在多个 F1 杂交品系的选择和多样性制图中对辣椒果实性状进行多变量分析和基于图像的表型分析

Muhammad Fuad Anshori , Yunus Musa , Novaty Eny Dungga , Nuniek Widiayani , Arfina Sukmawati Arifin , A. Masniawati , Firmansyah , Muh Farid , Andi Dirpan , Andi Isti Sakinah , Nirwansyah Amier
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引用次数: 0

摘要

辣椒价格波动的现象可以分阶段解决,其中之一就是通过多次杂交。然而,这种杂交需要在评估和选择过程中采用精确的方法,特别是在果实特征方面。基于图像的表型 4.0 方法可以提高这种评估基因型的潜在精确度,尤其是当这种方法与多元分析相结合时。因此,需要这两种方法来评估和选择这些卡宴多重杂交品种。本研究旨在确定多变量分析和基于图像的果实表型解释特征的有效性,并选择可延续到 F2 代的多交种。研究采用随机完全区组设计,包括 10 个 F1 多交基因型和 4 个对照品种。每个基因型重复三次,因此共有 42 个实验单元。根据结果,多变量被认为足以确定基于果实表型的图像解释特征和辣椒多交群体多样性的基因型图谱。果实高度、果实面积和果实内径是基于图像的解释性特征,能很好地映射辣椒果实在多个杂交种之间的完整性。这表明,基于图像的表型分析和多元分析能提供比仅根据果实重量更详细的图像信息,说明多个杂交品种的辣椒果实的潜力。因此,建议用这两种方法来分析辣椒纸果实的潜力,尤其是多次杂交的果实。此外,三个杂交品种(MC4、MC8 和 MC9)是推荐和继续进行下一代杂交的最佳选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multivariate analysis and image-based phenotyping of cayenne fruit traits in selection and diversity mapping of multiple F1 cross lines

The phenomenon of fluctuating chili prices can be resolved in stages, one of which is through multiple crosses. However, this cross requires precise methods in the evaluation and selection process, especially regarding fruit characteristics. Image-based phenotyping 4.0 approaches can increase the potential precision of such evaluation genotypes, especially when this approach is combined with multivariate analysis. Therefore, both methods are needed to evaluate and select these cayenne multiple crosses. This research aims to identify the effectiveness of multivariate analysis and image-based explanatory characteristics of fruit phenotypes and to select multiple crosses that can continue to the F2 generation. The research was designed with a randomized complete block design of ten F1 multiple cross-genotypes and four check varieties. Each genotype was repeated three times, so there were 42 experimental units. Based on the results, multivariate was considered adequate in determining image explanatory characters based on fruit phenotype and genotype mapping of the population diversity of multiple crosses of cayenne pepper. The characteristics of fruit height, fruit area, and fruit Intden are image-based explanatory characters that can map the completeness of cayenne pepper fruit between multiple crosses well. This indicates that image-based phenotyping and multivariate analysis can provide more detailed image information of the potential of cayenne fruit from multiple crosses than just based on fruit weight. Therefore, both approaches are recommended for analyzing cayenne paper fruit potential, especially for multiple crosses. In addition, three crosses (MC4, MC8, and MC9) are optimal for the next generation to be recommended and continued.

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