The fruit metric trait characterization of scarlet eggplant using the high-throughput tomato analyzer software

Q4 Agricultural and Biological Sciences Journal of Agricultural Sciences, Belgrade Pub Date : 2021-01-01 DOI:10.2298/jas2102139a
O. T. Adeniji, M. Adekoya, P. Jonah, I. Iseghohi, C. Aremu
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Abstract

Scarlet eggplant (Solanum aethiopicum [L.]) is an indigenous, underutilized fruit vegetable in Africa. Preference for fruit shape and size is high among growers and consumers. Fruit metric traits are important for yield improvement. Fruit metric descriptors are important contributors to variation, phenotypic and genotypic variation, and heritability. However, the measurement of these traits is cumbersome and subjective. Forty-three accessions were evaluated in 2016 and 2017. At maturity, 5 fruits were randomly harvested from each accession, digitalized and processed using the Tomato Analyzer software. Sixteen fruit metric traits were automatically generated and submitted for analysis of variance and multivariate analysis. The accessions differed over fruit size and shape due to genetic make-up. Fruit metric trait variation among S. aethiopicum groups was less influenced by the environment. The cv. Gilo group has oblong fruits, the cv. Shum group fruits are circular and ovoid; the cv. Kumba group fruits are less circular, lobed and flattened. AE/113 (C3), FUO 1 (C1) and FUO 5 (C2) Gilo groups are promising for fruit size. There were phenotypic plasticity and overlapping for fruit metric traits between the Gilo and Shum groups due to a common genome. The Tomato Analyzer software was able to discriminate accessions based on fruit phenomic traits, and the information could be used to establish commonalities between groups.
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利用高通量番茄分析软件对红茄子果实计量性状进行了鉴定
猩红茄子(Solanum aethiopicum [L.])是一种非洲本土的,未充分利用的水果蔬菜。种植者和消费者对水果形状和大小的偏好很高。果实的计量性状对产量的提高具有重要意义。果实计量描述符是变异、表型和基因型变异以及遗传力的重要贡献者。然而,这些特征的测量是繁琐和主观的。2016年和2017年评估了43个项目。成熟时,每个品种随机收获5个果实,用Tomato Analyzer软件进行数字化处理。自动生成16个果实计量性状并提交方差分析和多变量分析。由于基因组成不同,果实大小和形状存在差异。不同组间果实计量性状变异受环境影响较小。的简历。吉洛群有椭圆形的水果,cv。深群果圆形和卵形;的简历。昆巴组水果较少圆形,浅裂和扁平。AE/113 (C3)、FUO 1 (C1)和FUO 5 (C2) Gilo基团在果实大小方面具有较好的前景。由于基因组相同,Gilo和Shum类群在果实计量性状上存在表型可塑性和重叠。番茄分析软件能够根据果实的表型性状进行分类,并利用这些信息建立群体间的共性。
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来源期刊
Journal of Agricultural Sciences, Belgrade
Journal of Agricultural Sciences, Belgrade Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
0.70
自引率
0.00%
发文量
14
审稿时长
12 weeks
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