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利用ITS2 DNA条形码对酸浆属植物进行分子鉴定、遗传多样性分析及二级结构预测

Molecular identification, genetic diversity, and secondary structure predictions of Physalis species using ITS2 DNA barcoding.

作者信息

Pere K, Mburu K, Muge E K, Wagacha J M, Nyaboga Evans N

机构信息

Department of Biochemistry, Faculty of Science and Technology, University of Nairobi, P.O. Box 30197, Nairobi, Kenya.

Department of Life Sciences, South Eastern Kenya University, Kitui, Kenya.

出版信息

BMC Plant Biol. 2024 Dec 18;24(1):1178. doi: 10.1186/s12870-024-05889-6.

Abstract

BACKGROUND

The genus Physalis belongs to the Solanaceae family and has different species with important nutritional and medicinal values. Species within this genus have limited morphological differences, a characteristic that hinders accurate identification, safe utilization and genetic conservation of promising genotypes. In addition, to prevent the perceived loss of Physalis diversity due to habitat destruction, species delimitation needs attention. In this study, we used the sequence and structural information of the internal transcribed spacer 2 (ITS2) barcode to efficiently identify and discriminate Physalis species from a collection of 34 Physalis accessions.

METHODOLOGY

Physalis plant samples were collected from eight Counties in Kenya based on the availability of the germplasm. The voucher specimens were identified using the botanical taxonomy method and were deposited in the University of Nairobi herbarium. A total of 34 Physalis accessions were identified and accessed for diversity based on the ITS2 barcode region. The sequence similarity of the ITS2 genes was analyzed through the Basic Local Alignment Search Tool (BLAST), the nearest Kimura-2-parameter (K2P) genetic distances were calculated and a phylogenetic tree was constructed using the Bayesian inference (BI) method in MrBayes 3.2.7a software. The differences in the ITS2 secondary structure between the species were analyzed.

RESULTS

The success rate of PCR amplification and sequencing was 75% and 67%, respectively. The analyzed ITS2 sequences displayed significant inter-specific divergences, clear DNA barcoding gaps and high species identification efficiency. Based on the constructed phylogenetic tree, three Physalis species (Physalis peruviana, Physalis purpurea and Physalis cordata) were identified and were clustered in a homogenized distribution. High genetic diversity (0.36923) and genetic distance (0.703) were observed between Physalis peruviana and Physalis cordata. The highest genetic nucleotide diversity (0.26324) and distance (0.46) within species was obtained for Physalis peruviana. The differences in the secondary structures generated from this study discriminated between the Physalis species.

CONCLUSIONS

Our study demonstrated that ITS2 is a potential DNA barcode for effective identification and discrimination of Physalis species. The results of this study provide insights into the scientific basis of species identification, safe utilization, genetic conservation and future breeding strategies for this important nutritional and medicinal plant species.

摘要

背景

酸浆属属于茄科,有不同的物种,具有重要的营养和药用价值。该属内的物种形态差异有限,这一特征阻碍了对有前景基因型的准确鉴定、安全利用和遗传保护。此外,为防止因栖息地破坏导致酸浆属多样性的明显丧失,物种界定需要关注。在本研究中,我们利用内部转录间隔区2(ITS2)条形码的序列和结构信息,从34份酸浆种质资源中高效鉴定和区分酸浆属物种。

方法

根据种质资源的可获得性,从肯尼亚的八个县采集了酸浆属植物样本。凭证标本采用植物分类学方法进行鉴定,并保存在内罗毕大学植物标本馆。基于ITS2条形码区域,共鉴定出34份酸浆种质资源,并对其多样性进行了评估。通过基本局部比对搜索工具(BLAST)分析ITS2基因的序列相似性,计算最近的Kimura-2-参数(K2P)遗传距离,并使用MrBayes 3.2.7a软件中的贝叶斯推断(BI)方法构建系统发育树。分析了物种间ITS2二级结构的差异。

结果

PCR扩增和测序的成功率分别为75%和67%。分析的ITS2序列显示出显著的种间差异、清晰的DNA条形码间隙和较高的物种鉴定效率。基于构建的系统发育树,鉴定出了三种酸浆属物种(灯笼果、紫酸浆和心叶酸浆),并聚为同质化分布。灯笼果和心叶酸浆之间观察到较高的遗传多样性(0.36923)和遗传距离(0.703)。灯笼果在物种内获得了最高的遗传核苷酸多样性(0.26324)和距离(0.46)。本研究产生的二级结构差异区分了酸浆属物种。

结论

我们的研究表明,ITS2是一种潜在的DNA条形码,可有效鉴定和区分酸浆属物种。本研究结果为这一重要的营养和药用植物物种的物种鉴定、安全利用、遗传保护和未来育种策略提供了科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a69e/11653582/b4cf11b8f215/12870_2024_5889_Fig1_HTML.jpg

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