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The Sustainability Index and Other Stability Analyses for Evaluating Superior Fe-Tolerant Rice ( Oryza sativa L.)

Author

Listed:
  • Dwinita Wikan Utami

    (Research Center of Horticulture and Estate Crops, Agricultural and Food Research Organization, National Research and Innovation Agency, Bogor 45363, West Java, Indonesia)

  • Ajang Maruapey

    (Faculty of Agriculture, Universitas Muhammadiyah Sorong, Sorong 98416, West Papua, Indonesia)

  • Haris Maulana

    (Research Center of Horticulture and Estate Crops, Agricultural and Food Research Organization, National Research and Innovation Agency, Bogor 45363, West Java, Indonesia
    Faculty of Agriculture, Universitas Padjadjaran (Unpad), Bandung 40161, West Java, Indonesia)

  • Parlin Halomon Sinaga

    (Research Center of Food Crops, Agricultural and Food Research Organization, National Research and Innovation Agency, Bogor 16911, West Java, Indonesia)

  • Susilawati Basith

    (Research Center of Food Crops, Agricultural and Food Research Organization, National Research and Innovation Agency, Bogor 16911, West Java, Indonesia)

  • Agung Karuniawan

    (Faculty of Agriculture, Universitas Padjadjaran (Unpad), Bandung 40161, West Java, Indonesia)

Abstract

Rice ( Oryza sativa L.) is an important agricultural commodity in Indonesia. The combination of stability analysis on yields was considered accurate in selecting superior genotypes. The objectives of this study were as follows: identify the effects of genotypes, the environment, and their interactions (GEIs) on the yields of Fe-tolerant rice; select superior genotypes (stable and high yields) under diverse environment conditions in Indonesia; and determine the mega-environments (MEs) and representative environments for Fe-tolerant rice development. Fifteen genotypes of Fe-tolerant rice were used for this study. Field experiments were conducted at six experimental fields in Indonesia using a randomized block design with two replications. A combined analysis of variance (ANOVA) was used to determine the effect of genotypes, the environment, and their interactions on Fe-tolerant rice yields. Parametric, non-parametric, AMMI (additive main effects and multiplicative interaction), GGE biplot, and SI (sustainability index) measurements were used to determine the superior genotypes. GGE biplot was also used to determine MEs and representative environments. The measurement results showed that genotypes, the environment, and their interactions significantly affected rice yields with contributions of 13.30%, 35.78%, and 50.92%, respectively. One superior Fe-tolerant rice genotype (stable and high yield) was selected based on all measurements, namely G4 (B14316E-KA-4). In this experiment, two MEs were generated. Lampung was identified as a representative environment for the development of superior genotypes. The results of this study can be used as a consideration in the release and development of new superior varieties of Fe-tolerant rice in Indonesia.

Suggested Citation

  • Dwinita Wikan Utami & Ajang Maruapey & Haris Maulana & Parlin Halomon Sinaga & Susilawati Basith & Agung Karuniawan, 2023. "The Sustainability Index and Other Stability Analyses for Evaluating Superior Fe-Tolerant Rice ( Oryza sativa L.)," Sustainability, MDPI, vol. 15(16), pages 1-22, August.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:16:p:12233-:d:1214533
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    References listed on IDEAS

    as
    1. Yoshua Liberty Filio & Haris Maulana & Reviana Aulia & Tarkus Suganda & Trixie Almira Ulimaz & Virda Aziza & Vergel Concibido & Agung Karuniawan, 2023. "Evaluation of Indonesian Butterfly Pea ( Clitoria ternatea L.) Using Stability Analysis and Sustainability Index," Sustainability, MDPI, vol. 15(3), pages 1-14, January.
    2. Haris Maulana & Yudithia Maxiselly & Yuyun Yuwariah & Dedi Ruswandi, 2023. "Heritability and Selection Using GGE Biplots and the Sustainability Index (SI) of Maize Mutants under Different Cropping Systems in Upland," Sustainability, MDPI, vol. 15(8), pages 1-22, April.
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