|本期目录/Table of Contents|

[1]龚意辉,谢雪阳,魏媛媛,等.金冠8-18油桃叶绿体全基因组序列特征及其系统发育[J].江苏农业科学,2023,51(19):30-36.
 Gong Yihui,et al.Characterization and phylogenetic analysis of complete chloroplast genome of Prunus persica var. nectarinacultivar Jinguan 8-18[J].Jiangsu Agricultural Sciences,2023,51(19):30-36.
点击复制

金冠8-18油桃叶绿体全基因组序列特征及其系统发育(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第51卷
期数:
2023年第19期
页码:
30-36
栏目:
生物技术
出版日期:
2023-10-05

文章信息/Info

Title:
Characterization and phylogenetic analysis of complete chloroplast genome of Prunus persica var. nectarinacultivar Jinguan 8-18
作者:
龚意辉谢雪阳魏媛媛周桂花李丽梅曾永贤
湖南人文科技学院农业与生物技术学院,湖南娄底 417000
Author(s):
Gong Yihuiet al
关键词:
油桃叶绿体基因组组装SSR位点系统发育
Keywords:
-
分类号:
S662.101
DOI:
-
文献标志码:
A
摘要:
以金冠8-18油桃为试材,利用 Illumina NovaSeq 6000 测定金冠8-18的 DNA 序列,采用 SPAdes v3.10.1软件组装叶绿体基因组,以桃树叶绿体基因组(MZ673795.1)为参考序列,对金冠8-18叶绿体基因组序列特征及其系统发育地位进行研究。结果表明:金冠8-18叶绿体基因组长度为153 754 bp,包括大单拷贝区(LSC,85 923 bp),小单拷贝区(SSC,19 100 bp)以及2个反向重复序列(IR,26 381 bp),AT和GC总含量分别为63.23%、36.77%。共在金冠8-18叶绿体基因组中注释到 133 个基因,其中含编码基因(CDS)、转运RNA 基因、核糖体RNA基因、假基因数分别为84、37、8、4个。按照功能分类将基因分成 4类:光合作用相关基因共44个、自我复制相关基因共58个、其他基因共5个、未知功能基因6个,其中含1个和2个内含子的基因数分别为14、3个。共鉴定出251个 SSR 位点,包括 158个单核苷酸重复位点,93个复合核苷酸重复位点。系统发育分析表明:金冠8-18与桃树(MH169125.1)的亲缘关系最近。本研究丰富了金冠8-18遗传资源信息,为油桃品种鉴定、遗传育种和系统发育研究提供了分子依据和理论支撑。
Abstract:
-

参考文献/References:

[1]Trofimov D,Cadar D,Schmidt-Chanasit J,et al. A comparative analysis of complete chloroplast genomes of seven Ocotea species (Lauraceae) confirms low sequence divergence within the Ocotea complex[J]. Scientific Reports,2022,12(1):1120.
[2]Jr B C W. Uniparental inheritance of mitochondrial and chloroplast genes:mechanisms and evolution[J]. Proceedings of the National Academy of Science,1995,92(25):11331-11338.
[3]Zhai W,Duan X S,Zhang R,et al. Chloroplast genomic data provide new and robust insights into the phylogeny and evolution of the Ranunculaceae[J]. Molecular Phylogenetics and Evolution,2019,135:12-21.
[4]Chen Q,Wu X B,Zhang D Q. Phylogenetic analysis of Fritillaria cirrhosa D. Don and its closely related species based on complete chloroplast genomes[J]. PeerJ,2019,7:e7480.
[5]Hong S Y,Cheon K S,Yoo K O,et al. Comparative analysis of the complete chloroplast genome sequences of three Amaranthus species[J]. Plant Genetic Resources,2019,17(3):245-254.
[6]Yan M,Zhao X Q,Zhou J Q,et al. The complete chloroplast genome of cultivated apple (Malus domestica Cv.‘Yantai Fuji 8’)[J]. Mitochondrial DNA,2019,4(1):1213-1216.
[7]Azim M K,Khan I A,Zhang Y. Characterization of mango (Mangifera indica L.) transcriptome and chloroplast genome[J]. Plant Molecular Biology,2014,85(1):193-208.
[8]Cheng H,Li J F,Zhang H,et al. The complete chloroplast genome sequence of strawberry (Fragaria×ananassa Duch.) and comparison with related species of Rosaceae[J]. PeerJ,2017,5:e3919.
[9]Kim Y,Shin J,Oh D R,et al. Comparative analysis of complete chloroplast genome sequences and insertion-deletion (indel) polymorphisms to distinguish five Vaccinium species[J]. Forests,2020,11(9):927.
[10]Guo D H,Li D M,Li H,et al. The complete chloroplast genome sequence of Vitis vinifera Muscat Hamburg[J]. Mitochondrial DNA,2019,5(1):117-118.
[11]Raveendar S,Na Y W,Lee J R,et al. The complete chloroplast genome of Capsicum annuum var. glabriusculum using illumina sequencing[J]. Molecules,2015,20(7):13080-13088.
[12]吴民华,邹振宁,叶晓霞,等. 露兜树叶绿体基因组结构与序列特征分析[J]. 中药新药与临床药理,2023,34(1):115-122.
[13]赵文植,董章宏,辛静,等. 高粱泡叶绿体基因组特征分析[J]. 云南农业大学学报(自然科学),2022,37(3):435-446.
[14]王婧,王天翼,王罗云,等. 沙枣叶绿体全基因组序列及其使用密码子偏性分析[J]. 西北植物学报,2019,39(9):1559-1572.
[15]Yoon J,Liu D C,Song W,et al. Genetic diversity and ecogeographical phylogenetic relationships among peach and nectarine cultivars based on simple sequence repeat (SSR) markers[J]. Journal of the American Society for Horticultural Science,2006,131(4):513-521.
[16]Jayarajan S,Sharma R R,Sethi S,et al. Chemical and nutritional evaluation of major genotypes of nectarine (Prunus persica var. nectarina) grown in North-Western Himalayas[J]. Journal of Food Science and Technology,2019,56(9):4266-4273.
[17]田玉命,韩明玉,张满让,等. 油桃裂果研究进展[J]. 果树学报,2008,25(4):572-576.
[18]岳国玉,李淑华,白玉静,等. 温室油桃优质高产栽培技术[J]. 北方果树,2007(2):46-47.
[19]熊子璇,吴志蒙,黄华,等. 不同保鲜袋包装对采后油桃果实贮藏品质的影响[J]. 包装工程,2022,43(3):78-86.
[20]Bankevich A,Nurk S,Antipov D,et al. SPAdes:a new genome assembly algorithm and its applications to single-cell sequencing[J]. Journal of Computational Biology,2012,19(5):455-477.
[21]Huang J. Characterization of the complete chloroplast genome of Eriobotrya japonica in China and phylogenetic relationships[J]. Mitochondrial DNA,2019,4(1):1367-1369.
[22]Liu X,Zhang Y,Guo J Y,et al. The complete chloroplast genome sequence of cultivated peach (Prunus persica var.nectarina cv.Rui Guang 18)[J]. Mitochondrial DNA,2021,6(1):208-210.
[23]Tao L,Shi Z G,Long Q Y. Complete chloroplast genome sequence and phylogenetic analysis of a wild species of abiu fruit,Pouteria caimito (Ruiz & Pavon.) Radlk[J]. Mitochondrial DNA,2021,6(1):138-139.
[24]Hu Z Y,Hua W,Huang S M,et al. Complete chloroplast genome sequence of rapeseed (Brassica napus L.) and its evolutionary implications[J]. Genetic Resources and Crop Evolution,2011,58(6):875-887.
[25]杜清,王立强,陈卓尔,等. 欧地笋叶绿体全基因组序列特征及其系统发育分析[J]. 药学学报,2022,57(7):2206-2215.
[26]胡赛文,丁怡宁,毕光耀,等. 药用植物萹蓄叶绿体基因组特征与系统进化分析[J]. 中草药,2022,53(9):2776-2785.
[27]Song Y,Chen Y,Lv J Z,et al. Comparative chloroplast genomes of Sorghum species:sequence divergence and phylogenetic relationships[J]. BioMed Research International,2019,2019(5):1-11.
[28]仇律雯,杨扬,范亚明,等. 国家东南区鲜食糯玉米品质及农艺性状与SSR标记遗传多样性分析[J]. 江苏农业科学,2022,50(18):130-135.
[29]Yan M,Zhao X Q,Zhou J Q,et al. The complete chloroplast genomes of Punica granatum and a comparison with other species in Lythraceae[J]. International Journal of Molecular Sciences,2019,20(12):2886.
[30]Wang K Y,Li L,Zhao M Z,et al. Characterization of the complete chloroplast genome of Longan (Dimocarpus longan Lour.) using illumina paired-end sequencing[J]. Mitochondrial DNA,2017,2(2):904-906.
[31]Huang J A,Chen R H,Li X G. Comparative analysis of the complete chloroplast genome of four known Ziziphus species[J]. Genes,2017,8(12):340.
[32]Niu Y F,Gao C W,Liu J. Complete mitochondrial genomes of three Mangifera species,their genomic structure and gene transfer from chloroplast genomes[J]. BMC genomics,2022,23(1):1-8.
[33]Martin G,Baurens F C,Cardi C,et al. The complete chloroplast genome of banana (Musa acuminata,Zingiberales):insight into plastid monocotyledon evolution[J]. PLoS One,2013,8(6):e67350.
[34]Kuang D Y,Wu H,Wang Y L,et al. Complete chloroplast genome sequence of Magnolia kwangsiensis (Magnoliaceae):implication for DNA barcoding and population genetics[J]. Genome,2011,54(8):663-673.
[35]吴东洋,业宁,徐逸卿,等. 狗枣猕猴桃叶绿体基因组微卫星特征分析[J]. 北方园艺,2018(9):30-35.
[36]马孟莉,张薇,孟衡玲,等. 草果叶绿体基因组特征及系统发育分析[J]. 中草药,2021,52(19):6023-6031.
[37]叶鹏,李显煌,唐军荣,等. 云南金花茶转录组SSR的分布及其序列特征[J]. 中南林业科技大学学报,2019,39(9):86-91.

相似文献/References:

[1]吴春芳,李强峰.2种栽培措施对温室油桃果实品质的影响[J].江苏农业科学,2013,41(10):147.
 Wu Chunfang,et al.Effect of two cultivation measures on fruit quality of Prunus persica var. nectarina[J].Jiangsu Agricultural Sciences,2013,41(19):147.
[2]马杰,王嵩,马维,等.不同培养基组分对油桃花粉萌发的影响[J].江苏农业科学,2016,44(06):264.
 Ma Jie,et al.Effect of different medium components on pollen viability of nectarine[J].Jiangsu Agricultural Sciences,2016,44(19):264.
[3]尤超,刘涛,汪亚,等.油桃嫁接繁殖育苗对比试验[J].江苏农业科学,2015,43(04):185.
 You Chao,et al.Comparative test of grafting breed seedling for nectarine[J].Jiangsu Agricultural Sciences,2015,43(19):185.
[4]尤超,沈虹,郭世荣,等.早熟油桃品种的抗寒性对比试验[J].江苏农业科学,2017,45(14):119.
 You Chao,et al.Comparative experiment of cold resistance of early-maturing nectarine varieties[J].Jiangsu Agricultural Sciences,2017,45(19):119.
[5]尤超,沈虹,张营营,等.油桃生理特性对水分胁迫的响应[J].江苏农业科学,2018,46(16):98.
 You Chao,et al.Response of physiological characteristics of nectarine seedlings to water stress[J].Jiangsu Agricultural Sciences,2018,46(19):98.
[6]柳燕杰,田旭平,李倩.美国红梣叶绿体基因组密码子偏好性分析[J].江苏农业科学,2020,48(15):83.
 Liu Yanjie,et al.Analysis of codon bias in chloroplast genome of Fraxinus pennsylvanica[J].Jiangsu Agricultural Sciences,2020,48(19):83.
[7]夏涵涵,雷雪柔,黄臻齐,等.二代测序技术和叶绿体基因组在菊花系统学分类和遗传资源研究中的应用综述[J].江苏农业科学,2021,49(13):25.
 Xia Hanhan,et al.Application of second generation sequencing and chloroplast genome in taxonomy and genetic resources research of Chrysanthemum morifolium:a review[J].Jiangsu Agricultural Sciences,2021,49(19):25.
[8]丁祥青,毕远洋,陈佳婷,等.抱茎金花茶(Camellia tienii)的叶绿体基因组特征分析[J].江苏农业科学,2022,50(23):33.
 Ding Xiangqing,et al.Analysis of chloroplast genome characteristics of Camellia tienii[J].Jiangsu Agricultural Sciences,2022,50(19):33.
[9]万露露,范敦锦,王中煊,等.杜鹃叶绿体基因组特征及密码子偏好性分析[J].江苏农业科学,2023,51(13):54.
 Wan Lulu,et al.Analysis of chloroplast genome characteristics and codon usage bias of Rhododendron simsii[J].Jiangsu Agricultural Sciences,2023,51(19):54.
[10]余涛,蒲芬,管芹,等.南欧大戟叶绿体基因组密码子偏好性分析[J].江苏农业科学,2023,51(15):35.
 Yu Tao,et al.Analysis of codon bias in chloroplast genome of Euphorbia peplus L.[J].Jiangsu Agricultural Sciences,2023,51(19):35.

备注/Memo

备注/Memo:
收稿日期:2022-12-06
基金项目:湖南省科技特派员服务乡村振兴项目(编号:2022NK4218);湘潭市农业科学研究所横向项目(编号:380220590112)。
作者简介:龚意辉(1988—),男,湖南涟源人,博士,从事果实分子生物学方向研究。E-mail:gyhzgh@163.com。
通信作者:曾永贤,高级农艺师,从事果蔬分子生物学方向研究。E-mail:1123346336@qq.com。
更新日期/Last Update: 2023-10-05