• 제목/요약/키워드: GGE biplot analysis

검색결과 4건 처리시간 0.017초

Interpretation of Genotype × Environment Interaction of Sesame Yield Using GGE Biplot Analysis

  • Shim, Kang-Bo;Shin, Seong-Hyu;Shon, Ji-Young;Kang, Shin-Gu;Yang, Woon-Ho;Heu, Sung-Gi
    • 한국작물학회지
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    • 제60권3호
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    • pp.349-354
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    • 2015
  • The AMMI (additive main effects and multiplicative interaction) and GGE (genotype main effect and genotype by environment interaction) biplot which were accounted for a substantial part of total sum of square in the analysis of variance suggested to be more appropriate models for explaining G $\times$ E interaction. The grain yield of total ten sesame genotypes was significantly affected by environment which explained 61% of total variation, whereas genotype and genotype x environment interaction (G $\times$ E) were explained 16%, 24% respectively. From the results of experiment, three genotypes Miryang49, Koppoom and Ansan were unstable, whereas other three genotypes Kyeongbuk18, Miryang50 and Kanghuk which were shorter projections to AEA ordinate were relatively stable over the environments. Yangbak which was closeness to the mean yield and short projection of the genotype marker lines was regarded as genotype indicating good performance with stability. Ansan, Miryang48 and Yangbaek showed the best performance in the environments of Naju, Suwon, Iksan and Andong. Similarly, genotype Miyrang47 exhibited the best performance in the environments of Chuncheon and Miryang. Andong is the closest to the ideal environment, and therefore, is the most desirable among eight environments.

유전형과 재배환경의 상호작용에 따른 감자 수량성과 글리코알카로이드 함량 변화 (Genotype x Environment Interaction and Stability Analysis for Potato Performance and Glycoalkaloid Content in Korea)

  • 김수정;손황배;이유영;박민우;장동칠;권오근;박영은;홍수영;서종택;남정환;정진철;구본철;김율호
    • 한국작물학회지
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    • 제62권4호
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    • pp.333-345
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    • 2017
  • 감자 6품종인 수미(SP), 대서(AT), 하령(HR), 고운(GU), 홍영(HY), 자영(JY)을 대상으로, 해발고도별로 재배환경이 다른 강릉(E1), 진부(E2), 대관령(E3) 지역에서 2012년과 2013년 재배하여 괴경 수량성과 글리코알카로이드(PGA) 함량을 평가하였다. 품종이 가지고 있는 유전적 특성은 품종 고유의 유전형(G)과 재배환경(E)과의 상호작용($G{\times}E$)을 거쳐 발현되므로 본 연구에서는 AMMI 모델과 GGE biplot 분석을 통해 지역별 수량성과 PGA 함량 변화 양상을 검토하였다. 1. 감자 수량은 재배환경과 상호작용이 차지하는 비율이 높고, PGA 함량은 유전형(품종)의 효과가 차지하는 비율이 높은 것으로 나타났다. 2. 지역별로 높은 수량을 나타내는데 적합한 품종으로 강릉에서 '수미', 진부에서 '고운', 대관령 에서 '하령'이었으며, 수량이 높으면서 생산 안정성을 보인 품종은 수미였다. 3. 지역별로 높은 PGA 함량을 보이는 품종으로 강릉에서 '하령', 진부에서 '대서', 대관령에서 '수미'이었으며, PGA 함량이 낮으면서 재배환경에 영향을 덜 받는 안정성이 뛰어난 품종은 '고운'이었다. 4. 감자 품종의 양적 농업 형질인 수량은 재배환경에 따라 차이를 보였으며, PGA 함량은 품종 고유의 형질 차이에 의해 다르게 나타났다. 5. 감자의 수량성을 확보하기 위해서는 재배 적지의 선정이 중요하고, PGA 함량을 낮추기 위해서는 저함유 품종 개발이 선행되어야 한다고 판단되었다.

Evaluation of Mungbean Genotypes Based on Yield Stability and Reaction to Mungbean Yellow Mosaic Virus Disease

  • Alam, A.K.M. Mahbubul;Somta, Prakit;Jompuk, Choosak;Chatwachirawong, Prasert;Srinives, Peerasak
    • The Plant Pathology Journal
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    • 제30권3호
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    • pp.261-268
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    • 2014
  • This work was conducted to identify mungbean genotypes showing yield stability and resistance to mungbean yellow mosaic virus (MYMV) disease. Sixteen genotypes were evaluated in a randomized complete block design with two replications for two years (2011 and 2012) at three locations (Gazipur, Ishurdi and Madaripur) of the Bangladesh Agricultural Research Institute. An analysis of variance exhibited significant effects of genotype (G), environment (E), and genotype ${\times}$ environment ($G{\times}E$) on grain yield. Among eight agronomic characters, the principal component 1 (PC1) was always higher than the PC2. Considering $G{\times}E$ interaction, BM6 was the best genotype at all three locations in both years. Based on grain yield and stability performance, BM6 ranked first while the worst performing genotypes were BM1 and G10. Based on discrimination and representation, Gazipur was identified as an ideal environment for these mungbeans. Relationship between soil-plant analysis developments (SPAD) value was positive with yield but negative with MYMV severity. BM6, G1 and G2 were considered as promising sources of resistance for low disease score and stable response across the environments. The environment proved to have an influence on MYMV infection under natural infestation. A positive correlation was observed between disease score and the temperature under natural growing condition.

Multi-environment Trial Analysis for Yield-related Traits of Early Maturing Korean Rice Cultivars

  • Seung Young Lee;Hyun-Sook Lee;Chang-Min Lee;Su-Kyung Ha;Youngjun Mo;Ji-Ung Jeung
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.252-252
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    • 2022
  • Genotype-by-environment interaction (GEI) refers to the comparative response of genotypes to different environments conditions. Thus, understanding GEI is a fundamental component for selecting superior genotypes for breeding programs. The significance of utilizing early maturing cultivars not only provides flexibility in planting dates, but also serves as an effective strategy to reduce methane emission from the paddy fields. In this study, we conducted multi-environment trials (METs) to evaluate yield-related traits such as culm length, panicle length, panicle number, spikelet per plant, and thousand grain weight. A total of eighty-one Korean commercial rice cultivars categorized as early maturing cultivars, were cultivated in three regions, two planting seasons for two years. The genotype main effect plus genotype-by-environment interaction (GGE) biplot analysis of yield-related traits and grain yield explained 70.02-91.24% of genotype plus GEI variation, and exhibited various patterns of mega-environment delineation, discriminating ability, representativeness, and genotype rankings across the planting seasons and environments. Moreover, simultaneous selection using weighted average of absolute scores from the singular value decomposition (WAASB) and multi-trait stability index (MTSI) revealed six highly recommended genotypes with high stability and crop productivity. The winning genotypes under specific environment can be utilized as useful genetic materials to develop regional specialty cultivars, and recommended genotypes can be used as elite climate-resilient parents to improve yield-potential and reduce methane emission as part to accomplish carbon-neutrality.

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