight grafted replicates per genotype grown as one-year-old scions were studied in a high-throughput phenotyping platform (PhenoArch). Individual pot weight was recorded twice a day and irrigation was scheduled for 46 days according to two irrigation treatments: well-watered (WW), maintaining soil water content (SWC) at 1.4 gg1; and water stress (WS),reducing SWC until 0.7 g g1 and maintaining this value for ten days. For each genotype, half of the replicates were WW while the other half were grown under WS. Plant 3D images were automatically acquired every two days. Analysis of images and pot weight differences allowed the estimation of the accumulated whole-plant biomass (A_Bio) and transpiration (Plant_T) during the experiment. WUE was calculated as the ratio A_Bio/Plant_T. A_Bio and WUE had a higher genetic variation than Plant_T under WW and WS conditions. The genetic variation in WUE is a promising result, indicating that available genetic resources such as the INRA core collection could be useful to improve apple plant material for the use of water. WS reduced A_Bio and Plant_T but the reduction was less evident in WUE. Some genotypes had similar WUE values under WW and WS conditions. We identified of a group of 38 genotypes with high WUE under WW and WS. The existence of genotypes with high WUE whatever the water regime in apple may encourage apple breeders to consider the use of these genotypes as potential parents for improving apple plant material for the use of water.
机译:为了检测苹果[MAMS X Diverianda的高水分使用效率(WUE),2014年评估了来自InRA核心收集的193种基因型。在高吞吐量中研究了作为一岁的间隙生长的每种基因型的八个嫁接复制表型平台(Phenoarch)。每日两次记录单个罐重量,根据两种灌溉治疗,调度灌溉46天:浇水(WW),将土壤含水量(SWC)保持在1.4 gg1;和水胁迫(WS),减少SWC直至0.7g G1,并保持该值10天。对于每种基因型,一半的重复是WW,而另一半在WS下生长。植物3D图像每天一次自动获得。图像和盆栽重量差异分析允许在实验期间估计积累的全植物生物质(A_BIO)和蒸腾(Plant_t)。 WUE被计算为比率A_BIO / PLANT_T。 A_BIO和WUE在WW和WS条件下比Plant_t具有更高的遗传变异。 Wue的遗传变异是一个有前途的结果,表明可用的遗传资源如InRA核心系列可能有助于改善苹果植物材料用于使用水。 WS减少A_BIO和Plant_t,但在WUE中减少不太明显。一些基因型在WW和WS条件下具有类似的WUE值。我们在WW和WS下鉴定了一组38种基因型,高WUE。在苹果中的水制革中有什么基因型的存在可能会鼓励苹果育种者考虑使用这些基因型作为潜在的父母来改善苹果植物材料使用水。

著录项

  • 来源
    《Acta Horticulturae 》 |2017年第1150期| 共6页
  • 作者单位

    INRA UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

    INRA UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

    INRA UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

    INRA UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

    Montpellier SupAgro UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

    Institut de Recherche en Horticulture et Semences - UMR 1345 INRA SFR 4207 QuaSaV Beaucouze Cedex France;

    INRA UMR 1334 AGAP CIRAD-INRA-Montpellier SupAgro Architecture and functioning of fruit species TA A-96/03 34398 Montpellier Cedex 5 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺 ;
  • 关键词

    drought; Malus x domestica Borkh.; plant biomass; plant breeding; plant transpiration; soil water restriction; water stress;

    机译:干旱;Malus x Domestica Borkh。;植物生物质;植物育种;植物蒸腾;土壤水限制;水胁迫;

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