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首页> 外文期刊>Plant, Cell & Environment >Leaf and canopy photosynthesis of a chlorophyll deficient soybean mutant
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Leaf and canopy photosynthesis of a chlorophyll deficient soybean mutant

机译:叶绿素缺乏大豆突变体的叶子和冠层光合作用

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摘要

The photosynthetic, optical, and morphological characteristics of a chlorophyll-deficient (Chl-deficient) yellow soybean mutant (MinnGold) were examined in comparison with 2 green varieties (MN0095 and Eiko). Despite the large difference in Chl content, similar leaf photosynthesis rates were maintained in the Chl-deficient mutant by offsetting the reduced absorption of red photons by a small increase in photochemical efficiency and lower non-photochemical quenching. When grown in the field, at full canopy cover, the mutants reflected a significantly larger proportion of incoming shortwave radiation, but the total canopy light absorption was only slightly reduced, most likely due to a deeper penetration of light into the canopy space. As a consequence, canopy-scale gross primary production and ecosystem respiration were comparable between the Chl-deficient mutant and the green variety. However, total biomass production was lower in the mutant, which indicates that processes other than steady state photosynthesis caused a reduction in biomass accumulation over time. Analysis of non-photochemical quenching relaxation and gas exchange in Chl-deficient and green leaves after transitions from high to low light conditions suggested that dynamic photosynthesis might be responsible for the reduced biomass production in the Chl-deficient mutant under field conditions.
机译:与2个绿色品种(MN0095和EIKO)相比,检查了叶绿素缺陷(CHL缺陷)黄豆突变体(MINNGOLD)的光合,光学和形态特征。尽管CHL含量有很大差异,但通过抵消光化学效率的小增加和降低的非光化学淬火,因此通过抵消红光子的减少的吸收来维持在CHL缺陷型突变体中的类似叶片光合速率。当在田间成长时,在完整的遮篷盖上,突变体反映了最大程度的传入的短波辐射比例,但总顶层光吸收仅略微降低,最有可能是由于光进入树冠空间的更深普及。因此,CHL缺陷型突变体和绿色品种之间的冠覆级总产量和生态系统呼吸具有可比性。然而,突变体中的总生物质产量较低,表明除稳态光合作用之外的过程会随着时间的推移而导致生物质积累的降低。从高到低光条件的过渡后,在高度高达低调后,在CHL缺陷和绿叶中的非光化学淬火弛豫和气体交换的分析表明,在现场条件下,动态光合作用可能负责CHL缺陷型突变体中的降低的生物质产生。

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  • 来源
    《Plant, Cell & Environment》 |2018年第6期|共11页
  • 作者单位

    Univ Innsbruck Inst Ecol Sternwartestr 15 A-6020 Innsbruck Austria;

    Univ Udine Dept Agr Food Environm &

    Anim Sci Via Sci 206 I-33100 Udine Italy;

    CNR Natl Res Council Inst Biometeorol IBIMET Via Caproni 8 I-50145 Florence Italy;

    Univ Udine Dept Agr Food Environm &

    Anim Sci Via Sci 206 I-33100 Udine Italy;

    Univ Udine Dept Agr Food Environm &

    Anim Sci Via Sci 206 I-33100 Udine Italy;

    Fdn Edmund Mach Res &

    Innovat Ctr Sustainable Agroecosyst &

    Bioresources Dept Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    Univ Milano Bicocca Dept Earth &

    Environm Sci Piazza Sci 1 I-20126 Milan Italy;

    Fdn Edmund Mach Res &

    Innovat Ctr Sustainable Agroecosyst &

    Bioresources Dept Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    Univ Milano Bicocca Dept Earth &

    Environm Sci Piazza Sci 1 I-20126 Milan Italy;

    Poznan Univ Life Sci Dept Meteorol Piatkowska St 94 PL-60649 Poznan Poland;

    Univ Milano Bicocca Dept Earth &

    Environm Sci Piazza Sci 1 I-20126 Milan Italy;

    Univ Milano Bicocca Dept Earth &

    Environm Sci Piazza Sci 1 I-20126 Milan Italy;

    CNR Natl Res Council Tree &

    Timber Inst IVALSA Via Madonna del Piano 10 I-50019 Florence Italy;

    Univ Minnesota St Paul MN 55108 USA;

    Univ Avigon Aix Marseille Univ Inst Mediterraneen Biodivers &

    Ecol Marine &

    Cont CNRS 7263 IRD 237 3 Pl Victor Hugo F-13331 Marseille 03 France;

    Fdn Edmund Mach Res &

    Innovat Ctr Sustainable Agroecosyst &

    Bioresources Dept Via E Mach 1 I-38010 San Michele All Adige Trento Italy;

    Forschungszentrum Julich GmbH Inst Bio &

    Geosci IBG Plant Sci 2 Leo Brandt Str D-52425 Julich Germany;

    Forschungszentrum Julich GmbH Inst Bio &

    Geosci IBG Plant Sci 2 Leo Brandt Str D-52425 Julich Germany;

    CNR Natl Res Council Inst Biometeorol IBIMET Via Caproni 8 I-50145 Florence Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生态学和植物地理学;
  • 关键词

    steady state and dynamic photosynthesis; NPQ relaxation;

    机译:稳态和动态光合作用;NPQ放松;

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