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首页> 外文期刊>Journal of Agricultural Science >Root Distribution and N Acquisition in an Alfalfa and Corn Intercropping System
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Root Distribution and N Acquisition in an Alfalfa and Corn Intercropping System

机译:苜蓿和玉米间作系统中的根系分布和氮素吸收

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Little attention has been paid to root distribution in combined perennial legume and annual cereal crops. The main objectives of this study were to explore the regularity of root distribution and the influence on nitrogen (N) acquisition in different alfalfa ( Medicago sativa L.) and corn ( Zea mays L.) intercropping patterns. A three year (2007–2009) field experiment studied four intercropping patterns of alternating alfalfa and corn rows with alfalfa:corn rows sown at 2:2, 3:2, 4:2, and 5:2. Sole crops of corn and alfalfa were used as controls. Roots were sampled over 3 consecutive years by auger sampling method in the prime filling stage of corn from different soil depth, and the root length density (RLD) was used to describe the root spatial distribution of intercropped alfalfa and corn. The results showed that the alfalfa/corn intercropping system had the greater RLD values compared to the sole cropped alfalfa or corn. In addition, the root mass centre of intercropped alfalfa descended into deeper soil layers with advancing stand age, and likewise proliferated laterally towards associated corn rows. Whereas the corn root mass spread at relative shallow soil profile, and also more deployed laterally to neighboring alfalfa root zone. The gap between alfalfa and corn rows was the highest colonized area with greater intermingling and the highest RLD of both species root. The complementary and compatibility of the root spatial distribution of component crops in alfalfa/corn community were the essential cause for better biomass yield.
机译:多年生豆类和一年生谷物作物的根系分配很少受到关注。这项研究的主要目的是探讨不同苜蓿和玉米(Zea mays L.)间作模式下根系分布的规律性及其对氮素吸收的影响。一项为期三年(2007-2009年)的田间试验研究了苜蓿和玉米行与苜蓿:玉米行以2:2、3:2、4:2和5:2播种的四种间作模式。玉米和苜蓿的唯一农作物用作对照。在不同土壤深度的玉米生长期,通过螺旋钻采样方法连续3年对根进行采样,并用根长密度(RLD)描述间作苜蓿和玉米的根空间分布。结果表明,与单独种植的苜蓿或玉米相比,苜蓿/玉米间作系统的RLD值更高。此外,间作苜蓿的根重心随着林分年龄的增长而下降到更深的土壤层,并且同样向着相关的玉米行横向扩散。玉米根的质量分布在相对浅的土壤剖面上,并且在横向上更多地分布在相邻的苜蓿根区域。紫花苜蓿和玉米行之间的间隙是两个物种根系中最高的定植区域,具有更大的混合性和最高的RLD。苜蓿/玉米群落中组成作物根系空间分布的互补性和相容性是提高生物量产量的根本原因。

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