Cargando…
Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species
Impatiens L., the largest genus in the family Balsaminaceae with approximately 1000 species, is a controversial and complex genus that includes many economically important species well known for medicinal and ornamental values. However, there is limited knowledge of molecular phylogeny and chloropla...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018631/ https://www.ncbi.nlm.nih.gov/pubmed/33798203 http://dx.doi.org/10.1371/journal.pone.0248182 |
_version_ | 1783674231359275008 |
---|---|
author | Luo, Chao Li, Yang Budhathoki, Roshani Shi, Jiyuan Yer, Huseyin Li, Xinyi Yan, Bo Wang, Qiong Wen, Yonghui Huang, Meijuan Huang, Haiquan |
author_facet | Luo, Chao Li, Yang Budhathoki, Roshani Shi, Jiyuan Yer, Huseyin Li, Xinyi Yan, Bo Wang, Qiong Wen, Yonghui Huang, Meijuan Huang, Haiquan |
author_sort | Luo, Chao |
collection | PubMed |
description | Impatiens L., the largest genus in the family Balsaminaceae with approximately 1000 species, is a controversial and complex genus that includes many economically important species well known for medicinal and ornamental values. However, there is limited knowledge of molecular phylogeny and chloroplast genomics, and uncertainties still exist at a taxonomic level. In this study, we have assembled four chloroplast genomics specimens of Impatiens cyanantha and Impatiens monticola, which are found at the different altitudes of Guizhou and Yunnan in China, and compared them with previously published three wild Balsaminaceae species (Impatiens piufanensis, Impatiens glandlifera, and Hydrocera triflora). The complete chloroplast genome sequences ranged from 152,236 bp (I. piufanensis) to 154,189 bp (H. triflora) and encoded 115 total distinct genes, of which 81 were protein-coding, 30 were distinct transfer RNA genes(tRNA), and 4 were ribosomal RNA genes (rRNA). A comparative analysis of I. cyanantha (Guizhou) vs. I. cyanantha (Yunnan) and I. monticola (Guizhou) vs. I. monticola (Yunnan) revealed minor changes in lengths; however, similar gene contents, gene orders, and GC contents existed among them. Interestingly, highly coding and non-coding genes, and regions matK, psbK, atpH-atpI, trnC-trnT, petN, psbM, atpE, rbcL, accD, psaL, rps3-rps19, ndhG-ndhA,rpl16, rpoB, ndhB, ndhF, ycf1, and ndhH were found, which could be suitable for identification of species and phylogenetic studies. During the comparison between I. cyanantha (Guizhou) and I. cyanantha (Yunnan), we observed that the rps4, ycf2, ndhF, ycf1, and rpoC2 genes underwent positive selection. Meanwhile, in the comparative study of I. monticola (Guizhou) vs. I. monticola (Yunnan), The accD and ycf1 genes were positively selected. Additionally, phylogenetic relationships based on maximum likelihood (ML) and Bayesian inference (BI) among whole chloroplast genomes showed that a sister relationship with I. monticola (Guizhou) and I. monticola (Yunnan) formed a clade with I.piufanensis proving their close connection. Besides, I.cyanantha (Guizhou) and I. cyanantha (Yunnan) formed a clade with I. glandlifera. Along with the findings and the results, the current study might provide valuable significant genomic resources for systematics and evolution of the genus impatiens in different altitudes of regions. |
format | Online Article Text |
id | pubmed-8018631 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-80186312021-04-13 Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species Luo, Chao Li, Yang Budhathoki, Roshani Shi, Jiyuan Yer, Huseyin Li, Xinyi Yan, Bo Wang, Qiong Wen, Yonghui Huang, Meijuan Huang, Haiquan PLoS One Research Article Impatiens L., the largest genus in the family Balsaminaceae with approximately 1000 species, is a controversial and complex genus that includes many economically important species well known for medicinal and ornamental values. However, there is limited knowledge of molecular phylogeny and chloroplast genomics, and uncertainties still exist at a taxonomic level. In this study, we have assembled four chloroplast genomics specimens of Impatiens cyanantha and Impatiens monticola, which are found at the different altitudes of Guizhou and Yunnan in China, and compared them with previously published three wild Balsaminaceae species (Impatiens piufanensis, Impatiens glandlifera, and Hydrocera triflora). The complete chloroplast genome sequences ranged from 152,236 bp (I. piufanensis) to 154,189 bp (H. triflora) and encoded 115 total distinct genes, of which 81 were protein-coding, 30 were distinct transfer RNA genes(tRNA), and 4 were ribosomal RNA genes (rRNA). A comparative analysis of I. cyanantha (Guizhou) vs. I. cyanantha (Yunnan) and I. monticola (Guizhou) vs. I. monticola (Yunnan) revealed minor changes in lengths; however, similar gene contents, gene orders, and GC contents existed among them. Interestingly, highly coding and non-coding genes, and regions matK, psbK, atpH-atpI, trnC-trnT, petN, psbM, atpE, rbcL, accD, psaL, rps3-rps19, ndhG-ndhA,rpl16, rpoB, ndhB, ndhF, ycf1, and ndhH were found, which could be suitable for identification of species and phylogenetic studies. During the comparison between I. cyanantha (Guizhou) and I. cyanantha (Yunnan), we observed that the rps4, ycf2, ndhF, ycf1, and rpoC2 genes underwent positive selection. Meanwhile, in the comparative study of I. monticola (Guizhou) vs. I. monticola (Yunnan), The accD and ycf1 genes were positively selected. Additionally, phylogenetic relationships based on maximum likelihood (ML) and Bayesian inference (BI) among whole chloroplast genomes showed that a sister relationship with I. monticola (Guizhou) and I. monticola (Yunnan) formed a clade with I.piufanensis proving their close connection. Besides, I.cyanantha (Guizhou) and I. cyanantha (Yunnan) formed a clade with I. glandlifera. Along with the findings and the results, the current study might provide valuable significant genomic resources for systematics and evolution of the genus impatiens in different altitudes of regions. Public Library of Science 2021-04-02 /pmc/articles/PMC8018631/ /pubmed/33798203 http://dx.doi.org/10.1371/journal.pone.0248182 Text en © 2021 Luo et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Luo, Chao Li, Yang Budhathoki, Roshani Shi, Jiyuan Yer, Huseyin Li, Xinyi Yan, Bo Wang, Qiong Wen, Yonghui Huang, Meijuan Huang, Haiquan Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title | Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title_full | Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title_fullStr | Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title_full_unstemmed | Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title_short | Complete chloroplast genomes of Impatiens cyanantha and Impatiens monticola: Insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
title_sort | complete chloroplast genomes of impatiens cyanantha and impatiens monticola: insights into genome structures, mutational hotspots, comparative and phylogenetic analysis with its congeneric species |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018631/ https://www.ncbi.nlm.nih.gov/pubmed/33798203 http://dx.doi.org/10.1371/journal.pone.0248182 |
work_keys_str_mv | AT luochao completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT liyang completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT budhathokiroshani completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT shijiyuan completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT yerhuseyin completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT lixinyi completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT yanbo completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT wangqiong completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT wenyonghui completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT huangmeijuan completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies AT huanghaiquan completechloroplastgenomesofimpatienscyananthaandimpatiensmonticolainsightsintogenomestructuresmutationalhotspotscomparativeandphylogeneticanalysiswithitscongenericspecies |