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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Carbon isotope composition, water use efficiency, and drought sensitivity are controlled by a common genomic segment in maize
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Carbon isotope composition, water use efficiency, and drought sensitivity are controlled by a common genomic segment in maize

机译:碳同位素组成,用水效率和干旱敏感度由玉米中的常见基因组片段控制

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Key messageA genomic segment on maize chromosome 7 influences carbon isotope composition, water use efficiency, and leaf growth sensitivity to drought, possibly by affecting stomatal properties.AbstractClimate change is expected to decrease water availability in many agricultural production areas around the globe. Therefore, plants with improved ability to grow under water deficit are urgently needed. We combined genetic, phenomic, and physiological approaches to understand the relationship between growth, stomatal conductance, water use efficiency, and carbon isotope composition in maize (Zea mays L.). Using near-isogenic lines derived from a maize introgression library, we analysed the effects of a genomic region previously identified as affecting carbon isotope composition. We show stability of trait expression over several years of field trials and demonstrate in the phenotyping platform Phenodyn that the same genomic region also influences the sensitivity of leaf growth to evaporative demand and soil water potential. Our results suggest that the studied genomic region affecting carbon isotope discrimination also harbours quantitative trait loci playing a role in maize drought sensitivity possibly via stomatal behaviour and development. We propose that the observed phenotypes collectively originate from altered stomatal conductance, presumably via abscisic acid.
机译:玉米染色体7的关键Messagea基因组段影响碳同位素组成,水使用效率和叶片生长敏感性,可能通过影响气孔特性。预计会降低全球许多农业生产领域的水可用性。因此,迫切需要提高水资源缺损能力的植物。我们组合遗传,表情和生理方法来了解玉米(Zea mays L.)中生长,气孔导电,水使用效率和碳同位素组成之间的关系。使用源自玉米血液凝集文库的近似同学线,我们分析了先前鉴定为影响碳同位素组合物的基因组区域的影响。我们展示了几年多的现场试验中具有特征表达的稳定性,并在表型平台上证明了同一基因组区域的比例,同一基因组区域也影响叶片生长以蒸发需求和土壤水势的敏感性。我们的研究结果表明,影响碳同位素歧视的学习基因组区域也可能通过气孔行为和发育在玉米干旱敏感性中发挥作用的定量特质基因座。我们提出观察到的表型集体来自改变的气孔电导,可能通过脱钙酸。

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    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    INRA Lab Ecophysiol Plantes Stress Environm UMR759 Pl Viala F-34060 Montpellier France;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

    KWS SAAT SE Grimsehlstr 31 D-37555 Einbeck Germany;

    Tech Univ Munich Biotechnol Hort Crops TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 1 D-85354 Freising Weihenstephan Germany;

    KWS SAAT SE Grimsehlstr 31 D-37555 Einbeck Germany;

    Tech Univ Munich Biotechnol Hort Crops TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 1 D-85354 Freising Weihenstephan Germany;

    INRA Lab Ecophysiol Plantes Stress Environm UMR759 Pl Viala F-34060 Montpellier France;

    Tech Univ Munich Bot TUM Sch Life Sci Weihenstephan Emil Ramann Str 4 D-85354 Freising Weihenstephan Germany;

    INRA Lab Ecophysiol Plantes Stress Environm UMR759 Pl Viala F-34060 Montpellier France;

    Tech Univ Munich Plant Breeding TUM Sch Life Sci Weihenstephan Liesel Beckmann Str 2 D-85354 Freising Weihenstephan Germany;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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