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首页> 外文期刊>Indian Journal of Horticulture >Evaluation of physiological and yield traits in cowpea for screening of drought tolerance lines
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Evaluation of physiological and yield traits in cowpea for screening of drought tolerance lines

机译:对豇豆筛选耐旱线筛查生理和产量性状的评价

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摘要

Drought (soil and/ atmospheric water deficit) is the most environmental constraints among abiotic stresses. Cowpea is inherently more drought tolerant than other vegetables, but it also suffers to a considerable yield loss when the moisture deficit is imposed during flowering and pod setting. The experiment was carried out at IIVR, Varanasi during spring-summer of 2012 and 2013. A total of 29 diverse cowpea genotypes, comprising of vegetable and grain types were selected for study. Drought stress was imposed 35 days after sowing by with holding the irrigation for 25 days. All genotypes were also kept under well watered control. Experimental findings revealed that under drought stress, some genotypes, viz., EC-30590, EC-37988, EC-390241, EC-15296, EC-472283 and Gomti expressed significantly higher relative leaf water content (>80%), photosynthesis (14.7 to 18.2 mu mol m(-2) s(-1)), stomatal conductance (0.443 to 0.818 mu mol m(-2) s(-1)), quantum yield of PSII photochemistry, i.e. Fvl Fm (0.467 to 0.727) and transpiration rate (0.0321 to 0.0467). These genotypes also showed less yield and dry matter reduction under drought stress as compared to susceptible cultivars/genotypes. The commercial cultivars such as, Akra Garima, Kashi Nidhi, Kashi Shyamal and Kashi Kanchan were found more susceptible to drought. It may concluded that genotypes EC-30590, EC-37988, EC-390241, EC-15296, EC-472283 and Gomti were fairly drought tolerant, and may be utilized for cultivation under water limited condition or for breeding of drought tolerant cultivars.
机译:干旱(土壤和/大气水赤字)是非生物胁迫中最环保的限制。豇豆本质上是比其他蔬菜更具干旱,但是当在开花和荚环境期间施加水分缺陷时,它也存在相当大的产量损失。该实验在2012年夏季夏季,瓦拉纳西进行了IIVR,共有29种不同的豇豆基因型,包括植物和谷物类型进行研究。播种35天后施加干旱压力25天。所有基因型也保持在浇水良好的控制下。实验结果表明,在干旱胁迫下,一些基因型,viz,EC-30590,EC-37988,EC-390241,EC-15296,EC-472283和GOMTI表达了相对叶水含量(> 80%),光合作用显着更高14.7至18.2μmmolm(-2)s(-1)),气孔电导(0.443至0.818 mol m mol m(-2)s(-1)),psii光化学的量子产率,即fv1 fm(0.467至0.727 )和蒸腾率(0.0321至0.0467)。与易感品种/基因型相比,这些基因型还显示出干旱胁迫下的产量和干物质减少。诸如Akra Garima,Kashi Nidhi,Kashi Shyamal和Kashi Kanchan的商业品种被发现更容易受到干旱的影响。它可以得出结论,基因型EC-30590,EC-37988,EC-390241,EC-15296,EC-472283和GOMTI是相当干旱的,可用于培养水有限的病症或育种耐旱品种。

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