Production and physicochemical characterization of genotypes of Eugenia uniflora L.

Alex Danilo Monte Andrade, Elias Ariel de Moura, V. Mendonça, Luana Mendes Oliveira, Enoch Souza Ferreira, Bruna Ester Ferreira Melo, Francisco Romário Andrade Figueiredo, Marlenildo Ferreira Melo, Luciana Freitas Medeiros Mendonça
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引用次数: 1

Abstract

Pitanga (Eugenia uniflora L.) is an exotic fruit species of significant economic importance. However, due to genetic variability, its exploitation is hampered by the lack of homogeneous fruit production. In this scenario, this study aimed to select pitanga genotypes according to the physical and physicochemical parameters of fruits grown under semi-arid conditions. The study was developed at the Federal Rural University of the Semi-Arid Region with genotypes resulting from the open pollination of the pitanga variety ‘Tropicana”. Thirty-nine pitanga genotypes were evaluated for fruit mass, fruit length, fruit diameter, soluble solids (SS), titratable acidity (TA), ascorbic acid (AA), pH, and SS/TA ratio. The pitanga genotypes showed high variability. The clustering method separated the genotypes according to desirable traits. Genotype A12 showed the largest fruit sizes, whereas genotype A8 showed the highest SS and TA contents. Genotypes A2, A13, A34, and A39 showed fruits with the highest AT values. On the other hand, genotypes A11, A16, A45, A9, A26, and A44 showed the most significant contents of pH and SS/TA. Highlights The grouping of two genotypes depends on the environmental conditions, mainly on the effect of two genotypes per year. The analysis of principal components allows selecting the genotypes based on their desired characteristics. The physical and chemical composition of two pitanga fruits are affected by climatic conditions, genotypes and years of cultivation.
Eugenia uniflora L.基因型的生产及理化特性研究。
皮坦加(Eugenia uniflora L.)是一种具有重要经济价值的外来水果。然而,由于遗传变异,其开发受到缺乏同质果实生产的阻碍。在这种情况下,本研究旨在根据半干旱条件下生长果实的物理和物理化学参数选择皮坦加基因型。这项研究是在半干旱区联邦农村大学开展的,其基因型是由皮坦加品种“Tropicana”的开放授粉产生的。对39种皮坦加基因型的果实质量、果实长度、果实直径、可溶性固形物(SS)、可滴定酸度(TA)、抗坏血酸(AA)、pH和SS/TA比值进行了评价。皮坦加基因型表现出较高的变异性。聚类法根据所需性状分离基因型。基因型A12果实大小最大,而基因型A8的SS和TA含量最高。A2、A13、A34和A39基因型果实的AT值最高。A11、A16、A45、A9、A26和A44基因型pH和SS/TA含量最高。两种基因型的分型取决于环境条件,主要取决于每年两种基因型的影响。通过对主成分的分析,可以根据所需的特征选择基因型。两种皮坦加果实的物理和化学成分受气候条件、基因型和栽培年限的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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