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Comparative soil water, pasture production, and crop yields in phase farming systems with lucerne and annual pasture in Western Australia

机译:在西澳大利亚州使用琉森和一年生牧场的阶段性耕作系统中比较土壤水,牧草产量和农作物产量

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Two field experiments in the Great Southern region of Western Australia compared the soil water content under lucerne (Medicago sativa) with subterranean clover (Trifolium subterranean) and annual medic (Medicago polymorpha) over a 2-year period. Lucerne depleted soil water (10–150 cm) between 40 and 100 mm at Borden and 20 and 60 mm at Pingrup compared with annual pasture. There was also less stored soil water after wheat (Triticum aestivum) and canola (Brassica napus) phases which followed the lucerne and annual pasture treatments, 30 and 48 mm after wheat, 49 and 29 mm after canola at Borden and Pingrup, respectively.nnLucerne plant densities declined over 2 seasons from 35 to 25 plants/m2 (Borden) and from 56 to 42 plants/m2 (Pingrup), although it produced herbage quantities similar to or greater than clover/medic pastures. The lucerne pasture also had a reduced weed component.nnWheat yield at Borden was higher after lucerne (4.7 t/ha) than after annual pasture (4.0 t/ha), whereas at Pingrup yields were similar (2 t/ha) but grain protein was higher (13.7% compared with 12.6%) . There was no yield response to applied nitrogen after lucerne or annual pasture at either site, but it increased grain protein at both sites.nnThere was no pasture treatment effect on canola yield or oil content at Borden (2 t/ha, 46% oil). However, at Pingrup yield was higher (1.5 t/ha compared to 1.3 t/ha) and oil content was similar (41%) following lucerne–wheat.nnThe results show that lucerne provides an opportunity to develop farming systems with greater water-use in the wheatbelt of Western Australia, and that at least 2 crops can be grown after 3 years of lucerne before soil water returns to the level found after annual pasture
机译:在澳大利亚西部大南部地区进行的两次野外试验比较了卢塞恩(苜蓿(Medicago sativa))与地下三叶草(Trifolium subterranean)和一年生军医(Medicago polymorpha)在两年内的土壤水分含量。与一年生牧场相比,卢塞恩在Borden减少了40-100 mm的土壤水(10-150 cm),在Pingrup减少了20-60毫米的土壤水。分别在Borden和Pingrup的小麦(Triticum aestivum)和油菜(Brassica napus)阶段之后,分别在小麦和小麦后分别处理30和48 mm,在菜籽油之后分别处理49和29 mm,小麦(Triticum aestivum)和油菜(Brassica napus)阶段之后的土壤水储量也较少。尽管其产生的牧草数量与三叶草/药用牧草相似或更大,但植物密度在2个季节中从35降至25植株/平方米(Borden)和56-42植株/平方米(Pingrup)。卢塞恩牧场的杂草成分也降低了.nn卢塞恩之后的小麦产量(4.7 t / ha)高于一年生牧场之后的(4.0 t / ha),而Pingrup的小麦产量相似(2 t / ha),但谷物蛋白更高(13.7%,相比之下12.6%)。卢塞恩或一年生牧草后,两个地点对施氮均无增产反应,但两个地点的籽粒蛋白质均增加。nn博登的牧草处理对低芥酸菜籽产量或含油量没有影响(2吨/公顷,含油量46%) 。然而,在卢塞恩-小麦之后,Pingrup的单产较高(1.5吨/公顷,而1.3吨/公顷),且油含量相似(41%)。nn结果表明,卢塞恩提供了发展用水量更大的耕作制度的机会在西澳大利亚州的小麦带中,经过3年的紫花苜蓿种植,至少有2种农作物可以在土壤水恢复到一年牧场后的水平

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  • 来源
    《Crop and Pasture Science 》 |2001年第2期| p.295-303| 共9页
  • 作者单位

    A Great Southern Agricultural Research Institute, Agriculture Western Australia, Katanning, WA 6317, Australia.B Faculty of Agriculture, The University of Western Australia, Katanning, WA 6317, Australia.C Faculty of Agriculture, The University of Western Australia, Nedlands, WA 6907, Australia.;

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