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Identification and characterization of functionally relevant SSR markers in natural Dalbergia odorifera populations

生物 遗传多样性 种质资源 黄檀 杂合子丢失 遗传变异 人口 进化生物学 遗传标记 自然选择 遗传学 植物 基因 等位基因 社会学 人口学
作者
Jieru Xu,Yue Wang,Kunlin Wu,Jinhui Chen
出处
期刊:BMC Plant Biology [BioMed Central]
卷期号:24 (1): 315-315 被引量:5
标识
DOI:10.1186/s12870-024-05019-2
摘要

Abstract Background Dalbergia odorifera is a rare and precious rosewood specie, which is valued for its amber tones, abstract figural patterns, and impermeability to water and insects. However, the information on genetic diversity and marker-assisted selection breeding of D. odorifera is still limited. Simple sequence repeat (SSR) markers are an ideal tool for genetic diversity analysis and marker-assisted molecular breeding for complex traits. Results Here, we have developed SSR markers within candidate genes and used them to explore the genetic diversity among D. odorifera germplasm resources. A total of 635 SSR loci were identified. The proportions of mono-, di- and tri-nucleotide repeat motifs were 52.28%, 22.99% and 21.42%, respectively. From these, a total of 114 SSR primers were synthesized, of which 24 SSR markers displayed polymorphism (polymorphic information content ( PIC ) > 0.25). Subsequently, these polymorphic markers were used for the genetic diversity analysis of 106 D. odorifera individuals from 11 natural populations. According to the genetic diversity analysis of D. odorifera natural populations, the average observed heterozygosity ( Ho ) was 0.500, the average expected heterozygosity ( He ) was 0.524, and the average Shannon’s information index ( I ) was 0.946. These indicated that the natural populations had moderate genetic diversity. AMOVA analysis showed that 5% of the total variation was within the individuals of a population, whereas 95% of the variation was among the individuals of the populations, indicating a high degree of genetic variation between populations. On the basis of their genetic structures, these populations could be divided into four groups. Conclusions Our study provides important experimental resources for genetic studies and assists in the program of molecular breeding of D. odorifera wood formation.
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