首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Effects of rootzone CO2 and O-2 levels on seed germination and stolon growth of Cynodon dactylon
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Effects of rootzone CO2 and O-2 levels on seed germination and stolon growth of Cynodon dactylon

机译:根区CO2和O-2水平对狗牙根种子萌发和茎生长的影响

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The role of rootzone CO2 and O-2 levels on seed germination and plant growth is not fully defined. The aim of the present study was to investigate the effects of supraoptimal CO2 in combination with different O-2 concentrations on seed germination and the growth of pre-rooted stolon segments of Cynodon dactylon. Seeds of "Princess 77" were germinated in specialized airtight tubes for 21 days. Gas mixtures containing 40-20, 40-10, 40-2.5% CO2-O-2, or air were injected every 12 h. The establishment of bermudagrass stolons took place in micro-lysimeters for 28 days, while the rootzone was injected with either ambient air (control) in natural conditions or with the above-mentioned gas mixtures. For the determination of the effects of soil gases on stolon growth, the cumulative clippings dry weight, the root dry weight, the root total area and total length were recorded. The leaf chlorophyll, the relative water content, and the soluble sugars of both leaves and roots were also measured. The presence of 40-20, 40-10 and 40-2.5% CO2-O-2 increased the final germination compared with the control. The gas mixtures as rootzone gases, affected the plant growth rate differently. The root growth was suppressed in all three gas treatments, but fructose and glucose root concentrations of the stolons treated with 40-2.5% CO2-O-2 were significantly higher 28 days after the initiation of the gas treatments (DGT). Plants under the 40-20% CO2-O-2 treatment showed initially a high sward growth. The Chlb concentration showed significant reduction under 40-10 and 40-2.5% CO2-O-2, while the Chla/b of the leaves increased in the treatment with 40-2.5 CO2-O-2 28 DGT.
机译:根区CO2和O-2水平对种子发芽和植物生长的作用尚未完全确定。本研究的目的是研究超最佳CO2与不同O-2浓度组合对犬牙根种子萌发和预根茎节段生长的影响。将“公主77”的种子在专用的不透气管中发芽21天。每12小时注入包含40-20%,40-10%,40-2.5%CO2-O-2或空气的混合气体。百慕大草sto茎的建立在微型测渗仪中进行了28天,而根区则在自然条件下(环境控制)或上述气体混合物注入了根区。为了确定土壤气体对茎生长的影响,记录累积剪枝干重,根干重,根总面积和总长。还测量了叶和根的叶绿素,相对含水量以及可溶性糖。与对照相比,存在40-20%,40-10%和40-2.5%的CO2-O-2可增加最终发芽率。混合气体作为根区气体,对植物生长速率的影响不同。在所有三种气体处理中,根的生长均受到抑制,但是在开始气体处理(DGT)后28天,用40-2.5%CO2-O-2处理的茎的果糖和葡萄糖根浓度显着更高。经过40-20%CO2-O-2处理的植物最初显示出较高的草皮生长。 Chlb浓度在40-10%和40-2.5%CO2-O-2下显着降低,而在40-2.5 CO2-O-2 28 DGT处理下,叶片的Chla / b升高。

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