Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

PSSRD

General information

URL: http://www.pssrd.info
Full name: Plant Simple Sequence Repeat Database
Description: The PSSRD mainly collected the 249,822 SSRs from 3,951,919 gene sequences of 112 plant species.
Year founded: 2021
Last update:
Version:
Accessibility:
Accessible
Country/Region: China

Classification & Tag

Data type:
DNA
Data object:
Database category:
Major species:
Keywords:

Contact information

University/Institution: North China University of Science and Technology
Address: 21 Bohai Road, Caofeidian Xincheng, Tangshan 063210, Hebei, China
City:
Province/State:
Country/Region: China
Contact name (PI/Team): Xiaoming Song
Contact email (PI/Helpdesk): songxiaoming116@163.com

Publications

34059664
Comprehensive analysis of SSRs and database construction using all complete gene-coding sequences in major horticultural and representative plants. [PMID: 34059664]
Xiaoming Song, Qihang Yang, Yun Bai, Ke Gong, Tong Wu, Tong Yu, Qiaoying Pei, Weike Duan, Zhinan Huang, Zhiyuan Wang, Zhuo Liu, Xi Kang, Wei Zhao, Xiao Ma

Simple sequence repeats (SSRs) are one of the most important genetic markers and widely exist in most species. Here, we identified 249,822 SSRs from 3,951,919 genes in 112 plants. Then, we conducted a comprehensive analysis of these SSRs and constructed a plant SSR database (PSSRD). Interestingly, more SSRs were found in lower plants than in higher plants, showing that lower plants needed to adapt to early extreme environments. Four specific enriched functional terms in the lower plant Chlamydomonas reinhardtii were detected when it was compared with seven other higher plants. In addition, Guanylate_cyc existed in more genes of lower plants than of higher plants. In our PSSRD, we constructed an interactive plotting function in the chart interface, and users can easily view the detailed information of SSRs. All SSR information, including sequences, primers, and annotations, can be downloaded from our database. Moreover, we developed Web SSR Finder and Batch SSR Finder tools, which can be easily used for identifying SSRs. Our database was developed using PHP, HTML, JavaScript, and MySQL, which are freely available at http://www.pssrd.info/ . We conducted an analysis of the Myb gene families and flowering genes as two applications of the PSSRD. Further analysis indicated that whole-genome duplication and whole-genome triplication played a major role in the expansion of the Myb gene families. These SSR markers in our database will greatly facilitate comparative genomics and functional genomics studies in the future.

Hortic Res. 2021:8(1) | 29 Citations (from Europe PMC, 2025-12-20)
34059664
Comprehensive analysis of SSRs and database construction using all complete gene-coding sequences in major horticultural and representative plants. [PMID: 34059664]
Xiaoming Song, Qihang Yang, Yun Bai, Ke Gong, Tong Wu, Tong Yu, Qiaoying Pei, Weike Duan, Zhinan Huang, Zhiyuan Wang, Zhuo Liu, Xi Kang, Wei Zhao, Xiao Ma

Simple sequence repeats (SSRs) are one of the most important genetic markers and widely exist in most species. Here, we identified 249,822 SSRs from 3,951,919 genes in 112 plants. Then, we conducted a comprehensive analysis of these SSRs and constructed a plant SSR database (PSSRD). Interestingly, more SSRs were found in lower plants than in higher plants, showing that lower plants needed to adapt to early extreme environments. Four specific enriched functional terms in the lower plant Chlamydomonas reinhardtii were detected when it was compared with seven other higher plants. In addition, Guanylate_cyc existed in more genes of lower plants than of higher plants. In our PSSRD, we constructed an interactive plotting function in the chart interface, and users can easily view the detailed information of SSRs. All SSR information, including sequences, primers, and annotations, can be downloaded from our database. Moreover, we developed Web SSR Finder and Batch SSR Finder tools, which can be easily used for identifying SSRs. Our database was developed using PHP, HTML, JavaScript, and MySQL, which are freely available at http://www.pssrd.info/ . We conducted an analysis of the Myb gene families and flowering genes as two applications of the PSSRD. Further analysis indicated that whole-genome duplication and whole-genome triplication played a major role in the expansion of the Myb gene families. These SSR markers in our database will greatly facilitate comparative genomics and functional genomics studies in the future.

Hortic Res. 2021:8(1) | 29 Citations (from Europe PMC, 2025-12-20)

Ranking

All databases:
1086/6895 (84.264%)
Gene genome and annotation:
354/2021 (82.533%)
1086
Total Rank
54
Citations
13.5
z-index

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Record metadata

Created on: 2022-04-15
Curated by:
Lin Liu [2022-06-03]
Yuxin Qin [2022-05-11]
Jing Wei [2022-04-18]
Yuxin Qin [2022-04-15]