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首页> 外文期刊>Photosynthetica >Growth and physiological changes in saplings of Minquartia guianensis and Swietenia macrophylla during acclimation to full sunlight
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Growth and physiological changes in saplings of Minquartia guianensis and Swietenia macrophylla during acclimation to full sunlight

机译:充分采光下瓜树和闽南小穗树苗的生长及其生理变化

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摘要

Low light availability under a forest canopy often limits plant growth; however, sudden increase in light intensity may induce photoinhibition of photosynthesis. The aim of this study was to evaluate the ecophysiological changes that occur in potted plants of Minquartia guianensis and Swietenia macrophylla during the acclimation process to full sunlight. We used six full-sun independent acclimation periods (30, 60, 90, 120, 150, and 180 days) and a control kept in the shade. Shading was obtained by placing plants under the canopy of a small forest. The Fv/Fm ratio, net photosynthetic rate (P N), the maximum carboxylation velocity of Rubisco (V cmax), maximum electron transport rate (J max), specific leaf area (SLA), and growth were assessed at the end of each of the six acclimation periods. Plant exposure to full sunlight caused a sudden decrease in the Fv/Fm ratio (photoinhibition) particularly in Minquartia. Photooxidation (necrotic patches) of the leaf tissue was observed in upper leaves of Minquartia. The higher P N values were observed in Swietenia under full sun, about 12 μmol(CO2) m−2 s−1. V cmax25 values were higher after 90 days of acclimation, about 14 μmol(CO2) m−2 s−1 for Minquartia, and 35 μmol(CO2) m−2 s−1 for Swietenia. At the end of a 180-d acclimation period J max25 was 35 μmol(electron) m−2 s−1 for Minquartia and 60 μmol(electron) m−2 s−1 for Swietenia. SLA was higher in Swietenia than in Minquartia. In Minquartia, monthly rate of leaf production per plant (MRLP) was positive (0.22 leaf month−1) after four months in the open. Whereas, in Swietenia MRLP was positive (0.56 leaf month−1) after an acclimation period of two months. After six months in the open, height growth rates were 3.5 and 28 mm month−1 for Minquartia and Swietenia, respectively. The greater acclimation capacity of Swietenia was associated to an enhanced photosynthetic plasticity under full sun. In Minquartia, transition to full-sun conditions and lack of physiological adjustment resulted in severe photoinhibition and loss of leaves.
机译:森林冠层下的光线不足通常会限制植物的生长;但是,光强度的突然增加可能会诱导光合作用的光抑制作用。这项研究的目的是评估在适应阳光的过程中,Minquartia guianensis和Swietenia macrophylla盆栽植物发生的生理生态变化。我们使用了六个全日照独立适应期(30、60、90、120、150和180天),并在阴凉处放置了一个对照。通过将植物放置在小森林的树冠下获得阴影。 Fv / Fm 比,净光合速率(PN ),Rubisco最大羧化速度(V cmax ),最大电子传输速率(J max >),比叶面积(SLA)和生长在六个适应期的每个阶段结束时进行评估。植物在充分的阳光下暴晒导致Fv / Fm 比(光抑制)突然下降,尤其是在Minquartia。在Minquartia的上部叶片中观察到叶片组织的光氧化作用(坏死斑块)。 Swietenia在阳光下观察到较高的P N 值,约为12μmol(CO2 )m-2 s-1 。适应90天后,V cmax25 值更高,Minquartia的V cmax25 约为14μmol(CO2 )m−2 s-1 ,而35μmol(CO2 >)m-2 s-1 用于Swietenia。在180 d的适应期结束时,Minquartia的J max25 为35μmol(电子)m−2 s-1 ,而60μmol(电子)m−2 s-1 代表Swietenia。 Swietenia中的SLA高于Minquartia。在Minquartia,开放四个月后,每个植物的每月叶片产量(MRLP)为正(0.22个叶片月-1 )。而在Swietenia,经过两个月的适应期后,MRLP呈阳性(0.56个叶月-1 )。在开放六个月后,Minquartia和Swietenia的身高增长率分别为3.5和28 mm month-1。 Swietenia的更大适应能力与日光下增强的光合可塑性有关。在Minquartia,向全日照的过渡和缺乏生理适应性导致严重的光抑制和叶片损失。

著录项

  • 来源
    《Photosynthetica》 |2012年第1期|p.86-94|共9页
  • 作者单位

    Instituto Nacional de Pesquisas da Amazônia-INPA/Programa de Pós-graduação em Botânica, Avenida André Araújo, Manaus, AM, Brazil;

    Instituto Nacional de Pesquisas da Amazônia, Coordenação em Dinâmica Ambiental, Laboratório de Ecofisiologia de Árvores, Avenida André Araújo, 2936, 69011-970, Manaus, AM, Caixa Postal 478, AM, Brazil;

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

    gas exchange; growth rates; photoinhibition; photosynthesis; Rubisco activity; tropical trees;

    机译:气体交换;生长速率;光抑制;光合作用;橡胶活性;热带树木;

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