关键词:玉米; InDel; 多重PCR Establishment of Multiplex PCR System with 20 Pairs of InDel Markers in Maize FENG Bo1,2,**, XU Li-Wen1,**, WANG Feng-Ge1,*, XUE Ning-Ning1, LIU Wen-Bin1,2, YI Hong-Mei1, TIAN Hong-Li1, LYU Yuan-Da3, ZHAO Han3, JIN Shi-Qiao4, ZHANG Li-Ke4, YU Rong-Hai2, ZHAO Jiu-Ran1 1Maize Research Center, Beijing Academy of Agriculture & Forestry Sciences / Beijing Key Laboratory of Maize DNA Fingerprinting and Molecular Breeding, Beijing 100097, China
2Faculty of Agronomy, Jilin Agricultural University, Changchun 130118, China
3Provincial Key Laboratory of Agrobiology, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China
4 National Agricultural Technical Extension and Service Center, Beijing 100125, China
Fund:This study was supported by the National Science and Technology Project from the Ministry of Science and Technology of China (2015BAD02B02), and the Science and Technology Innovation Special Project of Beijing Academy of Agriculture and Forestry Sciences (KJCX20161501) AbstractIn order to improve the detection efficiency with molecular marker, the multiple PCR detection system was constructed. In this study, 10 major materials were used to evaluate the single pair PCR with 238 pairs of InDel primers. According to the software quality evaluation results, product range, and the principle of chromosome uniform distribution, 30 pairs of primers were selected from 192 primers with better performance to form two groups of core primer combinations with amplified products in the range of 80-200 bp and 200-400 bp, There were 10 pairs of primers distributing in different chromosomes for each primer combination. Based on core primer combination and comprehensive consideration on chromosome distribution, base fragment, and primers fluorescent color, we established two groups of corn test 20 PCR system and a group of 40 fluorescent capillary electrophoresis.
图1 郑单958的10重核心引物扩增结果图Fig. 1 Amplification results of 10 core primers of Zhengdan 958
表3 Table 3 表3(Table 3)
表3 20对引物基本信息 Table 3 Basic information of 20 primers
引物名称 Primer name
荧光颜色 Fluorescent color
染色体 Chromosome
等位基因 Allelic gene
IDP238
FAM
7
(84, 88)
IDP201
NED
1
(87, 90)
IDP214
VIC
2
(88, 91)
IDP052
FAM
3
(102, 107)
IDP147
NED
7
(103, 108)
IDP154
PET
9
(103, 106)
IDP117
VIC
1
(120, 126)
IDP145
PET
7
(126, 130)
IDP065
FAM
5
(133, 137)
IDP032
NED
2
(136, 145)
IDP054
PET
3
(141, 150)
IDP104
VIC
8
(141, 147)
IDP063
FAM
4
(153, 157)
IDP181
PET
10
(159, 164)
IDP062
VIC
4
(164, 168)
IDP079
NED
5
(165, 172)
IDP161
PET
6
(174, 180)
IDP348
NED
10
(186, 190)
IDP191
VIC
6
(187, 191)
IDP151
FAM
8
(196, 199)
The bold represent 10 core primers. FAM is blue-fluorescence, NED is black-fluorescence, VIC is green-fluorescence, and PET is red-fluorescence (Foreign synthesis). 加粗部分为10个核心引物。FAM为蓝色荧光, NED为黑色荧光, VIC为绿色荧光, PET为红色荧光(国外合成)。
表3 20对引物基本信息 Table 3 Basic information of 20 primers
Chambercian JS, Gibbs RA, Ranier JE, Nguyen PN, Caskey CT. Detection screening of the duchenne muscular dystrophy locus via mutiplex DNA amplification. , 1988, 16: 11141-11156[本文引用:1]
[2]
MullisK, FaloonaF, ScharfS, SaikiR, HornG, ErlichH. Specific amplification of DNA in vitro: the polymerase chain reaction. , 1986, 51: 263-273[本文引用:1]
[3]
王稳, 屈武斌, 申志勇, 任长虹, 刘虎岐, 张成岗. 利用MP primer设计引物并优化扩增条件以提高多重PCR效率的实验研究. , 2010, 37: 342-346WangW, Qu WB, Shen ZY, Ren CH, Liu HQ, Zhang CG. Using MP primer to design primers and optimize the amplification conditions in order to improve the efficiency of multiple PCR. , 2010, 37: 342-346 (in Chinese with English abstract)[本文引用:1]
[4]
蔡颖, 周广彪, 赵书民, 陈文婉, 陈其生, 许如苏, 梁希扬. 中国人群亲权鉴定常用STR基因座平均突变率的估计. , 2010, (5): 56-59CaiY, Zhou GB, Zhao SM, Chen WW, Chen QS, Xu RS, Liang XY. Estimation of average mutation rates of routine STR loci in Parentage testing. , 2010, (5): 56-59 (in Chinese with English abstract)[本文引用:1]
[5]
Hill CR, Butler JM, Vallone PM. A 26plex autosomal STR assay to aid human identity testing. , 2009, 54: 1008-1015[本文引用:1]
[6]
王凤格, 赵久然, 戴景瑞, 易红梅, 匡猛, 孙艳美, 于新艳, 郭景伦, 王璐. 玉米通用SSR核心引物筛选及高通量多重PCR复合扩增体系建立. , 2006, 51: 2738-2746Wang FG, Zhao JR, Dai JR, Yi HM, KuangM, Sun YM, Yu XY, Guo JL, WangL. Screening of core SSR primers and establishment of high throughput multiplex PCR amplification system in maize. , 2006, 51: 2738-2746 (in Chinese)[本文引用:1]
[7]
张体付, 葛敏, 韦玉才, 赵涵. 玉米功能性Insertion/Deletion (InDel)分子标记的挖掘及其在杂交种纯度鉴定中的应用. , 2012, 20(2): 64-68Zhang TF, GeM, Wei YC, ZhaoH. Molecular marker of functional Insertion/Deletion(InDel) in maize and its application in hybrid seed purity identification. , 2012, 20(2): 64-68 (in Chinese with English abstract)[本文引用:1]
[8]
PereiraR, PhillipsC, AlvesC, AmorimA, CarracedoA, GusmãoL. A new multiplex for human identification using insertion/ deletion polymorphisms. , 2009, 30: 3682-3690[本文引用:1]
[9]
孙宽, 张素华, 朱如心, 赵书民, 李成涛. 新一代遗传标记——InDel研究进展. , 2013, 29: 134-143SunK, Zhang SH, Zhao SM, Li CT. Progress in InDel as a new generation of genetic marker. , 2013, 29: 134-143 (in Chinese with English abstract)[本文引用:1]
[10]
Pimenta JR, Pena S D J. Efficient human paternity testing with a panel of 40 short insertion-deletion polymorphisms. , 2010, 9: 601-607[本文引用:1]
[11]
Santos N PC, Ribeiro-Rodrigues EM, Ribeiro-dos-Santos A KC, PereiraR, GusmãoL, AmorimA, Guerreiro JF, Zago MA, MatteC, Hutz MH, Santos S EB. Assessing individual interethnic admixture and population substructure using a 48-Insertion- Deletion (INSEL) ancestry-informative marker (AIM) panel. , 2010, 31: 184-190[本文引用:1]
[12]
王凤格, 赵久然, 郭景伦, 陈刚, 廖琴, 孙世贤, 陈如明. 中国玉米新品种DNA指纹库建立系列研究: III. 多重PCR技术在玉米SSR引物扩增中的应用. , 2003, 11(4): 3-6Wang FG, Zhao JR, Guo JL, ChenG, LiaoQ, Sun SX, Chen RM. A series of studies on the establishment of DNA fingerprinting database of new maize varieties in China: III. The application of multiplex PCR technique in the amplification of maize SSR primers. , 2003, 11(4): 3-6 (in Chinese with English abstract)[本文引用:1]
[13]
LiuJ, Qu JT, YangC, Tang DG, Li JW, LanH, Rong TZ. Development of genome-wide insertion and deletion markers for maize, based on next-generation sequencing data. , 2015, 16: 601[本文引用:1]
[14]
王凤格, 赵久然. . 北京: 中国农业科学技术出版社, 2011. pp 136-145Wang FG, Zhao JR. Beijing: China Agricultural Science and Technology Press, 2011. pp 136-145(in Chinese)[本文引用:1]
[15]
ChingA, Caldwell KS, JungM, DolanM, Smith OS, TingeyS, MorganteM, Rafalski AJ. SNP frequency haplotype structure and linkage disequilibrium in elite maize inbred lines. , 2002, 3: 19[本文引用:1]
[16]
Bhangale TR, Rieder MJ, Livingston RJ, Nickerson DA. Comprehensive identification and characterization of diallelic insertion-deletion polymorphisms in 330 human cand idate genes. , 2005, 14: 59-69[本文引用:1]
[17]
王建康, 李慧慧, 张学才, 尹长斌, 黎裕, 马有志, 李新海, 邱丽娟, 万建民. 中国作物分子设计育种. , 2011, 37: 191-201Wang JK, Li HH, Zhang XC, Yin CB, LiY, Ma YZ, Li XH, Qiu LJ, Wan JM. Crop molecular design breeding in China. , 2011, 37: 191-201 (in Chinese with English abstract)[本文引用:1]