首页> 外文期刊>International Journal of Agronomy >Analyzing the Effect of Intensive and Low-Input Agrotechnical Support for the Physiological, Phenometric, and Yield Parameters of Different Maize Hybrids Using Multivariate Statistical Methods
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Analyzing the Effect of Intensive and Low-Input Agrotechnical Support for the Physiological, Phenometric, and Yield Parameters of Different Maize Hybrids Using Multivariate Statistical Methods

机译:利用多元统计方法分析密集和低投入特征对不同玉米杂交种的生理,现象和产量参数的影响

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Improving nitrogen efficiency is a crucial strategy for developing sustainable agricultural systems that leads to maximum yield in exchange for minimum inputs and nitrogen loss. Three maize hybrids ( Zea mays L.) of different maturity classes and length of vegetation period (FAO 400, FAO 490, and FAO 380) were selected and for trials during the 2019 growing season. Three different nitrogen (N) fertilization treatments (0, 120, and 305?kg·N·ha ?1 ) were applied in order to assess variability in yield-related components. The effect of hybrids, fertilizer, and the interaction of the examined hybrids in relation to fertilizer was significant on yield and oil and protein content. Correlation and biplot analysis show that increases in the lipid peroxidation (LP) amount in the plant leaf stages cause a decrease in the oil content of the harvested yield. The activity of ascorbate peroxidase (APX) and LP at the six-leaf stage directly affects the protein content. The amount of APX at the silking stage has a direct and significant effect on starch content. This study showed that the activity of APX at the silking stage has the highest value in all examined hybrids. APX and LP can be controlled with nitrogen fertilization under various environmental circumstances.
机译:提高氮效率,是发展可持续农业系统的关键战略,导致最高产量,以换取最低的投入和氮的损失。不同成熟度的类和植物生长期的长度的三个玉米杂交种(玉蜀黍L.)(FAO 400,FAO 490和FAO 380)选择并用于在2019生长季试验。三种不同的氮(N)施肥处理(0,120,和305?公斤·N·公顷?1),以便评估在产量相关组件可变性施加。杂交体,肥料的效果,并且被检查杂交相对于肥料的相互作用是在产率和油和蛋白质含量显著。相关性和双标图分析表明在植物叶阶段增加的脂质过氧化(LP)量导致收获产量的油含量的减少。抗坏血酸过氧化物酶(APX)和LP中的六叶期的活性直接影响到蛋白质含量。 APX在吐丝期的量对淀粉含量有直接和显著的效果。这项研究表明,APX在吐丝期的活动在所有检测混合动力车的最高值。 APX和LP可以在各种环境情况氮肥控制。

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