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Yield and yield components of hybrid corn (Zea mays L.) as affected by mycorrhizal symbiosis and zinc sulfate under drought stress

机译:干旱胁迫下菌根共生和硫酸锌对杂交玉米(Zea mays L.)产量和产量构成的影响

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摘要

With respect to the significance of improving hybrid corn performance under stress, this experiment was conducted at the Islamic Azad University, Arak Branch, Iran. A complete randomized block design with three levels of irrigations (at 100%, 75% and 50% crop water requirement), two levels of arbuscular mycorrhizal (AM) fungi (Glumus intraradisis) (including control), and three levels of zinc (Zn) sulfate (0, 25 and 45 kg ha−1), was performed. Results of the 2-year experiments indicated that irrigation treatment significantly affected corn yield and its components at P = 1%. AM fungi and increasing Zn levels also resulted in similar effects on corn growth and production. Although AM fungi did not significantly affect corn growth at the non-stressed irrigation treatment, at moderate drought stress AM fungi significantly enhanced corn quality and yield relative to the control treatment. The combined effects of AM fungi and Zn sulfate at 45 kg ha−1 application significantly affected corn growth and production. In addition, the tripartite treatments significantly enhanced corn yield at P = 1%. Effects of Zn and AM fungi on plant growth under drought stress is affected by the stress level.
机译:关于在压力下改善杂交玉米性能的重要性,该实验是在伊朗伊斯兰阿扎德大学阿拉克分校进行的。完整的随机区组设计,具有三级灌溉(100%,75%和50%的作物需水量),两级丛枝菌根(AM)真菌(Glumus intraradisis)(包括对照)和三级锌(Zn) )进行了硫酸盐处理(0、25和45 kg ha -1 )。两年的实验结果表明,灌溉处理显着影响玉米产量及其组成,P = 1%。 AM真菌和锌含量的增加对玉米的生长和产量也产生了类似的影响。尽管AM真菌在无压力灌溉处理下不会显着影响玉米生长,但在中度干旱胁迫下,AM真菌相对于对照处理显着提高了玉米质量和产量。施肥量为45 kg ha -1 的AM真菌和硫酸锌的联合效应显着影响了玉米的生长和产量。另外,三方处理显着提高了玉米的产量,P = 1%。锌和AM真菌对干旱胁迫下植物生长的影响受胁迫水平的影响。

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