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首页> 外文期刊>Indian journal of agricultural research >YIELD DETERMINATION IN LENTIL UNDER NON-IRRIGATED AND IRRIGATED CONDITIONS: PHENOLOGY, DRY MATTER DISTRIBUTION AND YIELD ATTRIBUTES
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YIELD DETERMINATION IN LENTIL UNDER NON-IRRIGATED AND IRRIGATED CONDITIONS: PHENOLOGY, DRY MATTER DISTRIBUTION AND YIELD ATTRIBUTES

机译:非灌溉和灌溉条件下扁豆的产量测定:物候,干物质分布和产量属性

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摘要

Fifteen lentil genotypes were raised in field under non-irrigated and irrigated conditions during rabi seasons of 1998-99 and 1999-2000. Phenological days, dry matter distribution in plant parts at different phenological stages, mean environmental temperature and total degree days during were observed. Seed yield were higher under irrigated as compared to non-irrigated condition. Multiple regression between seed yield and different traits exhibited that all of them do not have significant contribution seed yield and seed yield determining factors are found to be different under irrigated and non-irrigated conditions. Under non-irrigated condition, lentil seed yield was determined by total dry matter production and its partitioning/day, mean temperature and total degree-days during podding to maturity. Under irrigated condition, lentil seed yield was determined by root dry matter at vegetative stage, total dry matter yield, per day dry matter production and its partitioning during seed filling period and total degree-days during flowering to podding. Multiple correlation (R) of traits was 0.9996 and 0.9984 and coefficient of determination (R-2) Was 0.9992 and 0.9964 under non-irrigated and irrigated conditions, respectively. Optimum values of the traits for seed yield maximization also varied amongst irrigated and non-irrigated conditions.
机译:在1998-99年和1999-2000年的狂犬病季节,在非灌溉和灌溉条件下,在田间饲养了15种小扁豆基因型。观察了物候天数,植物在不同物候阶段的干物质分布,平均环境温度和期间的总度数天。与非灌溉条件相比,灌溉条件下的种子产量更高。种子产量与不同性状之间的多元回归表明,它们在灌溉和非灌溉条件下都没有显着贡献,并且发现种子产量决定因素是不同的。在非灌溉条件下,小扁豆种子的产量取决于总干物质产量及其分配/天,平均温度和荚果成熟期间的总天数。在灌溉条件下,小扁豆种子的产量由营养期的根干物质,总干物质产量,每日干物质产量及其在种子灌浆期的分配以及开花至结荚期间的总度数天来确定。在非灌溉条件下,性状的多重相关(R)分别为0.9996和0.9984,测定系数(R-2)分别为0.9992和0.9964。在灌溉和非灌溉条件下,种子产量最大化的性状的最佳值也有所不同。

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