Genotypes × environment interaction for grain yield of finger millet under hilly region of Nepal

Grain yield stability on new finger millet genotypes through G×E interaction analysis is an important task for finger millet breeding programs. Sixteen promising finger millet (Eleusine coracana (L.) Gaertn.) genotypes were evaluated in randomized complete block design replicated over two locatio...

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Bibliographic Details
Main Authors: Manoj Kandel, Jiban Shrestha, Narayan Bahadur Dhami, Tirtha Raj Rijal
Format: Article
Language:English
Published: Farm to Fork Foundation 2020-06-01
Series:Fundamental and Applied Agriculture
Subjects:
Online Access:http://www.ejmanager.com/fulltextpdf.php?mno=96493
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Summary:Grain yield stability on new finger millet genotypes through G×E interaction analysis is an important task for finger millet breeding programs. Sixteen promising finger millet (Eleusine coracana (L.) Gaertn.) genotypes were evaluated in randomized complete block design replicated over two locations viz Kabre, Dolakha; and Vijaynagar, Jumla, Nepal over three years (2017, 2018 and 2019). The stability parameters were computed for grain yield after Eberhart and Russell. The pooled analysis of variance revealed that the genotypes and genotype × environment (G × E) interaction were significant for grain yield. The genotypes KLE-559 produced the highest grain yield (3.32 t/ha) followed by GE-0356 (3.31 t/ha) and KLE-236 (3.25 t/ha). The genotypes namely ACC#2843 (b=1.12), KLE-559 (b=1.15) and ACC#2827-1 (b=1.1516) had more than unity regression indicating the genotypes suitability towards favorable environments. GGE biplot showed genotype KLE-559 was more stable genotype. Thus, this genotype was recommended for release as variety to improve finger millet production in mid hill environments of Nepal. [Fundam Appl Agric 2020; 5(2.000): 281-288]
ISSN:2518-2021