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Seasonal changes in light and temperature affect the balance between light harvesting and light utilisation components of photosynthesis in an evergreen understory shrub

机译:光照和温度的季节性变化影响常绿灌木林中光合作用的光收集和光利用成分之间的平衡

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In a temperate climate, evergreen species in the understory are exposed to large changes in photosynthetic photon flux density (PPFD) and temperature over the year. We determined the photosynthetic traits of leaves of an evergreen understory shrub Aucuba japonica at three sites at monthly intervals: understorys of a deciduous forest; an evergreen forest; and a gap in a mixed forest. This set up enabled us to separate the effects of seasonal change in PPFD and temperature on photosynthetic acclimation under natural conditions. The effects of PPFD and temperature were analysed by simple and multiple regression analyses. The amounts of light utilisation components (LU), represented by nitrogen and rubisco contents per area, were higher in winter, when temperature was low and PPFD was high. The LU relative to the amount of light harvesting components (LH),. represented by chlorophyll a/b and rubisco/chlorophyll ratios, and the inverse of chlorophyllitrogen ratio were also higher in winter. We quantified the effects of PPFD and temperature on the LU and LH components. Across sites PPFD had stronger effects than air temperature, while within a site temperature had stronger effects on photosynthetic acclimation. We concluded that the photosynthetic apparatus is strongly affected by the prevailing PPFD at the time of leaf development. Within a given light regime, however, plants acclimated by increasing LU relative to LH primarily in response to temperature and to a lesser extent to PPFD.
机译:在温带气候下,下层的常绿树种在一年中暴露于光合光子通量密度(PPFD)和温度的巨大变化中。我们以三个月为间隔,在三个地点确定了常绿乔木灌木Aucuba japonica叶片的光合特性。常绿的森林;和一片混交林中的空隙。这种设置使我们能够区分PPFD和温度的季节性变化对自然条件下光合适应的影响。通过简单和多元回归分析来分析PPFD和温度的影响。在冬季,温度较低而PPFD较高时,单位面积的光利用成分(LU)的量以氮和rubisco含量表示。 LU相对于光收集组件的数量(LH)。以叶绿素a / b和Rubisco /叶绿素比表示,冬季时叶绿素/氮比的倒数也较高。我们量化了PPFD和温度对LU和LH分量的影响。跨站点PPFD的影响要强于气温,而站点内部的温度对光合适应的影响更大。我们得出的结论是,在叶片发育时,主要的PPFD会严重影响光合作用。但是,在给定的光照条件下,植物主要通过响应温度和相对于PPFD较小程度地增加相对于LH的LU来适应环境。

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