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  4. Genotype-Trait (GT) Biplot Analysis for Yield and Quality Stability in Some Sweet Corn (Zea mays L. saccharata Sturt.) Genotypes
 
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Genotype-Trait (GT) Biplot Analysis for Yield and Quality Stability in Some Sweet Corn (Zea mays L. saccharata Sturt.) Genotypes

Type
Journal article
Language
English
Date issued
2023
Author
Stansluos, Atom Atanasio Ladu
Öztürk, Ali
Niedbała, Gniewko 
Türkoğlu, Aras
Haliloğlu, Kamil
Szulc, Piotr 
Omrani, Ali
Wojciechowski, Tomasz 
Piekutowska, Magdalena
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
Agronomy
ISSN
2073-4395
DOI
10.3390/agronomy13061538
Web address
https://www.mdpi.com/2073-4395/13/6/1538
Volume
13
Number
6
Pages from-to
art. 1538
Abstract (EN)
A strong statistical method for investigating the correlations between traits, assessing genotypes based on numerous traits, and finding individuals who excel in particular traits is genotype–trait (GT) biplot analysis. The current study was applied to evaluate 11 sweet corn (Zea mays L. saccharata) genotypes and correlate them based on genotype–trait (GT) biplot analysis for two cropping seasons in Erzurum, Türkiye using the RCBD experimental design with three reputations. The results showed that the genotypes were significantly different for the majority of the examined variables according to the combined analysis of variance findings at 0.01 probability level. An ecological analysis was performed to evaluate sweet corn varieties and environmental conditions and interactions between them (genotype × environmental conditions). Our results showed that the summation of the first two and second main components was responsible for 73.51% of the combined cropping years of the sweet corn growth and development variance, demonstrating the biplot graph’s optimum relative validity, which was obtained. In this study, the Khan F1 (G6) genotype was found to be the stablest genotype, and the Kompozit Seker (G7) genotype was the non-stable genotype, moreover based on the first cropping year, second cropping year, and the average mean of the two cropping years. As a conclusion, the Khan F1 (G6) genotype is the highest-yielding genotype, and the Kompozit Seker (G7) is the lowest. Based on the heat map dendrogram, the context of the differential extent of trait association of all genotypes into two clusters is indicated. The highest genetic distance was shown between the BATEM Tatlı (G3) and Febris (G5) genotypes. Our results provide helpful information about the sweet corn genotypes and environments for future breeding programs.
Keywords (EN)
  • GGE biplot methods

  • genotype × environment interacti...

  • stability

  • sweet corn

  • heat map dendrogram

License
cc-bycc-by CC-BY - Attribution
Open access date
May 31, 2023
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