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首页> 外文期刊>American Journal of Plant Sciences >Potentials of Arbuscular Mycorrhiza Fungus in Tolerating Drought in Maize (Zea mays L.)
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Potentials of Arbuscular Mycorrhiza Fungus in Tolerating Drought in Maize (Zea mays L.)

机译:丛枝菌根真菌在玉米中耐旱的潜力(Zea mays L.)

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Maize is one of the most important cereal crops widely grown for food, feed, and fodder/forage throughout the world in a range of agroecological environments. Drought stress continues to haunt the maize farmers across south western part of Nigeria, thereby leading to low quantity of this essential staple food in the market. Efforts have been made to enhance the growths and yields in maize by investigating the influence of Arbuscular mycorrhizal fungus (Gigaspora gigantea) on the tolerance of maize to drought stress. The experiment was conducted in the teaching and research farm of Babcock University, Ilishan-Remo, Nigeria. The experiment was laid out in a complete randomized design with four replicates. Data were collected on eight morphological drought related characters. The objective of this research work was to evaluate the morpho-agronomic responses and potential of Gigaspora gigantea colonization in maize drought tolerance, and also to select parents in maize breeding for improved yield related components. The combined analysis of variance showed significant (P 0.05) treatment effect on majority of the traits evaluated. The treatments of Arbuscular Mycorrhiza Fungus (AMF) produced significant higher growth related traits suggesting that AMF treated plants had higher potential in influencing the tolerance to drought. Accession 3 was considered best for most of the traits studied and can be selected as parents in maize breeding for yield related components.
机译:玉米是世界上在各种农业生态环境中广泛用于食品,饲料和饲料/饲料的最重要的谷物作物之一。干旱压力继续困扰着尼日利亚西南部的玉米种植者,从而导致市场上这种基本主食的数量减少。通过研究丛枝菌根真菌(Gigaspora gigantea)对玉米对干旱胁迫的耐受性的影响,努力提高玉米的生长和产量。该实验在尼日利亚伊利桑-雷莫的巴布科克大学的教学和研究农场中进行。实验以完整的随机设计进行设计,一式四份。收集了八个与干旱相关的形态学数据。这项研究工作的目的是评估Gigaspora gigantea定植在玉米抗旱性方面的形态农艺反应和潜力,并在玉米育种中选择亲本以提高产量相关成分。方差的组合分析显示,对大多数评估的性状有显着(P 0.05)处理效果。丛枝菌根真菌(AMF)的处理产生了明显更高的生长相关性状,表明AMF处理过的植物在影响干旱耐受性方面具有更高的潜力。对于大多数研究的性状,登录号3被认为是最好的,可以在玉米育种中作为与产量相关的成分被选作亲本。

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