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Elevated field atmospheric CO2 concentrations affect the characteristics of winter wheat (cv. Bologna) grains

机译:升高的田间大气二氧化碳浓度影响冬小麦(CV.Bologna)谷物的特征

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摘要

The aim of this study was to investigate the impact of elevated concentration of carbon dioxide (CO2), as expected over coming decades, on yield and quality of winter bread wheat (Triticum aestivum L.). Plants (cv. Bologna) were grown by using the free-air CO2 enrichment (FACE) system at Fiorenzuola d'Arda under ambient (control) and elevated (570 ppm, e[CO2]) CO2 concentrations for two growing seasons. We addressed whether there would be a response of wheat grains to elevated CO2 concentration in terms of the contents of nitrogen (N), micro-and macronutrients, proteins and free amino acids. Under e[CO2], total wheat biomass and grain yield increased in both years of the study. GrainNpercentage was reduced under e[CO2], but grain N yield (kg ha(-1)) was increased. Among macro-and micronutrients, a decrease in zinc concentration was observed. The proteome pattern was significantly different in grains grown at the two differentCO(2) levels, but the observed changes were highly dependent on interactions with prevailing environmental conditions. Finally, a negative trend was observed in the early germination rates of seeds from plants grown under e[CO2] compared with the controls. The results suggest that the expected increase in CO2 levels and their interactive effects with environmental variables may influence agronomic performance by increasing yield and negatively affecting quality.
机译:本研究的目的是探讨升高的二氧化碳浓度(CO2)的影响,如未来几十年的预期,冬季面包小麦的产量和质量(Triticum Aestivum L.)。通过在环境(对照)下使用Fiorenzuola d'Arda的自由空气CO 2富集(面)系统来生长植物(CV。博洛尼亚)和升高(570ppm,E [CO2])二氧化碳浓度的两个生长季节。我们在氮气(n),微型和Macronrerients,蛋白质和游离氨基酸的含量方面,在麦粒粒度是否存在对小麦颗粒的反应。在E [CO2]下,两年内的研究总体生物量和籽粒产量增加。在e [CO2]下,粒度降低,但谷粒N产率(Kg Ha(-1))。在宏观和微量营养素中,观察到锌浓度的降低。在两种不同的(2)水平生长的颗粒中蛋白质组图案显着不同,但观察到的变化高度依赖于与普遍环境条件的相互作用。最后,与对照相比,在E [CO2]下生长的植物的早期萌发率中观察到负趋势。结果表明,通过增加产量和对质量产生负面影响,CO2水平的预期增加及其与环境变量的互动效应可能会影响农艺性能。

著录项

  • 来源
    《Crop & Pasture Science》 |2017年第8期|共13页
  • 作者单位

    Univ Insubria Dipartimento Biotecnol &

    Sci Vita Via JH Dunant 3 I-21100 Varese Italy;

    CREA GB Res Ctr Genom &

    Bioinformat Via San Protaso 302 I-29017 Fiorenzuola Darda Piacenza Italy;

    CREA GB Res Ctr Genom &

    Bioinformat Via San Protaso 302 I-29017 Fiorenzuola Darda Piacenza Italy;

    CREA GB Res Ctr Genom &

    Bioinformat Via San Protaso 302 I-29017 Fiorenzuola Darda Piacenza Italy;

    CREA GB Res Ctr Genom &

    Bioinformat Via San Protaso 302 I-29017 Fiorenzuola Darda Piacenza Italy;

    Univ Campania Luigi Vanvitelli Dipartimento Sci &

    Tecnol Ambientali Biol &

    Farma Via Vivaldi 43 I-81100 Caserta Italy;

    CREA CI Res Ctr Cereal &

    Ind Crops SS 16 Km 675 I-71121 Foggia Italy;

    CNR IBIMET Ist Biometeorol Via G Caproni 8 I-50145 Florence Italy;

    CNR IBIMET Ist Biometeorol Via G Caproni 8 I-50145 Florence Italy;

    CREA CI Res Ctr Cereal &

    Ind Crops Via Corticella 133 I-40128 Bologna Italy;

    Univ Insubria Dipartimento Biotecnol &

    Sci Vita Via JH Dunant 3 I-21100 Varese Italy;

    Univ Insubria Dipartimento Biotecnol &

    Sci Vita Via JH Dunant 3 I-21100 Varese Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业科学;
  • 关键词

    climate change; candidate core proteins; proteomics;

    机译:气候变化;候选核心蛋白;蛋白质组学;

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