Characterization of the complete plastid genome sequence of Breynia fruticosa (L.) Müll.Arg. (Phyllanthaceae), a traditional Chinese medicine plant
Breynia fruticosa (L.) Müll.Arg. is a well-known folk medicinal plant and found abundantly in South China. The complete chloroplast genome of B. fruticosa reported firstly here was 155,630 bp in length, including a large single-copy region with 85,065 bp (LSC), a small single-copy region with 19,441...
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description | Breynia fruticosa (L.) Müll.Arg. is a well-known folk medicinal plant and found abundantly in South China. The complete chloroplast genome of B. fruticosa reported firstly here was 155,630 bp in length, including a large single-copy region with 85,065 bp (LSC), a small single-copy region with 19,441 bp (SSC) and a pair of inverted repeats with 25, 562 bp (IRa and IRb). The plastome was comprised of 112 distinct genes, with 78 protein coding genes, four ribosomal RNA genes and 30 transfer RNA genes. The overall GC content of B. fruticose chloroplast genome was 36.7%. Phylogenetic analysis revealed that B. fruticosa was closely related to Glochidion fruticosa. |
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Published by Informa UK Limited, trading as Taylor & Francis Group.</rights><rights>2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. This work is licensed under the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.</rights><rights>2020 The Author(s). 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Phylogenetic analysis revealed that B. fruticosa was closely related to Glochidion fruticosa.</description><subject>Breynia</subject><subject>Breynia fruticosa</subject><subject>chloroplast genome</subject><subject>Chloroplasts</subject><subject>Genomes</subject><subject>Medicinal plants</subject><subject>medicine plant</subject><subject>Nucleotide sequence</subject><subject>phylogenetics</subject><subject>Phylogeny</subject><subject>Rapid Communications</subject><subject>rRNA</subject><subject>Traditional Chinese medicine</subject><subject>Transfer RNA</subject><issn>2380-2359</issn><issn>2380-2359</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><sourceid>0YH</sourceid><sourceid>8G5</sourceid><sourceid>BENPR</sourceid><sourceid>GUQSH</sourceid><sourceid>M2O</sourceid><sourceid>DOA</sourceid><recordid>eNp9Uk1vEzEQXSEQrUp_AsgSl1QiwWvvrr0X1BLxUSkIDnC2JvY468hZB3sDCr-Dn8ONP4aXpFXLgZNHM8_v-Y1fUTwt6aykkr5kXFLG63bGKMstySSl7EFxOvan4-DhnfqkOE9pTSktGy5EKx4XJ5xXtWSMnRY_5x1E0ANG9wMGF3oSLBk6JDpsth4HJFsPaXCGrLAPGyQJv-6w1zjiXkfc9w6IjbvB6ZCATBazC_Lh9y_vZ1dxNSOTT93ee-iHDjQCXrwgQIYIxo1S4Mm8cz0mJBs0TudyVOuHJ8UjCz7h-fE8K768ffN5_n66-Pjuen61mOpKCDZFaCRrkC41tSXTyJlgQpjK1LKujSw51JKD1YY1sLSstqVdAhdGo6lAIOVnxfWB1wRYq210G4h7FcCpv40QVwpiduZRyVZSYWVly1ZUDTWt1UKUtakEpbw1PHO9OnBtd8vsRmOfffp7pPcnvevUKnxTQkhWtSPB5EgQQ15xGtTGJY3j9jDskmKVkFky_3SGPv8Hug67mPeZUTVjdcnaZkTVB5SOIaWI9vYxJVVjjNRNjNQYI3WMUb737K6T21s3ocmAywPA9TbEDXwP0Rs1wN6HaCP02iXF_6_xByTZ2Bs</recordid><startdate>20201007</startdate><enddate>20201007</enddate><creator>Zhou, Zengliang</creator><creator>Cao, Ruilan</creator><creator>Hu, Dongnan</creator><creator>Liu, Juan</creator><general>Taylor & Francis</general><general>Taylor & Francis Ltd</general><general>Taylor & Francis Group</general><scope>0YH</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>3V.</scope><scope>7XB</scope><scope>8FD</scope><scope>8FK</scope><scope>8G5</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>FR3</scope><scope>GNUQQ</scope><scope>GUQSH</scope><scope>M2O</scope><scope>MBDVC</scope><scope>P64</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>Q9U</scope><scope>RC3</scope><scope>7X8</scope><scope>5PM</scope><scope>DOA</scope></search><sort><creationdate>20201007</creationdate><title>Characterization of the complete plastid genome sequence of Breynia fruticosa (L.) 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Part B. Resources</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Zhou, Zengliang</au><au>Cao, Ruilan</au><au>Hu, Dongnan</au><au>Liu, Juan</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Characterization of the complete plastid genome sequence of Breynia fruticosa (L.) Müll.Arg. (Phyllanthaceae), a traditional Chinese medicine plant</atitle><jtitle>Mitochondrial DNA. Part B. Resources</jtitle><addtitle>Mitochondrial DNA B Resour</addtitle><date>2020-10-07</date><risdate>2020</risdate><volume>5</volume><issue>3</issue><spage>3510</spage><epage>3511</epage><pages>3510-3511</pages><issn>2380-2359</issn><eissn>2380-2359</eissn><abstract>Breynia fruticosa (L.) Müll.Arg. is a well-known folk medicinal plant and found abundantly in South China. The complete chloroplast genome of B. fruticosa reported firstly here was 155,630 bp in length, including a large single-copy region with 85,065 bp (LSC), a small single-copy region with 19,441 bp (SSC) and a pair of inverted repeats with 25, 562 bp (IRa and IRb). The plastome was comprised of 112 distinct genes, with 78 protein coding genes, four ribosomal RNA genes and 30 transfer RNA genes. The overall GC content of B. fruticose chloroplast genome was 36.7%. Phylogenetic analysis revealed that B. fruticosa was closely related to Glochidion fruticosa.</abstract><cop>England</cop><pub>Taylor & Francis</pub><pmid>33458222</pmid><doi>10.1080/23802359.2020.1828002</doi><tpages>2</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Breynia Breynia fruticosa chloroplast genome Chloroplasts Genomes Medicinal plants medicine plant Nucleotide sequence phylogenetics Phylogeny Rapid Communications rRNA Traditional Chinese medicine Transfer RNA |
title | Characterization of the complete plastid genome sequence of Breynia fruticosa (L.) Müll.Arg. (Phyllanthaceae), a traditional Chinese medicine plant |
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