施氮条件下春小黑麦新品种蒂米亚泽夫斯卡亚42的生产潜力分析

Ekaterina Enzekrei, O. Schuklina, A. Soloviev, S. Zavgorodniy, O. Ermolenko, Alexandr Polkhovskiy, I. Voronchihina
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引用次数: 0

摘要

本文对Timiryazevskaya 42小黑麦新品种在不同施氮量下的生产潜力进行了分析。2016 - 2018年在灰化土上进行的田间试验表明,施肥剂量的增加使产量从14%提高到140%。Timiryazevskaya 42品种对高水平的矿物肥料有反应。在播种期间,每1公顷(ha)施用150公斤有效成分(AI),平均每公顷粮食产量为12.5吨。分析表明,利用开花时穗实现系数(SRC)和穗质量两个参数,可以预测植被期中期的产量最大值和植株潜力实现水平。其中,在有利的气候条件下,不同氮肥用量下研究参数与所得生物生产力的相关性要高得多。2018年,Timiryazevskaya 42的产量对SRC的依赖性最大(r = 0.82)。对作物结构要素形成的研究表明,生物生产力与每穗粒数(r = 0.62)和生产业务(r = 0.89)的相关性最高(3年平均值)。关键词:小黑麦,生产力潜力,生物生产力,氮肥,穗实现系数
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential Productivity Analysis of the Timiryazevskaya 42 New Spring Triticale Cultivar at Nitrogen Fertilizer Application
In this work we bring the results of the new Timiryazevskaya 42 triticale cultivar potential productivity analysis at different amount of nitrogen fertilizer application. Field experiments held in between 2016 and 2018 on podzol soil showed that increase of fertilizer dose led to the increased yield from 14% to 140%. Timiryazevskaya 42 variety is responsive to the high levels of mineral fertilizer. Dose equal to 150 kg of active ingredient (AI) per 1 hectare (ha) applied during sowing forms an average 12,5 tons per hectare yield of grain. Analysis showed that by using two parameters spike realization coefficient (SRC) and spike mass in the bloom, one can predict the yield maximum and the level of plant potential realization in the middle of vegetation period. Wherein, under favorable weather conditions, the dependence of the studied parameters and the obtained biological productivity at different doses of nitrogen fertilizers is much higher. In 2018, Timiryazevskaya 42 showed the greatest dependence (r = 0.82) of yield on SRC. A study of the formation of crop structure elements showed that the highest correlation (average for three years) was found between biological productivity and the amount of grain per spike (r = 0.62), and between biological productivity and productive bushiness (r = 0.89). Keywords— spring triticale, potential productivity, biological productivity, nitrogen fertilizers, spike realization coefficient
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