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形态变异、功能性状可重复性和 Synsepalum dulcificum(Schumach & Thonn.)Daniell 的核心种质推断表明达荷美地峡是一个多样性中心。

Phenotypic variation, functional traits repeatability and core collection inference in Synsepalum dulcificum (Schumach & Thonn.) Daniell reveals the Dahomey Gap as a centre of diversity.

机构信息

School of Agricultural, Earth and Environmental Sciences, University of KwaZulu-Natal, Scottsville, Private Bag X01, Pietermaritzburg, 3209, South Africa.

Laboratory of Genetics, Horticulture, and Seed Science (GBioS), School of Plant Sciences, University of Abomey-Calavi, 01 BP 526, Abomey-Calavi, Benin.

出版信息

Sci Rep. 2020 Nov 11;10(1):19538. doi: 10.1038/s41598-020-76103-4.

Abstract

The miracle plant Synsepalum dulcificum is a multipurpose natural sweetener and a promising West African orphan fruit shrub candidate for genetic improvement. Unfortunately, basic knowledge such as phenotypic variation and inheritance estimates required for implementing a breeding program are still lacking. A set of 203 accessions were sampled in two habitats from seven populations spread across the Dahomey Gap (DG) and the Upper Guinea forest (UG) in West Africa. The phenotypic diversity and allometric relationships among functional traits were analysed; the broad-sense heritability was estimated for fruit-traits, and a mini-core collection was developed in the species. Quantitative variation in tree- and fruit-traits was recorded, and multivariate analyses were performed to assess relationships among accessions, whereas heritability was estimated using the coefficient of repeatability. Tree-traits observed in S. dulcificum were more variable than fruit-traits. While habitat-type only affected tree-traits, the provenance population significantly affected both fruit- and tree-traits, with the UG populations outperforming the DG ones. Significant correlations were observed among fruit-traits on one hand, and among tree-traits on the other hand, whereas poor correlations were observed between tree- and fruit-traits. The multivariate analysis grouped accessions in three clusters. Promising individuals for high fruit mass and pulp-dense genotypes' selection were identified within clusters. Repeatability estimates for fruit-traits ranged from 0.015 (edible ratio) to 0.88 (fruit mass). The Core Hunter algorithm enabled the extraction of 41 individuals as robust representatives of the initial set of 203 accessions, and the mapping of this core collection suggested Dahomey Gap as a centre of diversity of the species. These original findings offer opportunities, not only for the genetic improvement of S. dulcificum, but also for targeted ex-situ conservation in the species.

摘要

奇迹植物 Synsepalum dulcificum 是一种多用途天然甜味剂,也是一种很有前途的西非孤儿果灌木候选遗传改良品种。不幸的是,实施育种计划所需的基本知识,如表型变异和遗传估计,仍然缺乏。本研究在西非达荷美缺口(DG)和上几内亚森林(UG)的七个种群中,从两个生境中采集了 203 个样本。分析了功能性状的表型多样性和比例关系;估计了果实性状的广义遗传力,并在该物种中开发了一个微型核心收集。记录了树木和果实性状的数量变化,并进行了多元分析以评估个体之间的关系,而遗传力则使用可重复性系数进行估计。在 S. dulcificum 中观察到的树木性状比果实性状更具变异性。虽然生境类型仅影响树木性状,但起源种群显著影响果实和树木性状,UG 种群的表现优于 DG 种群。在果实性状和树木性状之间观察到显著的相关性,而在树木性状和果实性状之间观察到较差的相关性。多元分析将个体分为三个聚类。在聚类中鉴定出了具有高果实质量和果肉密集基因型选择的有前途的个体。果实性状的重复性估计值范围为 0.015(可食用比例)至 0.88(果实质量)。Core Hunter 算法可以从最初的 203 个样本中提取 41 个个体作为稳健的代表,该核心收集的映射表明达荷美缺口是该物种多样性的中心。这些原始发现不仅为 S. dulcificum 的遗传改良提供了机会,而且为该物种的有针对性的就地保护提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c4a/7658981/3990097bad3b/41598_2020_76103_Fig1_HTML.jpg

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