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Multivariate analysis for yield and yield-related traits of sesame (

机译:芝麻产量和产量相关性状的多变量分析(

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摘要

Sesame production under irrigation is limited in Ethiopia because of in availability of high yielding varieties, inadequate and inefficient irrigation schemes, and insignificant awareness of producers. This study, comprising 13 sesame genotypes, was conducted around Humera and Werer during 2018 and 2019 under irrigation. The design was randomized completely block design with three replications and the objectives were to develop high yielding genotypes and identify important agronomic traits. Multivariate statistical methods like Additive Main Effect and Multiplicative Interaction (AMMI) model, Principal Component Analysis, Cluster and factor analyses were used. The genotypes (6.22%), environments (42.62) and Genotype × Environment Interactions (25.09%) were statistically (p < 0.001) significant for the agronomic traits. The grain yield in each observation varied from 383 kg/ha to 2044 kg/ha and the grand mean yield was 820.19 kg/ha. The highest mean yield was recorded from G12 (948.6 kg/ha) followed by G4 (938.9 kg/ha) while the lowest was recorded from G8 (703.1 kg/ha). G1, G4, G12, G5, G8, G11 and G13 are identified as unstable genotypes while G2, G3, G6, and G9 are stable genotypes. The genotypes were grouped in to four clusters and cluster-II was characterized as the high yielding cluster and it was also associated with grain yield, pods per plant, branches per plant and thousand seed weight. Branches per plant, pods per plant and thousand seed weight may be most determinant and crucial in developing high yielding sesame varieties. This finding recommends that G4 and G6 are desirable genotypes and can be used for irrigation production.
机译:灌溉下的芝麻产量受到埃塞俄比亚的限制,因为在高产品种的可用性中,灌溉方案不足和低效的灌溉方案,并对生产者的意识无关紧要。本研究包含13个芝麻基因型,在2018年和2019年在灌溉期间在Humera和Werer上进行。该设计是随机的完全块设计,具有三种复制,目标是开发高产基因型并确定重要的农艺性状。多变量统计方法,如添加剂主要效果和乘法相互作用(AMMI)模型,主要成分分析,簇和因子分析。基因型(6.22%),环境(42.62)和基因型×环境相互作用(25.09%)对于农艺性状有统计学(P <0.001)。每个观察中的谷物产量从383kg / ha变化到2044kg / ha,宏观平均产率为820.19kg / ha。从G12(948.6 kg / ha)后,G12(938.9kg / ha)记录最高的平均产量,而最低的速率从G8记录(703.1kg / ha)。 G1,G4,G12,G5,G8,G11和G13被鉴定为不稳定的基因型,而G2,G3,G6和G9是稳定的基因型。将基因型分组为四个簇,簇-II的特征在于高产簇,它也与谷物产量,每株豆荚,每株植物分支和千种子重量相关。每株植物的分支,每株植物和千种子重量的豆荚可能是大多数决定因素,并且在开发高产芝麻味体中至关重要。该发现建议G4和G6是理想的基因型,可用于灌溉生产。

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