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Root production and root mortality of winter wheat grown on sandy and loamy soils in different farming systems

机译:不同耕作制度下在沙质和壤土上种植的冬小麦的根系产量和根系死亡率

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Winter wheat was grown over 2 years (1995, 1996) in an organic and integrated cropping system on sandy and loamy soils. Root growth was measured on five to six occasions each year with an auger sampling procedure and the ingrowth core method. The first resulted in an estimate of net root development, while the latter revealed gross root growth (GG) or root production. Total root production was about 80–150 km m–2 (0- to 30-cm soil layer) between April and July and exceeded the net size of the root system at harvest by a factor of between 2 and 4. The C input into the soil could be estimated as 1.4–2.6 t ha–1 by this root production. The cropping systems had nearly no influence on root production. The largest differences occurred between the years. The net root length tended to be lower on sandy soils compared to the loam, but total root production was higher. Root mortality, which is the difference between GG and net root growth, was also higher on sandy soils. The turnover index, which is the mean of the relative root production rates and relative root mortality rates, was positively related to the soil sand content in both years.
机译:冬小麦在沙质和壤土质的有机和综合种植系统中生长了2年(1995、1996)。每年用螺旋钻取样程序和向内生长核心方法测量根系生长五到六次。第一个结果估计了净根发育,而第二个结果显示了总的根生长(GG)或根产量。 4月至7月间,根的总产量约为80-150 km m-2 (0至30 cm土层),比收获时根系的净大小大2到4倍。通过这种根系生产,土壤中的碳输入量估计为1.4–2.6 t ha–1 。种植系统对根系生产几乎没有影响。年份之间的差异最大。与壤土相比,沙质土壤的净根长往往较低,但总根产量较高。沙土上的根死亡率(GG和净根生长之间的差异)也较高。周转指数是相对根系生产率和相对根系死亡率的平均值,与这两年的土壤沙含量呈正相关。

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