首页> 外文期刊>Journal of Experimental Botany >An artificial solar spectrum substantially alters plant development compared with usual climate room irradiance spectra.
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An artificial solar spectrum substantially alters plant development compared with usual climate room irradiance spectra.

机译:与通常的气候室辐照度光谱相比,人工太阳光谱基本改变了植物开发。

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Plant responses to the light spectrum under which plants are grown affect their developmental characteristics in a complicated manner. Lamps widely used to provide growth irradiance emit spectra which are very different from natural daylight spectra. Whereas specific responses of plants to a spectrum differing from natural daylight may sometimes be predictable, the overall plant response is generally difficult to predict due to the complicated interaction of the many different responses. So far studies on plant responses to spectra either use no daylight control or, if a natural daylight control is used, it will fluctuate in intensity and spectrum. An artificial solar (AS) spectrum which closely resembles a sunlight spectrum has been engineered, and growth, morphogenesis, and photosynthetic characteristics of cucumber plants grown for 13 d under this spectrum have been compared with their performance under fluorescent tubes (FTs) and a high pressure sodium lamp (HPS). The total dry weight of the AS-grown plants was 2.3 and 1.6 times greater than that of the FT and HPS plants, respectively, and the height of the AS plants was 4-5 times greater. This striking difference appeared to be related to a more efficient light interception by the AS plants, characterized by longer petioles, a greater leaf unfolding rate, and a lower investment in leaf mass relative to leaf area. Photosynthesis per leaf area was not greater for the AS plants. The extreme differences in plant response to the AS spectrum compared with the widely used protected cultivation light sources tested highlights the importance of a more natural spectrum, such as the AS spectrum, if the aim is to produce plants representative of field conditions.
机译:植物对植物生长的光谱的反应以复杂的方式影响其发育特征。广泛用于提供与自然日光光谱非常不同的生长辐照度的灯。然而,植物对从自然日光不同的频谱的特定反应有时可以预测,因此由于许多不同反应的复杂相互作用,整体植物反应通常难以预测。到目前为止,对植物对光谱的反应使用不使用日光控制,或者如果使用自然的日光控制,它将在强度和光谱中波动。在荧光灯管(FTS)下,已经设计了一种与阳光谱相比非常类似于阳光谱的频谱,并且在该光谱下生长,变形植物的生长,形态发生和光合特性,并在荧光灯管(FTS)下的性能和高度压力钠灯(HPS)。生长植物的总干重分别比FT和HPS植物的总干重分别为2.3和1.6倍,并且植物的高度较高4-5倍。这种引人注目的差异似乎与作为植物更有效的光截取有关,其特征在于叶柄更长,叶片展开率较大,以及相对于叶面积的叶片质量的较低投资。作为植物的每叶面积的光合作用并不赘述。植物反应对作为谱的极端差异与受到广泛使用的保护栽培光源相比,测试了更自然光谱的重要性,例如AS光谱,如果目的是生产代表现场条件的植物。

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