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首页> 外文期刊>Frontiers in Plant Science >Photosynthetic Acclimation to Fluctuating Irradiance in Plants
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Photosynthetic Acclimation to Fluctuating Irradiance in Plants

机译:波动适应植物辐前辐照的光合作用

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Unlike the short-term responses of photosynthesis to fluctuating irradiance, the long-term response (i.e., acclimation) at the chloroplast, leaf, and plant level has received less attention so far. The ability of plants to acclimate to irradiance fluctuations and the speed at which this acclimation occurs are potential limitations to plant growth under field conditions, and therefore this process deserves closer study. In the first section of this review, we look at the sources of natural irradiance fluctuations, their effects on short-term photosynthesis, and the interaction of these effects with circadian rhythms. This is followed by an overview of the mechanisms that are involved in acclimation to fluctuating (or changes of) irradiance. We highlight the chain of events leading to acclimation: retrograde signaling, systemic acquired acclimation (SAA), gene transcription, and changes in protein abundance. We also review how fluctuating irradiance is applied in experiments and highlight the fact that they are significantly slower than natural fluctuations in the field, although the technology to achieve realistic fluctuations exists. Finally, we review published data on the effects of growing plants under fluctuating irradiance on different plant traits, across studies, spatial scales, and species. We show that, when plants are grown under fluctuating irradiance, the chlorophyll a/b ratio and plant biomass decrease, specific leaf area increases, and photosynthetic capacity as well as root/shoot ratio are, on average, unaffected.
机译:与光合作用的短期反应不同,迄今为止,叶绿体,叶子和植物水平的长期反应(即,适应)的长期反应(即适应)受到较少的关注。植物适应辐照波动的能力和这种适应的速度发生的速度是对现场条件下植物生长的潜在限制,因此该过程值得更接近的研究。在本次审查的第一部分中,我们查看自然辐照度波动的来源,它们对短期光合作用的影响,以及与昼夜节律的这些影响的相互作用。随后,这是涉及适应的机制,以波动(或改变)辐照度。我们突出了导致适应适应的事件链:逆行信令,全身获取的适应(SAA),基因转录和蛋白质丰富的变化。我们还审查了在实验中应用波动的辐照度,并突出了它们明显比现场的天然波动显着慢的事实,尽管存在实现现实波动的技术存在。最后,我们审查了关于在不同植物特征上的波动辐照下的生长植物在不同植物特征上的影响的发布数据,跨研究,空间尺度和物种。我们表明,当在波动辐照度下生长植物时,叶绿素A / B比和植物生物质的降低,特定叶面积增加,光合容量平均不受影响。

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