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Genotype x management interaction for nutrient use efficiency (NUE) of maize varieties tested under different tillage and fertilization regimes

机译:不同耕作和施肥方式下玉米基因型×管理交互作用对养分利用效率的影响

摘要

Most varieties have been selected under high input conditions, including seed treatment, herbicide applications, as well as optimal levels of fast releasing fertilizers. Under organic farming nutrient release is dependent on the temperature and biological activity of the soil and its interaction with the declining residues from previous crops and applied quantity of farmyard manure. As a consequence it is not always possible to match nutrient release with crop demand over time. This effect is even more severe under conservation tillage. To promote conservation tillage in organic farming, it is necessary to identify cultivars that show high nutrient use efficiency (NUE) under these conditions. While there is substantial evidence that breeding for low N input conditions selection is more efficient under severe N stress than under high input conditions only few studies have been conducted to demonstrate the difference in selection gain between organic and inorganic fertilization or between different soil tillage management. The objectives of the study were (i) to quantify the NUE of maize (Zea mays L.) genotypes under different tillage regimes and fertilization levels, (ii) to compare the effect of slow releasing organic versus inorganic fertilizer, and (iii) determine genotype x management interaction.
机译:大多数品种都是在高投入条件下选择的,包括种子处理,除草剂应用以及最佳速释肥料水平。在有机耕作中,养分的释放取决于土壤的温度和生物活性,以及​​其与先前农作物中不断减少的残留物的相互作用以及农家肥料的施用量。结果,随着时间的推移,并非总是能够使营养释放与作物需求相匹配。在保护性耕作下,这种影响更为严重。为了促进有机农业中的保护性耕作,有必要确定在这些条件下表现出高养分利用效率(NUE)的品种。尽管有充分的证据表明,低氮输入条件下的选育在严重氮胁迫下比高输入条件下的选育更为有效,但很少有研究证明有机肥和无机肥之间或不同耕作方式之间选择增益的差异。该研究的目的是(i)量化不同耕作制度和施肥水平下玉米(Zea mays L.)基因型的NUE,(ii)比较缓释有机肥料与无机肥料的影响,以及(iii)确定基因型x管理互动。

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