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七种不同物种对蓝光和绿光的敏感性:与光子通量的相互作用

Sensitivity of Seven Diverse Species to Blue and Green Light: Interactions with Photon Flux.

作者信息

Snowden M Chase, Cope Kevin R, Bugbee Bruce

机构信息

Crop Physiology Laboratory, Department of Plants Soils and Climate, Utah State University, 4820 Old Main Hill, Logan, UT, 84322-4820, United States of America.

出版信息

PLoS One. 2016 Oct 5;11(10):e0163121. doi: 10.1371/journal.pone.0163121. eCollection 2016.

Abstract

Despite decades of research, the effects of spectral quality on plant growth, and development are not well understood. Much of our current understanding comes from studies with daily integrated light levels that are less than 10% of summer sunlight thus making it difficult to characterize interactions between light quality and quantity. Several studies have reported that growth is increased under fluorescent lamps compared to mixtures of wavelengths from LEDs. Conclusions regarding the effect of green light fraction range from detrimental to beneficial. Here we report the effects of eight blue and green light fractions at two photosynthetic photon fluxes (PPF; 200 and 500 μmol m-2 s-1; with a daily light integral of 11.5 and 29 mol m-2 d-1) on growth (dry mass), leaf expansion, stem and petiole elongation, and whole-plant net assimilation of seven diverse plant species. The treatments included cool, neutral, and warm white LEDs, and combinations of blue, green and/or red LEDs. At the higher PPF (500), increasing blue light in increments from 11 to 28% reduced growth in tomato, cucumber, and pepper by 22, 26, and 14% respectively, but there was no statistically significant effect on radish, soybean, lettuce or wheat. At the lower PPF (200), increasing blue light reduced growth only in tomato (41%). The effects of blue light on growth were mediated by changes in leaf area and radiation capture, with minimal effects on whole-plant net-assimilation. In contrast to the significant effects of blue light, increasing green light in increments from 0 to 30% had a relatively small effect on growth, leaf area and net assimilation at either low or high PPF. Surprisingly, growth of three of the seven species was not reduced by a treatment with 93% green light compared to the broad spectrum treatments. Collectively, these results are consistent with a shade avoidance response associated with either low blue or high green light fractions.

摘要

尽管经过了数十年的研究,但光谱质量对植物生长和发育的影响仍未得到充分理解。我们目前的大部分认识来自于对每日综合光照水平的研究,这些光照水平不到夏季阳光的10%,因此很难描述光质和光量之间的相互作用。几项研究报告称,与发光二极管(LED)的波长混合光相比,荧光灯下的植物生长有所增加。关于绿光比例影响的结论从有害到有益各不相同。在此,我们报告了在两种光合光子通量(PPF;200和500 μmol m-2 s-1;日光照积分分别为11.5和29 mol m-2 d-1)下,八种蓝光和绿光比例对七种不同植物物种的生长(干质量)、叶片扩展、茎和叶柄伸长以及全株净同化的影响。处理包括冷白色、中性白色和暖白色LED,以及蓝光、绿光和/或红光LED的组合。在较高的PPF(500)下,蓝光比例从11%增加到28%,番茄、黄瓜和辣椒的生长分别减少了22%、26%和14%,但对萝卜、大豆、生菜或小麦没有统计学上的显著影响。在较低的PPF(200)下,蓝光增加仅使番茄生长减少(41%)。蓝光对生长的影响是通过叶面积和辐射捕获的变化介导的,对全株净同化的影响最小。与蓝光的显著影响形成对比的是,在低或高PPF下,绿光比例从0%增加到30%对生长、叶面积和净同化的影响相对较小。令人惊讶的是,与广谱处理相比,七种植物中的三种在93%绿光处理下生长并未减少。总体而言,这些结果与低蓝光或高绿光比例相关的避荫反应一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d01/5051895/09c53876fd1f/pone.0163121.g001.jpg

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