探索罗望子(Tamarindus indica L.)的形态生化多样性,以采用先进的育种方法

A. Mayavel, M. Amaravel, C. Bagathsingh, G. R. Krishnan, B. Nagarajan
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引用次数: 0

摘要

背景:罗望子(Tamarindus indica L.),俗称罗望子,是豆科(Fabaceae)植物中的一个独特物种。它因其经济和营养价值而闻名。罗望子的遗传多样性对育种和保护至关重要。尽管其意义重大,但对罗望子克隆之间的表型变异,尤其是形态和生化性状方面的研究却很有限。了解这些差异对于提高罗望子栽培品种的产量和质量至关重要。本研究旨在利用一系列形态和生化参数评估罗望子克隆的表型多样性,以填补这一空白。研究方法研究对象是一个有 10 年树龄的罗望子克隆组合。连续两年(2019-2020 年和 2020-2021 年)共对 60 个罗望子克隆进行了评估。实验设计为随机完全区组设计。对形态和生化性状进行了相关性分析、多元线性回归分析、主成分分析和聚类分析,以了解这些克隆之间的贡献差异和关系。结果结果表明,60 个罗望子克隆之间存在明显的多样性。单株年产量的变异系数较高。PCA 显示,前五个主成分占总变异的 81.77%,其中前两个成分解释了 65.89% 的变异。果实重量与每棵树的年产量之间存在很强的正相关关系。通过分层聚类分析,将基因型分为三个不同的类群,每个类群都具有独特的形态和理化性状。这些研究结果对育种人员提高罗望子栽培品种的产量和质量至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Morpho-biochemical Diversity in Tamarind (Tamarindus indica L.) for Advanced Breeding Approaches
Background: Tamarindus indica L., commonly known as Tamarind, is a unique species in the Leguminosae (Fabaceae) family. It is known for its economic and nutritional importance. The genetic diversity of Tamarind is crucial for breeding and conservation purposes. Despite its significance, there is limited research on the phenotypic variations among Tamarind clones, particularly concerning their morphological and biochemical traits. Understanding these variations is essential for improving Tamarind cultivars in terms of yield and quality. This study aims to fill this gap by assessing the phenotypic diversity in Tamarind clones using a range of morphological and biochemical parameters. Methods: The study was conducted on a 10-year-old clonal assemblage of Tamarind. A total of 60 Tamarind clones were evaluated over two consecutive years (2019-2020 and 2020-2021). The experimental design was a randomized complete block design. The correlation, multiple linear regression, principal component analysis and cluster analysis were analysed in the morphological and biochemical traits to understand the contribution variation and relationship among these clones. Result: The results indicated significant diversity among the 60 Tamarind clones. High coefficient of variation was observed in annual yield per tree. The PCA revealed that the first five principal components accounted for 81.77% of the total variation, with the first two components explaining 65.89% of the variance. A strong positive correlation and relationship were found between fruit weight and annual yield per tree. The hierarchical cluster analysis resulted in the categorization of the genotypes into three distinct clusters, each characterized by unique morphological and physiochemical traits. These findings are crucial for breeders focusing on enhancing Tamarind cultivars for better yield and quality.
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