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Quantification of differences in root system architecture under maize/soybean interspecific interactions

机译:玉米/大豆间隙互动下根系结构差异的量化

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Root system architecture determines the ability of crop in water and nutrient uptake, which affects interspecific facilitation in the maize/soybean intercropping. In this study, field experiments were conducted to investigate the differences of adult root system architecture between maize (Zea mays L.)/soybean (Glycine max L.) intercropping and monocropping. The skeleton of root system was captured with 3D digitalization at filling stage of maize, then the roots were sampled and scanned. Root length and root diameter were extracted from the scanned root images. Root overlap of maize and soybean were calculated by counting the percentage of the points located on axile roots of one plant inside root system of another plant to quantify the interspecific interactions in 3D. The results showed that root-root interactions between maize and soybean altered the root system architecture of both crops. The early axile roots of maize and soybean longer than the late axile roots in two cropping patterns. Maize/soybean interspecific interactions promoted axile root elongation of maize and soybean. The asymmetric interspecific facilitation was found in diameter of axile roots, which was the late axile roots of intercropped maize significantly thicker but most axile roots of intercropped soybean significantly thinner (ANOVA, P <; 0.05). Root overlap of maize and soybean in intercropping was about 4.58% and mainly distributed 20~40 cm below soil surface. The axile roots of N1~N3 of maize trended to flatly grow first and rapidly grow downward later, mainly leading to the overlap between maize and soybean root system.
机译:根系统架构确定作物的水和养分的吸收的能力,这会影响在玉米/大豆间作间便利。在这项研究中,进行了田间试验来调查成人根系统架构的玉米之间的差异(玉蜀黍升。)/大豆(Glycine max L.)间作和单作。根系统的骨架在填充玉米的阶段与三维数字捕获,然后根取样并扫描。根长度和根部直径分别从扫描图像根提取。玉米和大豆的根重叠通过计数位于另一植物的一种植物内根系统的轴上的根点的百分比来量化在3D种间相互作用来计算。结果表明,玉米和大豆之间根根相互作用改变两种作物的根系统架构。两种种植模式玉米,大豆比晚轴上的根较长的早期轴上的根源。玉米/大豆种间的相互作用促进了玉米和大豆的轴上的根伸长。不对称间便利是在轴上的根,这是间作玉米显著较厚的已故轴上的根但间作大豆的最轴上的根显著更薄的直径实测值(ANOVA,P <0.05)。间作玉米和大豆的根重叠为约4.58%,并且主要分布20〜40厘米以下的土壤表面。玉米的N1〜N3的轴上的根趋于断然第一生长和向下以后快速增长,主要导致玉米和大豆根系统之间的重叠。

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