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Lucerne irrigation and soil water use during bloom and seed set on a red-brown earth in south-eastern Australia

机译:在澳大利亚东南部的红棕色土地上开花和播种期间,琉森灌溉和土壤水分利用

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Lucerne (Medicago sativa L.) cv. WL45 1, grown on a shallow red-brown earth, was subjected to different irrigation frequencies during bloom to determine the effect on seed yield. The highest yield of 1105 kg ha-1 was produced when the crop was irrigated at an accumulated Epan of 75 mm between irrigations. Yields declined to 528 kg ha-1 as the interval between irrigations increased and the total amount of water applied during bloom was reduced as a consequence. Seed yield was positively correlated with total top growth, number of stems, number of racemes with pods and number of seeds per pod. Neither individual seed weight nor number of pods per raceme was influenced by the irrigation treatments. Soil water extraction by the crop was confined mainly to the 0-1.2 m depth. However, highest seed yields were produced when soil water extraction was confined to the 0-0.6 m depth by regular irrigation. About 16% of the available water in the 0.6-1.2 m depth and 89% of the available water in the 1.2-1.8 m depth could not be extracted by the crop. Failure to extract water from the lower subsoil was attributed to soil physical restrictions and lack of adequate root density.
机译:琉森(苜蓿(Medicago sativa L.)cv。在浅红色棕壤上生长的WL45 1在开花期间要经受不同的灌溉频率,以确定对种子产量的影响。在两次灌溉之间以75 mm的累积Epan进行灌溉时,最高产量为1105 kg ha-1。随着两次灌溉间隔的增加,产量下降至528 kg ha-1,结果是减少了开花期间的用水总量。种子产量与总的顶端生长,茎的数量,带有豆荚的外消旋体的数量和每个豆荚的种子数量呈正相关。灌溉处理既不影响单个种子的单个种子重量也不影响荚果的数量。作物提取的土壤水主要限于0-1.2 m的深度。但是,当通过常规灌溉将土壤水分提取限制在0-0.6 m的深度时,种子产量最高。作物无法提取深度在0.6-1.2 m处的可用水的16%和深度在1.2-1.8 m处的可用水的89%。无法从下层土壤中抽水归因于土壤物理限制和根系密度不足。

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    《Animal Production Science》 |1986年第5期|p.577-581|共5页
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