首页> 外文期刊>Journal of Agricultural Science >Analysis of Leaf Area Index Dynamic and Grain Yield Components of Intercropped Wheat and Maize under Straw Mulch Combined with Reduced Tillage in Arid Environments
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Analysis of Leaf Area Index Dynamic and Grain Yield Components of Intercropped Wheat and Maize under Straw Mulch Combined with Reduced Tillage in Arid Environments

机译:干旱环境下秸秆覆盖减耕的间作小麦和玉米叶面积指数动态及产量构成因素分析。

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Knowledge on effect of yield formation under straw combined with plastic film mulch is important in highlighting the importance of cultivating high-efficient and high-yield crops in the arid environments. In this study, we developed a ‘double-mulching’ system, i.e., plastic film coupled with straw mulch, integrated together with intensified strip intercropping. We determined (i) the responses of leaf area index improvement to the integrated double mulching system, and (ii) Its effects on yield formation process and mechanism of intercropped wheat and maize under the integrated systems. Experiments were carried out in northwest China in 2009 to 2011. Results showed that wheat-maize strip intercropping in combination with plastic film and straw covering on the soil surface (i.e., NTS) increased maize yield by 27 to 42% compared to conventional monoculture maize, and increased wheat yield by 149 to 160% compared to conventional monoculture wheat. The crops on NTS had higher harvest index of maize, an increase of 8.2 to 21.6% than that of conventional monoculture maize. NTS system increased spike number (i.e., SN) by an average of 30.4%, increased kernel number per spike (i.e., KNS) by an average of 10.8%, and increased thousand-kernel weight (i.e., TKW) by an average of 7.0% of intercropped wheat in comparison with conventional monoculture wheat. Similarly, there was an average increase of 5.7% of SN, 23.8% of KNS, and 7.5% of TKW under intercropped maize in comparison with conventional monoculture maize. Moreover, the treatment on NTS had greater leaf area index (i.e., LAI) an average increase of 64.1% than that in conventional monoculture maize. Similarly, LAI had an average increase of 29.3% than conventional monoculture wheat. Path analysis exhibited that straw mulching combined with reduced tillage increased the grain yield of intercropped wheat by improving KNS, and increased the grain yield of intercropped maize by improving SN. We conclude that the intercropping system in combination with plastic film and straw mulching can be an effective system for boosting crop productivity via improving yield components and LAI under limited resources in arid enviroments.
机译:了解秸秆结合塑料膜覆盖下单产的效果对于强调在干旱环境中种植高效高产作物的重要性非常重要。在这项研究中,我们开发了一种“双覆盖”系统,即塑料膜与秸秆覆盖物结合在一起,并与增强的带间作结合在一起。我们确定了(i)叶面积指数提高对综合双覆盖系统的响应,以及(ii)在综合系统下其对间作小麦和玉米产量形成过程和机理的影响。 2009年至2011年在中国西北地区进行了试验。结果表明,与传统的单作玉米相比,小麦-玉米条间作与塑料膜和秸秆覆盖在土壤表面(即NTS)相结合,使玉米产量提高了27%至42% ,与传统的单作小麦相比,小麦产量提高了149%至160%。 NTS上的农作物具有更高的玉米收获指数,比传统的单作玉米提高了8.2%至21.6%。 NTS系统使穗数(即SN)平均增加30.4%,使每个穗子(即KNS)的仁数平均增加10.8%,千内核重量(即TKW)平均增加7.0间作小麦与常规单作小麦相比的百分比。同样,与传统的单作玉米相比,间作玉米的平均SN增幅为5.7%,KNS的增幅为23.8%,TKW的增幅为7.5%。而且,NTS处理的叶面积指数(即LAI)比常规单作玉米平均增加64.1%。同样,LAI比传统的单作小麦平均增加29.3%。通径分析表明,秸秆覆盖与减少耕作相结合,通过改善KNS提高了间作小麦的籽粒产量,并通过改善SN提高了间作玉米的籽粒产量。我们得出的结论是,在干旱环境中有限的资源下,间作系统与塑料膜和秸秆覆盖一起可以通过提高产量构成部分和LAI来提高作物生产力,是一种有效的系统。

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