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Influence of windbreak orientation, shade and rainfall interception on wheat and lupin growth in the absence of below-ground competition

机译:在没有地下竞争的情况下,风向,遮荫和降雨截留对小麦和羽扇豆生长的影响

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In the temperate cropping regions of Australia, the benefits of shelter from windbreaks are often offset by tree-crop competition. The aim of this trial was to quantify microclimate and crop growth close to shade-cloth windbreaks with various orientations, to determine the effect of shelter and above-ground competition on the growth and productivity of wheat (Triticum aestivum) and lupins (Lupinus angustifolius) in the absence of below-ground competition. The trial was conducted in southwestern Australia in 2000 and 2001. The windbreaks modified windspeed, temperature, light and rainfall both spatially and temporally. Consequently, there were spatial differences in the phenology, morphology and productivity of the crops and the incidence of fungal disease adjacent to the windbreaks. Mean grain yield within three times the height of the windbreaks (H) was 97, 102, 82, and 98% of yield beyond 3 H on the northern, eastern, southern and western aspects respectively for wheat and 99, 87, 90, and 87% respectively for lupins. Changes in windspeed and rainfall were not significantly correlated with the relative yield of either crop. However, photosynthetically active radiation was significantly correlated with yield for wheat but not for lupins. Given these responses, and the practical difficulties of reducing below-ground tree-crop competition to the point where light is more limiting for crop growth than water, it is recommended that windbreaks continue to be oriented primarily to protect against damaging winds, rather than to minimise shading in the medium and low rainfall areas of Australia.
机译:在澳大利亚的温带农作物地区,防风林的庇护所带来的好处通常被树种竞争所抵消。该试验的目的是量化具有不同方向的遮阳布防风林附近的小气候和农作物生长,以确定避难所和地上竞争对小麦(Triticum aestivum)和羽扇豆(Lupinus angustifolius)生长和生产力的影响在没有地下竞争的情况下。该试验于2000年和2001年在澳大利亚西南部进行。防风林在时空上改变了风速,温度,光照和降雨。因此,作物的物候,形态和生产力以及防风林附近真菌病的发病率存在空间差异。在小麦,99%,87%,90%和99%的防风林高度(H)的三倍内,北,东部,南部和西部的平均谷物产量分别为3、3 H以上的97%,102、82和98%。羽扇豆分别占87%。风速和降雨的变化与两种作物的相对产量没有显着相关。但是,光合有效辐射与小麦的产量显着相关,而对羽扇豆则不相关。鉴于这些反应,以及将地下作物的竞争减少到光对水的限制比水对农作物生长的限制更大的实际困难,建议继续将防风林的方向主要用于防止有害的风,而不是尽量减少澳大利亚中低降雨地区的阴影。

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