==== Front Mitochondrial DNA B Resour Mitochondrial DNA B Resour Mitochondrial DNA. Part B, Resources 2380-2359 Taylor & Francis 10.1080/23802359.2019.1687024 1687024 Version of RecordResearch Article Mitogenome Announcement The complete chloroplast genome of Impatiens uliginosa Franch., an endemic species in Southwest China C. Luo et al.Luo Chao a Huang Wulue a Zhu Jiapeng a Feng Zhixi a Liu Yingli a Li Yang a Li Xinyi a Huang Haiquan ab Huang Meijuan a a College of Landscape Architecture, Southwest Forestry University, Kunming, China; b Research and Development Center of Landscape Plants and Horticulture Flowers, Southwest Forestry University, Kunming, China CONTACT Haiquan Huang haiquanl@163.com; Meijuan Huang xmhhq2001@163.comCollege of Landscape Architecture, Southwest Forestry University, Kunming650224, China 6 11 2019 2019 4 2 3846 3847 © 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.2019The Author(s)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 work is properly cited.http://creativecommons.org/licenses/by/4.0/Abstract The complete chloroplast genome sequence of Impatiens uliginosa Franch., an endemic species in Southwest China, we research genetic and phylogenetic relationship with other species in an effort to provide genomic resources useful for promoting its conservation and utilization. The total chloroplast genome size of I. uliginosa is 152,609 bp, with a typical quadripartite structure including a pair of inverted repeat (IRs, 25,871 bp) regions separated by a small single copy (SSC, 17,502 bp) region and a large single copy (LSC, 83,365 bp) region. The overall GC content of I. uliginosa plastid genome was 36.8%. The whole chloroplast genome contains 136 genes, including 89 protein-coding genes (PCGs), 38 transfer RNA genes (tRNAs), and 8 ribosomal RNA genes (rRNAs). Among these genes, 15 genes have one intron and 2 genes contain two introns. To investigate the evolution status, the phylogenetic tree based on APG III from 12 complete chloroplast plastomes of Ericales supports close relationships. According to the phylogenetic topologies, I. uliginosa was closely related to I. piufanensis. Keywords Impatiens uliginosa Franch.endemic specieschloroplast genome ==== Body Impatiens, one of the three most widely used bedding flowers in the world, is known for its rich corolla colors and ornamental values. In addition, it has some medicinal and cosmetic values because of containing many bioactive compounds including 2-methoxy-1,4-naphthoquinone, quercetin, and lawsone (Fischer 2004; Yu et al. 2016). The largest angiosperm genus Impatiens includes over 1000 species distribute in the world, with 250 species in China (Grey-Wilson 1980). Impatiens is famous for its taxonomic difficulty. Nevertheless, to date, a generally accepted worldwide infrageneric classification for Impatiens is lacking (Janssens et al. 2012). Impatiens uliginosa Franch., an endemic annual and perennial species in China, occurs only at high altitudes range from 1600 to 2300 m of Yunnan, Guizhou, and Guangxi in the southwest of China. It has not only high ornamental values and its own characteristics including various flower colors and flower diameters, unique flower shapes, etc.(Yu et al. 2016), but also good adaptability and high resistance in the biotic and abiotic stresses (Chen 2001). Meanwhile, all year round it blooms in Dian Pond of Kunming in Yunnan. For a better understanding of I. uliginosa Franch., it is essential to reconstruct a phylogenetic tree of the Impatiens species based on high-throughput sequencing approaches. The fresh leaves of I. uliginosa were sampled from Dian Pond of Kunming (Yunnan, China; coordinates: 102°75′89″E, 25°06′03″N; altitude: 1952.4 m). Total genomic DNA was extracted with the BioTeke Plant Genomic DNA Preps Kit (BioTeke Corporation, Beijing, China). The voucher specimens of I. uliginosa samples were properly deposited at the herbarium of Southwest Forestry University, which specimen Accession number is SWFU-IBDSJF20180810, and DNA samples were properly stored in College of Landscape Architecture and Research and Development Center of Landscape Plants and Horticulture Flowers, Southwest Forestry University, Kunming, Yunnan, China. Total genomic DNA was used to generate libraries with an average insert size of 400 bp and sequences using the Illumina Hiseq X platform. Approximately, 1.95 GB of raw data was generated with 150 bp paired-end read lengths. The complete chloroplast genome used the software of GetOrganelle by the raw data with I. pinfanensis (GenBank_MG162586.1) as the reference (Jin et al. 2018). Genome annotation was performed with the program Geneious R10 (Biomatters Ltd., Auckland, New Zealand). The cpDNA sequence with complete annotation information was deposited at GenBank database under the accession number MN533984. The plastome of I. uliginosa is a double-stranded circular DNA with a length of 152,609 bp, containing a pair of inverted repeats (IRs) of 25,871 bp, a large single copy (LSC) region of 83,365 bp, and a small single copy (SSC) region of 17,502 bp. The overall GC content of the whole plastome was 36.8%, while the corresponding values of the LSC, SSC, and IR regions were 34.5, 29.6, and 42.9%, respectively. The complete chloroplast plastome annotated 136 genes, including 89 protein-coding genes (PCGs), 38 tRNA genes, and 8 rRNA genes. Among these genes, there were 15 genes (rps16, rps12, rpoC1, rpl2, petB, ndhB, ndhA, atpF, trnK-UUU, trnG-GCC, trnL-UAA, trnV-UAC, trnI-GAU, trnA-UGC, and trnI-GAU) with one intron and two genes (ycf3 and clpP) with two introns. To determine the phylogenetic location of I. uliginosa with respect to the other impatiens with fully sequenced chloroplast genomes. With the plastome of Sinojackia xylocarpa (MH782178.1) in the family of Sinojackia as out-group, 13 chloroplast genome sequences of Ericales were aligned by the MAFFT software, version 7.0 (Katoh and Standley 2013). A maximum-likelihood method for phylogenetic analysis was performed based on GTR + I+G model in the RAxML program, version 8.0 with 1000 bootstrap replicates (Darriba et al. 2012; Stamatakis 2014). Our chloroplast phylogenomic analysis of the Balsaminaceae, in agreement with previously published phylogenetic studies (Li et al. 2018), reveals that there are close relationships between I. uliginosa, I. piufanensis (MG162586.1), and H. triflora (MG162585.1) (Figure 1). Figure 1. The ML phylogenetic tree for Impatiens uliginosa based on 12 chloroplast genome sequences of Ericales and one plastome of Sinojackia xylocarpa (MH782178.1) as outgroup. Numbers on the nodes are bootstrap values from 1000 replicates. Accession numbers: Camellia grandibracteata (NC_024659.1), Camellia nitidissima (MH382827.1), Stewartia villosa (MH782180.1), Diospyros hainanensis (MH778100.1), Diospyros kaki (KT223565.1), Actinidia argute (MG744576.1), Actinidia chinensis (KP297245), Primula chrysochlora (NC_034678.1), Hydrangea heteromalla (MG524994.1), Hydrangea serrata (KU140669.1), Hydrocera triflora (MG162585.1), and I. piufanensis (MG162586.1). Disclosure statement No potential conflict of interest was reported by the authors. ==== Refs References Chen YL, Zhang TL, Ji CZ, Zhang RH 2001 Balsaminaceae Vol. 47 In: Flora Reipublicae Popularis Sinica . Beijing : Science Press ; p. 1 –243 . Darriba D , Taboada GL , Doallo R , Posada D 2012 More models, new heuristics and parallel computing . Nat Methods . 9 (8 ):772 . Fischer E 2004 Balsaminaceae In: Kubitzki K , editor. The families and genera of vascular plants VI . Berlin : Springer Verlag ; p. 20 –25 . Grey-Wilson C 1980 Impatiens of Africa . Rotterdam : Balkema . Janssens SB , Wilson SY , Yuan YM , Nagels A , Smets EF , Huysmans S 2012 A total evidence approach using palynological characters to infer the complex evolutionary history of the Asian Impatiens (Balsaminaceae) . Taxon . 61 (2 ):355 –367 . Jin JJ , Yu WB , Yang JB , Song Y , Yi TS , Li DZ 2018 A simple and fast pipeline for de novo assemble of a complete circular chloroplast genome using genome skimming data . 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