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Ipca Laboratories ammi i exploratory graph or biplot
<t>AMMI</t> I <t>biplot</t> of 27 red sorghum genotypes (blue dots) tested in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content. PC: principal component
Ammi I Exploratory Graph Or Biplot, supplied by Ipca Laboratories, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/biplot+graphs/ammi+i+biplot/pmc11877764-214-6-34
Average 90 stars, based on 1 article reviews
ammi i exploratory graph or biplot - by Bioz Stars, 2026-09
90/100 stars

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1) Product Images from "Delineation of genotype × environment interaction and identifying superior red sorghum [ Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods"

Article Title: Delineation of genotype × environment interaction and identifying superior red sorghum [ Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods

Journal: BMC Plant Biology

doi: 10.1186/s12870-025-06188-4

AMMI I biplot of 27 red sorghum genotypes (blue dots) tested in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content. PC: principal component
Figure Legend Snippet: AMMI I biplot of 27 red sorghum genotypes (blue dots) tested in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content. PC: principal component

Techniques Used:

AMMI II biplot developed using the PC I and PC II values of 27 red sorghum genotypes (blue dots) evaluated in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content
Figure Legend Snippet: AMMI II biplot developed using the PC I and PC II values of 27 red sorghum genotypes (blue dots) evaluated in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content

Techniques Used:

Related Articles

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Article Title: Delineation of genotype × environment interaction and identifying superior red sorghum [ Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods
Article Snippet: The AMMI I exploratory graph or biplot was designed with the X-axis representing the trait's mean across environments, highlighting the principal effects [ ], whereas the Y-axis displayed the first interactive principal component axis (IPCA 1) score, addressing the multiplicative effects (Fig. ).

Article Title: AMMI Biplot Analysis of Genotype ´ Environment Interactions in Rainfed Grown Green Gram [Vigna radiata (L.) Wilczek]
Article Snippet: Background: Mungbean [Vigna radiata (L.) Wilczek] commonly called green gram, holds significant importance as a pulse crop in India and contribute significantly towards the national food security.. Pulses present an option for diversifying agricultural systems; however, their low and varying yield under different environmental conditions makes them less competitive compared to cereals, oilseeds, and cash crops.. Therefore, it is essential to screen and identify stable genotypes those can perform consistently well across various agro climatic conditions.

Article Title: Using cross-country datasets for association mapping in Arachis hypogaea L.
Article Snippet: See the T erm s and C onditions (https://onlinelibrary.w iley.com /term s-and-conditions) on W iley O nline L ibrary for rules of use; O A articles are governed by the applicable C reative C om m ons L icense 8 of 18 OKARON ET AL.The Plant Genome F I G U R E 2 Biplots revealing performance of the genotypes across the four environments and the effects of the environments. (A) AMMI-1 model biplot for grain yield (kg/ha) showing the means of 192 genotypes across four environments against their corresponding interaction principal component axis (IPCA-1) scores.



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Image Search Results


AMMI I biplot of 27 red sorghum genotypes (blue dots) tested in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content. PC: principal component

Journal: BMC Plant Biology

Article Title: Delineation of genotype × environment interaction and identifying superior red sorghum [ Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods

doi: 10.1186/s12870-025-06188-4

Figure Lengend Snippet: AMMI I biplot of 27 red sorghum genotypes (blue dots) tested in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content. PC: principal component

Article Snippet: The AMMI I exploratory graph or biplot was designed with the X-axis representing the trait's mean across environments, highlighting the principal effects [ ], whereas the Y-axis displayed the first interactive principal component axis (IPCA 1) score, addressing the multiplicative effects (Fig. ).

Techniques:

AMMI II biplot developed using the PC I and PC II values of 27 red sorghum genotypes (blue dots) evaluated in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content

Journal: BMC Plant Biology

Article Title: Delineation of genotype × environment interaction and identifying superior red sorghum [ Sorghum bicolor L. Moench] genotypes via multi-trait-based stability selection methods

doi: 10.1186/s12870-025-06188-4

Figure Lengend Snippet: AMMI II biplot developed using the PC I and PC II values of 27 red sorghum genotypes (blue dots) evaluated in three environments (green dots) from summer–2024: A PW: panicle weight, B YIELD: single-plant yield, C Fe: iron content, D Zn: zinc content

Article Snippet: The AMMI I exploratory graph or biplot was designed with the X-axis representing the trait's mean across environments, highlighting the principal effects [ ], whereas the Y-axis displayed the first interactive principal component axis (IPCA 1) score, addressing the multiplicative effects (Fig. ).

Techniques: