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Evaluating changes in switchgrass physiology, biomass, and light-use efficiency under artificial shade to estimate yields if intercropped with Pinus taeda L.

机译:评估在人工遮荫下柳枝生理,生物量和光利用效率的变化,以估计与间种松(Pinus taeda L)间作时的产量。

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There is growing interest in using switchgrass (Panicum virgatum L.) as a biofuel intercrop in forestry systems. However, there are limited data on the longevity of intercropped bioenergy crops, particularly with respect to light availability as the overstory tree canopy matures. Therefore, we conducted a greenhouse study to determine the effects of shading on switchgrass growth. Four treatments, each with different photosynthetically active radiation (PAR) levels, were investigated inside the greenhouse: control (no shade cloth, 49 % of full sunlight), low (under 36 % shade cloth), medium (under 52 % shade cloth), and heavy shade (under 78 % shade cloth). We determined the effect of shading from March to October 2011 on individually potted, multi-tillered switchgrass transplants cut to a stubble height of 10 cm. In the greenhouse, there was a reduction in tiller number, tiller height, gas exchange rates (photosynthesis and stomatal conductance), leaf area, above- and belowground biomass and light-use efficiency with increasing shade. Total (above- and belowground) biomass in the control measured 374 +/- A 22 compared to 9 +/- A 2 g pot(-1) under heavy shade (11 % of full sunlight). Corresponding light-use efficiencies were 3.7 +/- A 0.2 and 1.4 +/- A 0.2 g MJ(-1), respectively. We also compared PAR levels and associated aboveground switchgrass biomass from inside the greenhouse to PAR levels in the inter-row regions of a range of loblolly pine (Pinus taeda L.) stands from across the southeastern United States (U.S.) to estimate when light may limit the growth of intercropped species under field conditions. Results from the light environment of loblolly pine plantations in the field suggest that switchgrass biomass will be significantly reduced at a loblolly pine leaf area index between 1.95 and 2.25, which occurs on average between ages 6 and 8 years across the U.S. Southeast in intensively managed pine plantations. These leaf area indices correspond to a 60-65 % reduction in PAR from open sky
机译:对柳枝((Panicum virgatum L.)作为林业系统中的生物燃料间作物的兴趣日益浓厚。然而,关于间作生物能源作物的寿命的数据有限,尤其是随着树冠层的成熟,光的利用率。因此,我们进行了温室研究,以确定遮光对柳枝growth生长的影响。在温室内研究了四种处理,每种处理具有不同的光合有效辐射(PAR)水平:对照(无遮荫布,充满阳光的49%),低(遮荫布在36%以下),中度(遮荫布在52%以下) ,以及浓重的阴影(低于78%的阴影布)。我们确定了从2011年3月至2011年10月遮阴对单独切成10厘米残茬高度的多盆分switch柳枝移植的影响。在温室中,分shade数量,分height高度,气体交换速率(光合作用和气孔导度),叶面积,地上和地下生物量以及随着光影增加的光利用效率都有所降低。对照下的总(地下和地下)生物量为374 +/- A 22,而在浓荫下(全日照的11%)则为9 +/- A 2 g盆(-1)。相应的光利用效率分别为3.7 +/- A 0.2和1.4 +/- A 0.2 g MJ(-1)。我们还比较了来自美国东南部(US)的一系列火炬松(Pinus taeda L.)林分行行区的PAR水平和温室内相关的地上柳枝生物量,以估算何时可能采光。限制田间条件下间作物种的生长。田间火炬松人工林的光照环境的结果表明,在美国东南部集约化管理的松树中,平均年龄在6至8岁之间的火炬松叶片面积指数在1.95和2.25之间时,柳枝biomass的生物量将显着减少。人工林。这些叶面积指数对应于天空中的PAR降低60-65%

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