通过微卫星和形态标记确定 Eragrostis tef (zucc.) Trotter 的遗传多样性特征

Q3 Agricultural and Biological Sciences
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引用次数: 0

摘要

Eragrostis tef (Zucc.) Trotter 是埃塞俄比亚最重要的粮食作物;然而,由于各种问题,包括迄今生产的品种产量潜力较低,其产量相当低(每公顷 1.7 吨)。要想在未来提高柚子的产量,有必要利用遗传和形态标记对该作物的遗传变异和品种进行全面研究。这项研究旨在利用 10 个简单序列重复(SSR)标记来评估 64 个柚木基因型的遗传多样性。这项调查在埃塞俄比亚 Holeta 的农业生物技术研究中心进行。田间表型多样性评估在两个不同的地点进行:在 2020/21 年度期间,采用简单网格设计,在 Debre Zeit 和 Worabe 两个不同地点进行了田间表型多样性评估。分子变异分析表明,个体间的变异占很大比例(46%),个体间的变异紧随其后(43%),种群内的变异最小(11%)。同时,形态学数据分析(包括 20 个表型特征)显示,几乎所有受测基因型的记录参数都存在显著差异(P ≤ 0.01),这一点在不同地点的综合方差分析中也有所体现。这些发现强调了所研究基因型之间的高度多样性,表明通过直接选择和特异性内部杂交策略改良作物具有相当大的潜力。从保护和利用茶树遗传材料的角度来看,迫切需要开展更广泛、更系统的分子水平研究。促进田间试验和基因型与环境相互作用的研究至关重要。这些努力将增进我们对柚木基因的了解,有助于其有效保护和利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of genetic diversity in Eragrostis tef (zucc.) Trotter through microsatellite and morphological markers

Eragrostis tef (Zucc.) Trotter is Ethiopia's most significantly important grain crop; however, its productivity is quite low (1.7 tons per hectare) due to a variety of issues, including the poor yield potential of varieties produced thus far. To achieve future production improvements in tef, comprehensive study of the crop's genetic variability and variety, utilizing both genetic and morphological markers, necessary. The study was designed to assess the genetic diversity of 64 tef genotypes utilizing 10 Simple Sequence Repeats (SSRs) markers. This investigation took place at the Agricultural Biotechnology Research Center in Holeta, Ethiopia. Field phenotypic diversity evaluation was conducted at two distinct locations: Debre Zeit and Worabe, applied a simple lattice design during 2020/21 season. Molecular analysis of variance demonstrated a substantial proportion of variation among individuals (46 %), followed closely variation among individuals (43 %), with the least variation observed within population (11 %). Concurrently, analysis of morphological data, encompassing twenty phenotypic characteristics, revealed significant variation (P ≤ 0.01) among almost all the tested genotypes for recorded parameters, as indicated by combined analysis of variance across sites. These findings underscore the high diversity among the studied genotypes, suggesting a considerable potential for crop improvement through direct selection and intra-specific hybridization strategies. From the perspectives of both conservation and utilization of tef genetic materials, there is a pressing need for more extensive and systematic molecular level research. Promoting field trials and genotype-by-environment interaction research is crucial. These efforts will enhance our understanding of tef genetic and contribute to its effective conservation and utilization.

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来源期刊
Ecological Genetics and Genomics
Ecological Genetics and Genomics Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
1.80
自引率
0.00%
发文量
44
期刊介绍: Ecological Genetics and Genomics publishes ecological studies of broad interest that provide significant insight into ecological interactions or/ and species diversification. New data in these areas are published as research papers, or methods and resource reports that provide novel information on technologies or tools that will be of interest to a broad readership. Complete data sets are shared where appropriate. The journal also provides Reviews, and Perspectives articles, which present commentary on the latest advances published both here and elsewhere, placing such progress in its broader biological context. Topics include: -metagenomics -population genetics/genomics -evolutionary ecology -conservation and molecular adaptation -speciation genetics -environmental and marine genomics -ecological simulation -genomic divergence of organisms
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