Response of Yield, Antioxidant Enzymes Activities, and Fatty Acids in Peanut (Arachis hypogaea L.) to Bio-fertilizers and Amino Acids in Different Irrigation Regimes

IF 2.4 3区 农林科学 Q1 AGRONOMY
Soheila Najafalizadeh, Seyed Ali Mohammad Modarres-Sanavy, Marefat Mostafavi-Rad, Ali Mokhtassi-Bidgoli
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Abstract

Bio-fertilizers (BF) and amino acids (AA) improve plant growth by activating antioxidant enzymes and establishing a favorable metabolic environment to maintain physiological balance and drought stress mitigation. This experiment aimed to assess the influence of some BF and AA on peanuts (Arachis hypogaea L.) under drought stress. It was conducted during 2018–2019 as a split-split plot based on a randomized complete blocks design with three replications in the experimental field of the Agricultural and Natural Resources Research and Education Center of Guilan province, Rasht, Iran. Three irrigation regimes including irrigation after 75 (IR75), 100 (IR100), and 125 (IR125) mm evaporation from class A evaporation pan, four levels of BF including no application of bio-fertilizers as control (Z0), Arbuscular mycorrhiza (AM), Azospirillum brasilense (AB), Pseudomonas fluorescens (SF) and four levels of AA including no application of AA as control (Z0), Aminol-Forte (AF), Humi-Forte (HF) and Pro-Amin (PA) comprised experimental treatments as main plot, sub-plot and sub-sub plot, respectively. Peanut seed yield (SY) decreased under intensive drought stress. In 2018 and 2019, peanut SY increased by 43.34 and 38.08% in IR75 compared to control, under the interaction of AB×HF and SF×HF, respectively. The interaction of AB and HF increased antioxidant enzymes and improved SY under drought stress, which can be considered an innovation. Hence, the application of AB and HF could be recommended to enhance peanut SY under similar climatic conditions.

Abstract Image

不同灌溉制度下花生(Arachis hypogaea L.)的产量、抗氧化酶活性和脂肪酸对生物肥料和氨基酸的响应
生物肥料(BF)和氨基酸(AA)通过激活抗氧化酶和建立有利的代谢环境来维持生理平衡和缓解干旱胁迫,从而改善植物生长。本实验旨在评估干旱胁迫下一些生物肥料和氨基酸对花生(Arachis hypogaea L.)的影响。该试验于2018-2019年期间在伊朗拉什特市吉兰省农业与自然资源研究和教育中心的试验田中进行,采用随机完全区组设计,三次重复,分小区进行。三种灌溉制度,包括从 A 级蒸发盘蒸发 75 毫米(IR75)、100 毫米(IR100)和 125 毫米(IR125)后灌溉,四种生物肥料水平,包括不施用生物肥料作为对照(Z0)、丛枝菌根(AM)、Azospirillum brasil、Azospirillum brasil、Azospirillum brasil、Azospirillum brasil、Azospirillum brasil)和 BF、Azospirillum brasilense (AB)、荧光假单胞菌 (SF) 和四级 AA(包括不施用 AA 作为对照 (Z0))、Aminol-Forte (AF)、Himi-Forte (HF) 和 Pro-Amin (PA))分别组成主小区、副小区和子小区的实验处理。在密集干旱胁迫下,花生种子产量(SY)下降。2018年和2019年,在AB×HF和SF×HF的交互作用下,IR75的花生SY与对照相比分别增加了43.34%和38.08%。AB和HF的交互作用提高了抗氧化酶,改善了干旱胁迫下的SY,可以说是一种创新。因此,建议在类似气候条件下应用 AB 和 HF 提高花生 SY。
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来源期刊
Gesunde Pflanzen
Gesunde Pflanzen 农林科学-农艺学
CiteScore
3.50
自引率
25.80%
发文量
152
审稿时长
>12 weeks
期刊介绍: Gesunde Pflanzen publiziert praxisbezogene Beiträge zum Pflanzenschutz in Landwirtschaft, Forstwirtschaft, Gartenbau und öffentlichem Grün und seinen Bezügen zum Umwelt- und Verbraucherschutz sowie zu Rechtsfragen. Das Themenspektrum reicht von der Bestimmung der Schadorganismen über Maßnahmen und Verfahren zur Minderung des Befallsrisikos bis hin zur Entwicklung und Anwendung nicht-chemischer und chemischer Bekämpfungsstrategien und -verfahren, aber auch zu Fragen der Auswirkungen des Pflanzenschutzes auf die Umwelt, die Sicherung der Ernährung sowie zu allgemeinen Fragen wie Nutzen und Risiken und zur Entwicklung neuer Technologien. Jedes Heft enthält Originalbeiträge renommierter Wissenschaftler, aktuelle Informationen von Verbänden sowie aus der Industrie, Pressemitteilungen und Personalia. Damit bietet die Zeitschrift vor allem Behörden und Anwendern im Agrarsektor und Verbraucherschutz fundierte Praxisunterstützung auf wissenschaftlichem Niveau.
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