JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2022, Vol. 46 ›› Issue (3): 127-133.doi: 10.12302/j.issn.1000-2006.202105011
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GE Dapeng1(), REN Yuan1, ZHAO Jun2, WANG Yuting2, LIU Xueqing3, YUAN Zhaohe1,*()
Received:
2021-05-10
Accepted:
2021-07-24
Online:
2022-05-30
Published:
2022-06-10
Contact:
YUAN Zhaohe
E-mail:gedapeng@njfu.edu.cn;zhyuan88@hotmail.com
CLC Number:
GE Dapeng, REN Yuan, ZHAO Jun, WANG Yuting, LIU Xueqing, YUAN Zhaohe. Genetic diversity among wild populations of pomegranate in Tibet by SSR analyses[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2022, 46(3): 127-133.
Table 1
Information of wild pomegranate collection sites in Tibet"
群体 population | 采样点 site | 北纬/(°) latitude (N) | 东经/(°) longitude (E) | 海拔/m altitude |
---|---|---|---|---|
昌都 CD | 昌都市八宿县林卡乡叶巴村 | 29.879 3 | 97.379 9 | 2 661 |
昌都市左贡县东坝乡普卡村 | 29.852 7 | 97.422 3 | 2 673 | |
昌都市左贡县东坝乡军拥村 | 29.856 8 | 97.424 3 | 2 699 | |
林芝a LZa | 林芝市察隅县古拉乡 | 29.020 5 | 97.952 5 | 2 374 |
林芝市察隅县古拉乡安巴村 | 29.040 5 | 97.982 8 | 2 322 | |
林芝b LZb | 林芝市察隅县察瓦龙乡珠拉村 | 28.736 4 | 98.439 4 | 2 125 |
林芝市察隅县察瓦龙乡格布村 | 28.611 2 | 98.451 9 | 2 299 | |
林芝市察隅县察瓦龙乡则拉村 | 28.492 0 | 98.454 5 | 2 053 | |
林芝市察隅县察瓦龙乡邓许村 | 28.443 3 | 98.457 1 | 1 798 | |
林芝市察隅县察瓦龙乡昌西村 | 28.371 7 | 98.452 5 | 1 791 |
Table 2
The information of 13 pairs of SSR primers"
引物名称 primer name | 重复单元 repeat motif | 正向引物(5'-3') forward primer | 反向引物(5'-3') reverse primer | 来源 source |
---|---|---|---|---|
48 | (AAAG)11 | AAACGGGTGACTAAGAAATTTT | TTCACCCTCACCTAGACGACAT | 自主开发 |
59 | (TACA)9 | TGCAGCAGTTTCTCTTCT | GTGGTGTCTGACGTGCGA | 自主开发 |
73 | (TGTA)9 | TCTTCCAAAAGGGCGAAT | GTGGAGTGCATCAACCAA | 自主开发 |
86 | (TATC)9 | TTCCAGCAAGGCAAGTGTTT | ATACGCCGGTTTTTCGATCT | 自主开发 |
99 | (CGAA)6 | CTAAGGGATTTTGTTGGC | GCACAAAGTCAAAACACA | 自主开发 |
136 | (TTTA)5 | ACAAAAAGACGGGAACCT | AGACCTCATAAAACTGGG | 自主开发 |
140 | (GTC)6 | ATAGGCAATAACAAAGGT | AACCCGCAATCGACTTTA | 自主开发 |
149 | (AGGA)5 | TCCCCAGAACTGAACACA | GCCAATGATAATCCACAT | 自主开发 |
dbz4 | CT | CATCAGAATCGTCCCCTTGTG | CAGAGAGAAGAAGAGAGACCGAGC | 文献[15] |
M06 | (CTT)26 | TGGTTAGGCATGCAAGAGTG | GAGCTGGTGATTTCATTGGG | 文献[6] |
M07 | (TTC)25 | TAGCCCCATTTTGCTGATTC | GTCGCGTGAAATTCCCTAAA | 文献[6] |
tsh4 | (TATC)9 | AAAGCATGCGAAAGGATGAT | CAATGCCAATGTTACGGATG | 文献[4] |
tsh6 | (GTCT)7 | CGATGTGTACAGTTGTGGGC | CCGTTTTAGCTCCAGTCTGC | 文献[4] |
Table 3
The genetic diversity parameters of 13 SSRs in all tested wild accessions of pomegranate"
位点 locus | Na | Ne | I | Ho | He | F | 多态信息含量 PIC |
---|---|---|---|---|---|---|---|
48 | 3 | 1.999 | 0.737 | 0.429 | 0.500 | 0.142 | 0.386 |
59 | 2 | 1.600 | 0.562 | 0.167 | 0.375 | 0.556 | 0.305 |
73 | 3 | 2.119 | 0.817 | 0.429 | 0.528 | 0.188 | 0.421 |
86 | 4 | 1.504 | 0.621 | 0.143 | 0.335 | 0.574 | 0.299 |
99 | 3 | 1.925 | 0.718 | 0.548 | 0.480 | -0.140 | 0.376 |
136 | 2 | 1.774 | 0.628 | 0.643 | 0.436 | -0.474 | 0.341 |
140 | 2 | 1.930 | 0.675 | 0.381 | 0.482 | 0.209 | 0.366 |
149 | 2 | 1.747 | 0.619 | 0.429 | 0.427 | -0.003 | 0.336 |
dbz4 | 2 | 1.866 | 0.657 | 0.488 | 0.464 | -0.051 | 0.356 |
M06 | 6 | 2.197 | 0.916 | 0.405 | 0.545 | 0.257 | 0.442 |
M07 | 6 | 2.040 | 1.036 | 0.214 | 0.510 | 0.580 | 0.469 |
tsh4 | 3 | 2.108 | 0.815 | 0.561 | 0.526 | -0.067 | 0.421 |
tsh6 | 6 | 2.813 | 1.227 | 0.500 | 0.645 | 0.224 | 0.591 |
均值mean | 3.385 | 1.971 | 0.771 | 0.410 | 0.481 | 0.154 | 0.393 |
Table 4
Genetic diversity of the three wild pomegranate populations"
群体 population | 采样点数量 sampling site | 种质数量 accession | Na | Ne | I | Ho | He | F |
---|---|---|---|---|---|---|---|---|
CD | 3 | 20 | 2.308 | 1.817 | 0.600 | 0.493 | 0.395 | -0.217 |
LZa | 2 | 5 | 1.769 | 1.695 | 0.513 | 0.077 | 0.365 | 0.774 |
LZb | 5 | 17 | 3.077 | 2.091 | 0.824 | 0.412 | 0.504 | 0.176 |
均值 mean | 3.3 | 14 | 2.385 | 1.867 | 0.646 | 0.327 | 0.421 | 0.212 |
[1] |
YUAN Z H, YIN Y L, QU J L, et al. Population genetic diversity in Chinese pomegranate (Punica granatum L.) cultivars revealed by fluorescent-AFLP markers[J]. J Genet Genomics, 2007, 34(12):1061-1071.DOI: 10.1016/S1673-8527(07)60121-0.
doi: 10.1016/S1673-8527(07)60121-0 |
[2] | 赵丽华, 李名扬, 王先磊, 等. 石榴种质资源遗传多样性及亲缘关系的ISSR分析[J]. 果树学报, 2011, 28(1):66-71. |
ZHAO L H, LI M Y, WANG X L, et al. Genetic diversity and genetic relationship of pomegranate (Punica granatum) germplasm evaluated by ISSR markers[J]. J Fruit Sci, 2011, 28(1):66-71.DOI: 10.13925/j.cnki.gsxb.2011.01.010.
doi: 10.13925/j.cnki.gsxb.2011.01.010 |
|
[3] | 张四普, 汪良驹, 曹尚银, 等. 23个石榴基因型遗传多样性的SRAP分析[J]. 果树学报, 2008, 25(5):655-660. |
ZHANG S P, WANG L J, CAO S Y, et al. Analysis of genetic diversity of 23 pomegranate genotypes by SRAP[J]. J Fruit Sci, 2008, 25(5):655-660. | |
[4] | 洪文娟, 郝兆祥, 刘康佳, 等. 基于石榴全基因组序列的SSR标记开发及鉴定[J]. 北京林业大学学报, 2019, 41(8):38-47. |
HONG W J, HAO Z X, LIU K J, et al. Development and identification of SSR molecular markers based on whole genomic sequences of Punica granatum[J]. J Beijing For Univ, 2019, 41(8):38-47.DOI: 10.13332/j.1000-1522.20190167.
doi: 10.13332/j.1000-1522.20190167 |
|
[5] |
HASNAOUI N, BUONAMICI A, SEBASTIANI F, et al. Molecular genetic diversity of Punica granatum L.(pomegranate) as revealed by microsatellite DNA markers (SSR)[J]. Gene, 2012, 493(1):105-112.DOI: 10.1016/j.gene.2011.11.012.
doi: 10.1016/j.gene.2011.11.012 |
[6] |
LUO X, CAO S Y, HAO Z X, et al. Analysis of genetic structure in a large sample of pomegranate (Punica granatum L.) using fluorescent SSR markers[J]. J Hortic Sci Biotechnol, 2018, 93(6):659-665.DOI: 10.1080/14620316.2018.1432994.
doi: 10.1080/14620316.2018.1432994 |
[7] | 胡颂杰. 西藏农业概论[M]. 成都: 四川科学技术出版社, 1995:500-503. |
HU S J. An introduction to agriculture of Tibet[M]. Chengdu: Sichuan Science and Technology Publishing House, 1995:500-503. | |
[8] | 段盛烺, 宗学普, 刘效义, 等. 西藏果树资源考察初报[J]. 园艺学报, 1983, 10(4):217-224. |
DUAN S L, ZONG X P, LIU X Y, et al. Preliminary report on the fruit germplasm resources in the autonomous region of Xizang[J]. Acta Hortic Sin, 1983, 10(4):217-224. | |
[9] | 李乡旺, 毛品一, 尹秉高, 等. 西藏古树的初步研究[J]. 西南林学院学报, 1991, 11(2):134-138. |
LI X W, MAO P Y, YIN B G, et al. A preliminary study on ancient trees of Tibet[J]. J Southwest For Coll, 1991, 11(2):134-138. | |
[10] | 曹尚银, 李好先, 郝兆祥. 中国石榴地方品种图志[M]. 北京: 中国林业出版社, 2018. |
CAO S Y, LI H X, HAO Z X. Chinese local varieties of pomegranate map[M]. Beijing: China Forestry Publishing House, 2018. | |
[11] |
AZIZ S, FIRDOUS S, RAHMAN H, et al. Genetic diversity among wild pomegranate (Punica granatum) in Azad Jammu and Kashmir region of Pakistan[J]. Electron J Biotechnol, 2020, 46:50-54.DOI: 10.1016/j.ejbt.2020.06.002.
doi: 10.1016/j.ejbt.2020.06.002 |
[12] |
KHADIVI A, MIRHEIDARI F, MORADI Y, et al. Morphological variability of wild pomegranate (Punica granatum L.) accessions from natural habitats in the Northern parts of Iran[J]. Sci Hortic, 2020, 264:109165.DOI: 10.1016/j.scienta.2019.109165.
doi: 10.1016/j.scienta.2019.109165 |
[13] |
MAHAJAN R, JAVED A, KAPOOR N. Characterization of genetic diversity of wild pomegranate collected from Himachal Pradesh,India[J]. Ann Pl Sci, 2018, 7(2):2042.DOI: 10.21746/aps.2018.7.2.10.
doi: 10.21746/aps.2018.7.2.10 |
[14] |
ÇALIŞKAN O, BAYAZIT S, ÖKTEM M, et al. Evaluation of the genetic diversity of pomegranate accessions from Turkey using new microsatellite markers[J]. Turk J Agric For, 2017, 41:142-153.DOI: 10.3906/tar-1606-124.
doi: 10.3906/tar-1606-124 |
[15] |
PEAKALL R, SMOUSE P E. GenAlEx 6.5:Genetic analysis in excel.population genetic software for teaching and research:an update[J]. Bioinformatics, 2012, 28(19):2537-2539.DOI: 10.1093/bioinformatics/bts460.
doi: 10.1093/bioinformatics/bts460 |
[16] |
EXCOFFIER L, LISCHER H E L. Arlequin suite ver 3.5:a new series of programs to perform population genetics analyses under Linux and Windows[J]. Mol Ecol Resour, 2010, 10(3):564-567.DOI: 10.1111/j.1755-0998.2010.02847.x.
doi: 10.1111/j.1755-0998.2010.02847.x. |
[17] |
LIU K J, MUSE S V. PowerMarker:an integrated analysis environment for genetic marker analysis[J]. Bioinformatics, 2005, 21(9):2128-2129.DOI: 10.1093/bioinformatics/bti282.
doi: 10.1093/bioinformatics/bti282 |
[18] |
LETUNIC I, BORK P. Interactive Tree Of Life (iTOL) v4:recent updates and new developments[J]. Nucleic Acids Res, 2019, 47(1):256-259.DOI: 10.1093/nar/gkz239.
doi: 10.1093/nar/gkz239 |
[19] |
PRITCHARD J K, STEPHENS M, DONNELLY P. Inference of population structure using multilocus genotype data[J]. Genetics, 2000, 155(2):945-959.DOI: 10.1093/genetics/155.2.945.
doi: 10.1093/genetics/155.2.945 |
[20] |
EARL D A, VONHOLDT B M. STRUCTURE HARVESTER:A website and program for visualizing Structure output and implementing the Evanno method[J]. Conserv Genet Resour, 2012, 4(2):359-361.DOI: 10.1007/s12686-011-9548-7.
doi: 10.1007/s12686-011-9548-7 |
[21] |
JAKOBSSON M, ROSENBERG N A. CLUMPP:a cluster matching and permutation program for dealing with label switching and multimodality in analysis of population structure[J]. Bioinformatics, 2007, 23(14):1801-1806.DOI: 10.1093/bioinformatics/btm233.
doi: 10.1093/bioinformatics/btm233 |
[22] |
ROSENBERG N A. Distruct:a program for the graphical display of population structure[J]. Mol Ecol Notes, 2004, 4(1):137-138.DOI: 10.1046/j.1471-8286.2003.00566.x.
doi: 10.1046/j.1471-8286.2003.00566.x. |
[23] |
EVANNO G, REGNAUT S, GOUDET J. Detecting the number of clusters of individuals using the software sturcture: a simulation study[J]. Mol Ecol, 2005, 14(8):2611-2620.DOI: 10.1111/j.1365-294X.2005.02553.x.
doi: 10.1111/j.1365-294X.2005.02553.x. |
[24] | BOTSTEIN D, WHITE R L, SKOLNICK M, et al. Construction of a genetic linkage map in man using restriction fragment length polymorphisms[J]. Am J Hum Genet, 1980, 32(3):314-331. |
[25] | 陈芸, 王继莲, 丁晓丽, 等. 新疆石榴种质资源遗传多样性的SRAP分析[J]. 西北植物学报, 2016, 36(5):916-922. |
CHEN Y, WANG J L, DING X L, et al. Genetic diversity of germplasm collection of pomegranate in Xinjiang using SRAP markers[J]. Acta Bot Boreali Occidentalia Sin, 2016, 36(5):916-922.DOI: 10.7606/j.issn.1000-4025.2016.05.0916.
doi: 10.7606/j.issn.1000-4025.2016.05.0916 |
|
[26] | 马丽, 王庆军, 罗华, 等. 枣庄石榴种质资源遗传多样性的ISSR分析[J]. 北方园艺, 2018(24):35-40. |
MA L, WANG Q J, LUO H, et al. Genetic diversity analysis of pomegranate germplasm resources from Zaozhuang by ISSR markers[J]. North Hortic, 2018(24):35-40.DOI: 10.11937/bfyy.20181599.
doi: 10.11937/bfyy.20181599 |
|
[27] | FRANKHAM R, BALLOU J D, BRISCOE D A. A primer of conservation genetics[M]. Cambridge: Cambridge University Press, 2004:52-75. |
[28] | 赵丽华. 中国石榴居群遗传结构的ISSR分析[J]. 北方园艺, 2011(10):103-107. |
ZHAO L H. Population genetics structure of pomegranate Punica granatum L. revealed by ISSR markers in China[J]. North Hortic, 2011(10):103-107. | |
[29] | 赵丽华, 李名扬, 王先磊. 川滇石榴品种遗传多样性及亲缘关系的AFLP分析[J]. 林业科学, 2010, 46(11):168-173. |
ZHAO L H, LI M Y, WANG X L. Genetic diversity and genetic relationship of pomegranate(Punica granatum)in Sichuan and Yunnan evaluated by AFLP markers[J]. Sci Silvae Sin, 2010, 46(11):168-173. | |
[30] | 王庆军, 罗华, 赵丽娜, 等. 24个山东石榴品种遗传多样性的ISSR分析[J]. 中国果树, 2018(2):18-22. |
WANG Q J, LUO H, ZHAO L N, et al. Genetic diversity analysis of 24 pomegranate cultivars in Shandong by ISSR markers[J]. China Fruits, 2018(2):18-22.DOI: 10.16626/j.cnki.issn1000-8047.2018.02.005.
doi: 10.16626/j.cnki.issn1000-8047.2018.02.005 |
|
[31] | 李菁, 张小飞, 陈珏屹, 等. 基于ISSR分子标记的西藏杓兰种群遗传多样性分析[J]. 西北植物学报, 2020, 40(6):969-977. |
LI J, ZHANG X F, CHEN J Y, et al. Genetic diversity of Cypripedium tibeticum populations revealed by ISSR analysis[J]. Acta Bot Boreali Occidentalia Sin, 2020, 40(6):969-977.DOI: 10.7606/j.issn.1000-4025.2020.06.0969.
doi: 10.7606/j.issn.1000-4025.2020.06.0969 |
|
[32] | 叶兴状, 张明珠, 刘益鹏, 等. 基于SRAP标记半枫荷天然种群的遗传多样性分析[J]. 植物资源与环境学报, 2021, 30(4):60-68. |
YE X Z, ZHANG M Z, LIU Y P, et al. Analysis on genetic diversity of natural populations of Semiliquidambar cathayensis based on SRAP marker[J]. J Plant Resour Environ, 2021, 30(4):60-68. DOI: 10.3969 /j.issn.1674-7895.2021.04.07.
doi: 10.3969 /j.issn.1674-7895.2021.04.07 |
|
[33] | 刘硕, VERONIQUE D, 张玉军, 等. 普通杏和西伯利亚杏野生居群遗传多样性与其地理分布关系研究[J]. 植物遗传资源学报, 2020, 21(6):1527-1538. |
LIU S, VERONIQUE D, ZHANG Y J, et al. Study on the relationship between genetic diversity and geographical distribution of wild common apricots and Siberian apricots[J]. J Plant Genet Resour, 2020, 21(6):1527-1538.DOI: 10.13430/j.cnki.jpgr.20200417001.
doi: 10.13430/j.cnki.jpgr.20200417001 |
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