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首页> 外文期刊>Trends in Biosciences >Evaluation of Summer Groundnut Genotypes for Dry Matter Production and its Partitioning Studies (Arachis hypogaea L.)
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Evaluation of Summer Groundnut Genotypes for Dry Matter Production and its Partitioning Studies (Arachis hypogaea L.)

机译:夏季花生基因型干物质生产的评估及其分区研究(花生)

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摘要

The population of twelve germplasm lines was evaluated in randomized block design (RBD) with three replications at AICRPon Groundnut, MPKV, Rahuri, and Dist. Ahmednagar (M.S.) duringsummer 2012 to study the physiological analysis of growth and yield variation in groundnut genotypes. The observations on plant height, number of branches, number of leaves, leaf area, dry matter production and its partitioning in components plant parts viz root, stem, leaves and pods, photosynthetic rate, transpiration rate, stomatal conductance, yield and yield contributing characters and protein and oil content were recorded. The plant height, number of branches, number of leaves and leaf area were increasing rapidly upto 100 DAS and slowed down thereafter. Dry matterof leaf, stem, pods per plant differed significantly throughout the growth period. Studies on leaf area revealed that, it is good for increasing photosynthetic efficiency of plant. The genotypes significantly differed in respect of yield per plant. Thehighest dry pod yield was recorded by the genotypes WRGS-15, JL-501,RHRG-6021 and JALW-02 due to significant favourable yield contributing characters like number of mature pods per plant, dry pod yield (gm) per plant, 100 kernels weight (gm) and harvestindex. On the basis of morpho-physiological traits and bio-chemical parameters, WRGS-15, JL-501,RHRG-6021, JALW-02 andTAG-24 were considered as promising genotypes for future breeding programme for yield improvement and protein and oil content.
机译:采用随机区组设计(RBD)对12种种系的种群进行了评估,并在AICRP花生,MPKV,Rahuri和Dist进行了3次重复。 Ahmednagar(M.S.)在2012年夏季进行了研究,研究了花生基因型生长和产量变化的生理分析。观察植物高度,枝条数,叶数,叶面积,干物质产量及其在植物各部分中的分配,即根,茎,叶和豆荚,光合速率,蒸腾速率,气孔导度,产量和产量贡献特征并记录蛋白质和油含量。直至100 DAS,株高,枝条数,叶数和叶面积迅速增加,此后减慢。在整个生长期,每株植物的叶,茎,豆荚干物质差异显着。叶面积研究表明,它对提高植物的光合作用效率有好处。基因型在单株产量方面有显着差异。基因型WRGS-15,JL-501,RHRG-6021和JALW-02记录了最高的干荚产量,这是由于明显有利的产量贡献特性,例如每株植物成熟荚的数量,每株植物干荚的产量(gm),100粒重量(克)和收获指数。根据形态生理特性和生化参数,WRGS-15,JL-501,RHRG-6021,JALW-02和TAG-24被认为是未来育种计划中有望提高产量和蛋白质和油含量的基因型。

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