JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2020, Vol. 44 ›› Issue (6): 27-32.doi: 10.3969/j.issn.1000-2006.202004013
Special Issue: 野生动物保护与疫病防控专题
Previous Articles Next Articles
LIU Dawei(), HOU Senlin*(), ZHOU Yongwu, FEI Yiling, HE Jian
Received:
2020-04-08
Revised:
2020-08-28
Online:
2020-11-30
Published:
2020-12-07
Contact:
HOU Senlin
E-mail:dwliu@nfpc.edu.cn;senlin_hou@163.com
CLC Number:
LIU Dawei, HOU Senlin, ZHOU Yongwu, FEI Yiling, HE Jian. DNA barcoding of Artiodactyla in cases involved in wildlife for species identification[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2020, 44(6): 27-32.
Table 1
Sample information of Artiodactyla in cases involved in wildlife"
物种 species | 保护级别 protected category | 样本数 number of samples | 编号 No. | 动物体部位 body part |
---|---|---|---|---|
斑羚Naemorhedus goral | II | 3 | NG1-3 | 角、肌肉 |
北山羊Capra ibex | I | 5 | CI1-5 | 角、肌肉 |
藏羚Pantholops hodgsonii | I | 3 | PH1-3 | 头骨 |
鹅喉羚Gazella subgutturosa | II | 4 | GS1-4 | 皮张 |
高鼻羚羊Saiga tatarica | I | 6 | ST1-6 | 角 |
河麂Hydropotes inermis | II | 5 | HI1-5 | 肌肉 |
黒麂 Muntiacus crinifrons | I | 2 | MC1-2 | 肌肉 |
鬣羚Capricornis sumatraensis | II | 5 | CS1-5 | 肌肉 |
羚牛 Budorcas taxicolor | I | 3 | BT1-3 | 头骨 |
马鹿Cervus elaphus | II | 5 | CE1-5 | 角 |
毛冠鹿Elaphodus cephalophus | 三有 | 6 | EC1-6 | 皮张 |
梅花鹿Cervus nippon | I | 5 | CN1-5 | 角 |
西伯利亚狍Capreolus pygargus | 三有 | 6 | CC1-6 | 肌肉 |
驼鹿Alces alces | II | 3 | AA1-3 | 角 |
小麂Muntiacus reevesi | 三有 | 4 | MR1-4 | 角、肌肉 |
马麝Moschus chrysogaster | I | 2 | MC'1-2 | 肌肉 |
Table 2
Comparisons of COI and Cyt b gene fragment sequences of Artiodactyla in cases in the GenBank"
物种 species | 序列比对结果(相似度/%) sequences alignment result (similarities) | |
---|---|---|
相关物种COI基因片段 COI of concerned species | 相关物种Cyt b基因片段 Cyt b of concerned species | |
斑羚 | 斑羚(99.75~100) | 斑羚(98.74~100) |
北山羊 | 北山羊(99.11~99.82) | 北山羊(99.58~99.64) |
藏羚 | 藏羚(99.47~99.82) | 藏羚(99.47~99.82) |
鹅喉羚 | 鹅喉羚(96.80~100) | 鹅喉羚(99.29~99.82) |
高鼻羚羊 | 高鼻羚羊(99.29~100) | 高鼻羚羊(98.75~100) |
河麂 | 河麂(98.04~99.64) | 河麂(99.29~99.82) |
黒麂 | 黒麂(99.47~100) | 黒麂(98.93~99.11) |
鬣羚 | 鬣羚(99.11~100) | 鬣羚(98.75~100) |
羚牛 | 羚牛(99.11~99.82) | 羚牛(98.58~99.82) |
马鹿 | 马鹿(97.51~99.64) | 马鹿(98.76~99.64) |
毛冠鹿 | 毛冠鹿(98.40~100) | 毛冠鹿(98.40~100) |
梅花鹿 | 梅花鹿(98.22~99.64) | 梅花鹿(98.40~99.64) |
西伯利亚狍 | 西伯利亚狍 (99.11~99.64) | 西伯利亚狍、欧洲狍 (99.64~99.82) |
驼鹿 | 驼鹿(98.75~100) | 驼鹿(98.74~100) |
小麂 | 小麂(96.98-99.82) | 小麂(98.93~99.82) |
马麝 | 马麝(98.93-99.29) | 马麝(98.92~99.10) |
[1] | HEBERT P D N, CYWINSKA A, BALL S L, et al. Biological identifications through DNA barcodes[J]. Proceedings of the Royal Society of London.Series B: Biological Sciences, 2003,270:313-321.DOI: 10.2307/3558697. |
[2] | 杨倩倩, 刘苏汶, 俞晓平. DNA条形码分析方法研究进展[J]. 应用生态学报, 2018,29(3):1006-1014. |
YANG Q Q, LIU S W, YU X P. Research progress on DNA barcoding analysis methods[J]. Chin J Appl Ecol, 2018,29(3):1006-1014.DOI: 10.13287/j.1001-9332.201803.032. | |
[3] | HOFMANN T, KNEBELSBERGER T, KLOPPMANN M, et al. Egg identification of three economical important fish species using DNA barcoding in comparison to a morphological determination[J]. J Appl Ichthyol, 2017,33(5):925-932.DOI: 10.1111/jai.13389. |
[4] | YU M, JIAO L C, GUO J, et al. DNA barcoding of vouchered xylarium wood specimens of nine endangered Dalbergia species[J]. Planta, 2017,246(6):1165-1176.DOI: 10.1007/s00425-017-2758-9. |
[5] | 赵志鹏, 向余劲攻, 何鑫, 等.用mtDNA序列鉴定出上海海域须鲸科物种大村鲸[J]. 动物学杂志, 2019, 54(4):493-500. |
ZHAO Z P, XIANGYU J G, HE X, et al. Identification of Balaenoptera omurai (Balaenopteridae) from Shanghai seas by sing mtDNA gene sequences[J]. Chinese Journal of Zoology, 2019,54(4):493-500.DOI: 10.13859/j.cjz.201904006. | |
[6] | 程希婷, 王爱民, 顾志峰, 等. DNA条形码研究进展[J]. 基因组学与应用生物学, 2011,30(6):748-758. |
CHENG X T, WANG A M, GU Z F, et al. Current progress of DNA barcoding[J]. Genom Appl Biol, 2011,30(6):748-758.DOI: 10.3969/gab.030.000748. | |
[7] | RATNASINGHAM S, HEBERT P D N.BOLD: the barcode of life data system[J]. Molecular Ecology Notes, 2007,7:355-364.DOI: 10.1046/j.1365-2540.1998.00318.x. |
[8] | SHEARER T L, VAN OPPEN M J H, ROMANO S L, et al.Slow mitochondrial DNA sequence evolution in the Anthozoa (Cnidaria)[J]. Mol Ecol, 2002,11(12):2475-2487.DOI: 10.1046/j.1365-294x.2002.01652.x. |
[9] | 梁刚, 张卫, 雷富民, 等. 雀形目15种鸟类COⅠ与Cytb基因序列的比较[J]. 动物分类学报, 2007,32(3):613-620. |
LIANG G, ZHANG W, LEI F M, et al. Comparison of cyt b and COI gene sequences from 15 species in Passeriformes[J]. Acta Zootaxonomica Sin, 2007,32(3):613-620.DOI: 10.3969/j.issn.1000-0739.2007.03.027. | |
[10] | MCFADDEN C S, BENAYAHU Y, PANTE E, et al. Limitations of mitochondrial gene barcoding in Octocorallia[J]. Mol Ecol Resour, 2011,11(1):19-31.DOI: 10.1111/j.1755-0998.2010.02875.x. |
[11] | KOCHER T D, THOMAS W K, MEYER A, et al. Dynamics of mitochondrial DNA evolution in animals:amplification and sequencing with conserved primers[J]. PNAS, 1989,86(16):6196-6200.DOI: 10.1073/pnas.86.16.6196. |
[12] | JOHNSON T A, IYENGAR A. Phylogenetic evidence for a case of misleading rather than mislabeling in caviar in the United Kingdom[J]. J Forensic Sci, 2015,60:S248-S253.DOI: 10.1111/1556-4029.12583. |
[13] | 李楠, 王佳慧, 韩春卉, 等. COI及Cyt b基因对河鲀鱼鱼种鉴定的适用性研究[J]. 中国食品卫生杂志, 2018,30(1):6-11. |
LI N, WANG J H, HAN C H, et al. Application of COI and Cyt b gene in species identification of pufferfish[J]. Chin J Food Hyg, 2018,30(1):6-11.DOI: 10.13590/j.cjfh.2018.01.002. | |
[14] | KUMAR S, STECHER G, TAMURA K. MEGA7:molecular evolutionary genetics analysis version 7.0 for bigger datasets[J]. Mol Biol Evol, 2016,33(7):1870-1874.DOI: 10.1093/molbev/msw054. |
[15] | 冯成利, 冯慧, 王艳. 陕西省非法贸易动物分布及现状[J]. 陕西农业科学, 2012,58(4):179-184. |
FENG C L, FENG H, WANG Y. Distribution of illegal trade animal in Shaanxi Province[J]. Shaanxi J Agric Sci, 2012,58(4):179-184.DOI: 10.3969/j.issn.0488-5368.2012.04.061. | |
[16] | 胡诗佳, 彭建军, 于冬梅, 等. 华南地区兽类野生动物非法贸易状况及分析[J]. 四川动物, 2011,30(2):293. |
HU S J, PENG J J, YU D M, et al. Analysis on the illegal trade of wild animals in South China[J]. Sichuan J Zool, 2011,30(2):293. | |
[17] | 熊小倩, 尤炜轩, 张玲, 等. 北京地区野生动物资源非法利用状况分析[J]. 野生动物学报, 2017,38(3):376-385. |
XIONG X Q, YOU W X, ZHANG L, et al.Status of illegal use of wildlife resources in Beijing[J]. Chin J Wildl, 2017,38(3):376-385.DOI: 10.19711/j.cnki.issn2310-1490.2017.03.006. | |
[18] | ZENG Y, WU Z Z, ZHANG C G, et al. DNA barcoding of mobulid ray gill rakers for implementing CITES on elasmobranch in China[J]. Sci Rep, 2016,6(1):37567.DOI: 10.1038/srep37567. |
[19] |
NGATIA J N, LAN T M, MA Y, et al. Distinguishing extant elephants Ivory from mammoth ivory using a short sequence of cytochrome b gene[J]. Sci Rep, 2019,9:18863.DOI: 10.1038/s41598-019-55094-x.
doi: 10.1038/s41598-019-55094-x pmid: 31827140 |
[20] | ROLO E A, OLIVEIRA A R, DOURADO C G, et al. Identification of sarcosaprophagous Diptera species through DNA barcoding in wildlife forensics[J]. Forensic Sci Int, 2013,228(1/2/3):160-164. DOI: 10.1016/j.forsciint.2013.02.038. |
[21] | 秦啼, 王东权, 曲宁新, 等. 基于粪便DNA技术的鸟类物种鉴定体系研究[J]. 野生动物学报, 2020,41(1):145-151. |
QIN T, WANG D Q, QU N X, et al. Bird species identification using faecal DNA analysis[J]. Chin J Wildl, 2020,41(1):145-151.DOI: 10.3969/j.issn.1000-0127.2020.01.020. | |
[22] | 侯森林, 费宜玲, 赵国清, 等. 3种鹿科动物针毛扫描电镜观察[J]. 江苏林业科技, 2018,45(5):35-38. |
HOU S L, FEI Y L, ZHAO G Q, et al. A survey on the micro-structural morphological character of guard hair of 3 species of deer by SEM[J]. Journal of Jiangsu Forestry Science & Technology, 2018,45(5):35-38.DOI: 10.3969/j.issn.1001-7380.2018.05.008. | |
[23] | KÖHLER F. From DNA taxonomy to barcoding-how a vague idea evolved into a biosystematic tool[J]. Zool Reihe, 2007,83(S1):44-51.DOI: 10.1002/mmnz.200600025. |
[24] | HEBERT P D N, RATNASINGHAM S, DEWAARD J R. Barcoding animal life:cytochrome c oxidase subunit 1 divergences among closely related species[J]. Proc Biol Sci, 2003,270(S 1):S96-S99.DOI: 10.1098/rsbl.2003.0025. |
[25] | SHEN Y J, GUAN L H, WANG D Q, et al. DNA barcoding and evaluation of genetic diversity in Cyprinidae fish in the midstream of the Yangtze River[J]. Ecol Evol, 2016,6(9):2702-2713.DOI: 10.1002/ece3.2060. |
[26] | 王业磷, 章群, 邓春兴. 基于线粒体COI基因的马鲅科鱼类DNA条形码研究[J]. 海洋渔业, 2020,42(1):1-9. |
WANG Y L, ZHANG Q, DENG C X, et al. DNA barcoding of Polynemidae based on mitochondrial COI gene[J]. Marine Fisheries, 2020,42(1):1-9.DOI: 10.13233/j.cnki.mar.fish.2020.01.001. | |
[27] |
DINH T D, NGATIA J N, CUI L Y, et al. Influence of pairwise genetic distance computation and reference sample size on the reliability of species identification using Cyt b and COI gene fragments in a group of native passerines[J]. Forensic Sci Int:Genet, 2019,40:85-95.DOI: 10.1016/j.fsigen.2019.02.013.
pmid: 30780122 |
[28] |
JIANG F, JIN Q, LIANG L, et al. Existence of species complex largely reduced barcoding success for invasive species of Tephritidae:a case study in Bactrocera spp.[J]. Mol Ecol Resour, 2014,14(6):1114-1128.DOI: 10.1111/1755-0998.12259.
doi: 10.1111/1755-0998.12259 pmid: 24690386 |
[29] | ORTMAN B D, BUCKLIN A, PAGÈS F, et al. DNA Barcoding the Medusozoa using mtCOI[J]. Deep Sea Res Part II:Top Stud Oceanogr, 2010,57(24/25/26):2148-2156.DOI: 10.1016/j.dsr2.2010.09.017. |
[1] | YANG Hong, DONG Jingjing, WU Tong, ZHOU Huajin, CHEN Jie, LI Meng, WANG Xianrong, YI Xiangui. Prediction of potential suitable areas of Cerasus discoidea in China based on the MaxEnt model [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2023, 47(4): 131-138. |
[2] | LI Lei, JIANG Jing, CHEN Yunxia. Recent advances in the application of DNA metabarcoding technology in forensic identification of animals and plants [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2021, 45(1): 235-241. |
[3] | ZHOU Yongwu, LIU Changjing. Observation and comparison about belly feather of seven species of Strigiforme birds with scanning electron microscope [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(06): 193-198. |
[4] | CHEN Mengyi, XU Mei, QIAN Lu, AN Yulin, HAO Dejun. The application of DNA barcoding identification kit technology to Monochamus Dejean [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2015, 39(06): 7-11. |
[5] | NAN Chenghui, YI Xiangui, WANG Huachen, WANG Xianrong, TANG Gengguo. Study on the niche of the main populaition in Cerasus discoidea community [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2014, 38(增刊): 89-92. |
[6] | HOU Senlin. Barbules of rectrices of ten species from Falconiformes under scanning by electronic microscope [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2014, 38(04): 163-167. |
[7] | SUN Qiuling, ZHANG Chunying,DAI Silan. Effects of different nitrogen sources on the nitrogen uptake and nitrate reductase activities of ericoid mycorrhizal fungi [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2014, 38(01): 175-178. |
[8] | HOU Senlin, XUE Xiaoming, SONG Qingshuang. A morphological analysis of guard hairs of Mustela erminea and M. sibirica by scanning electron microscope [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2012, 36(04): 149-152. |
[9] | CAO Jianxin, JIANG Yuanbiao, ZHANG Jinfeng, SU Wenhua, ZHANG Guangfei. Comparison of growth characteristics on seedlings of Cyclobalanopsis glaucoides and Castanopsis orthacantha in different soil conditions [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2009, 33(01): 79-82. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||