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Responses of two common bean (Phaseolus vulgaris L.) genotypes to deficit irrigation

机译:两种常见豆(phoudolusulus vulgaris l.)基因型对缺陷灌溉的反应

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About 90% of Iran extends over arid and semi-arid areas where drought stress is inevitably suffered by crops such as common bean. Due to limitations in water resources and importance of common bean in Iran, it is essential to evaluate common bean under water-deficit condition. The objective of this study was to determine effects of deficit irrigation on the yield, physiology and biochemistry of two bean genotypes. Experiments were conducted at the Agricultural Experimental Station, Shahr-e-Kord University, Shahr-e-Kord, Iran during 2014 and 2015. The plants were submitted to non-drought stress (NDS), moderate drought stress (MDS) and severe drought stress (SDS) under field conditions. Seed yield, phonological stages, leaf greenness, relative water content (RWC), stomatal conductance (SC), canopy temperature depression(CTD), intercepted PAR (PAR(1)), leaf area index(LAI), radiation use efficiency(RUE), lipid peroxidation, activity of enzymatic antioxidants, water use efficiency(WUE) and water productivity(WP) were recorded. The results indicated that, seed yield decreased due to deficit irrigation; RWC, SC and leaf greenness were lower under MDS and SDS conditions; whereas deficit irrigation had not equal effects on WUE, WP and RUE of the tested genotypes. Under NDS condition, genotype KS21193 is superior than genotype K521486 in many traits including seed yield, RUE, PAR(1), WUE and WP. While, the situation is changed under water deficit conditions, so that K521486 is superior than KS21193 in terms of the majority of traits measured such as seed yield, RWC, RUE, SC and CTD before irrigation, WUE, WP. In fact, genotype KS21486 is more tolerant to water deficit conditions than another genotype. This was attributed to various mechanisms such as stress escape, decreased chlorophyll, LAI and PAR(1), more conversion efficiency of received water and PAR into dry matter and economic yield and more efficient enzymatic antioxidants.
机译:大约90%的伊朗延伸到干旱和半干旱地区,其中干旱胁迫不可避免地受普通豆类等作物。由于伊朗的水资源和普通豆的重要性,在水赤缺状况下评估常见豆类是必不可少的。本研究的目的是确定赤字灌溉对两种豆类基因型的产量,生理学和生物化学的影响。 2014年和2015年伊朗的农业实验站,Shahr-e-Kord大学农业实验站进行了实验。该植物提交了非干旱胁迫(NDS),中等干旱胁迫(MDS)和严重干旱在现场条件下应力(SDS)。种子产量,音韵阶段,叶片绿,相对含水量(RWC),气孔电导(SC),冠层温度抑制(CTD),截取的PAR(PAR(1)),叶面积指数(LAI),辐射利用效率(RUE ),记录脂质过氧化,酶促抗氧化剂,水使用效率(WUE)和水生产率(WP)的过氧化。结果表明,由于赤字灌溉,种子产量减少;在MDS和SDS条件下,RWC,SC和叶片绿色较低;虽然缺陷灌溉对测试基因型的WUE,WP和RUE没有平等的影响。在NDS条件下,基因型Ks21193比基因型K521486在许多特征,包括种子产率,Rue,par(1),Wue和WP。虽然,在水缺陷条件下,情况发生了变化,因此K521486在灌溉前,WUE,WP之前的种子产量,RWC,RUE,SC和CTD等大多数特征,K521486优于KS21193。实际上,基因型KS21486比另一种基因型更容易耐水缺陷条件。这归因于各种机制,例如应力逃逸,降低叶绿素,赖奇和PAR(1),接受水的更高转化效率,并进入干物质和经济产率和更有效的酶抗氧化剂。

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