期刊文献+

牙鲆(Paralichthys olivaceus)丝氨酸蛋白酶Ⅰ-1基因多态性 被引量:2

The Polymorphism of Serine Protease I-1 in Japanese Flounder(Paralichthys olivaceus)
下载PDF
导出
摘要 采用重测序方法,利用牙鲆(Paralichthys olivaceus)野生个体,扩增了牙鲆丝氨酸蛋白酶(Serine protease)I-1基因的编码区(CDS)和2605 bp的启动子序列。在牙鲆丝氨酸蛋白酶I-1基因(Po SP I-1)编码区中筛选出9个单核苷酸多态性位点(SNPs),同时在其启动子区筛选出28个SNP位点。对感染鳗弧菌的抗病牙鲆和易感牙鲆进行了部分SNP位点的分型,通过分析CDS中SNP位点的分布情况,发现SNP365A/G位点在抗病个体中的AG基因型的基因频率是60%,高于易感个体的40%(P=0.01)。q RT-PCR结果显示,易感个体在细菌感染后,Po SP I-1相对表达量相比对照组呈下降趋势。在抗病个体中,Po SP I-1相对表达量相比对照组呈上升趋势,且高于易感个体。结果表明,丝氨酸蛋白酶基因在牙鲆抗鳗弧菌感染中发挥重要作用,该基因的SNP365A/G位点是与牙鲆鳗弧菌感染相关的候选位点,该位点可作为牙鲆抗鳗弧菌选择育种的潜在标记。 Serine proteases are enzymes that have serine, histidine and aspartic acid in their active domain and same catalytic mechanisms, which play important roles in many diseases and intracellular signal transduction. In this study, we amplified the coding sequence and promoter sequence (2605 bp) of serine protease I-1 from Japanese flounderParalichthys olivaceus (PoSPI-1). We identified 9 single nucleotide polymorphisms (SNPs) and 28 SNPs in the coding sequence and promoter sequence ofPoSP I-1, respectively. The analysis of all SNPs indicated that the frequency of SNP365A/G in the coding sequence ofPoSPI-1is significantly different between the resistant group (60%) and the susceptible group (40%) (P=0.01).Vibrio anguillaruminjection reduced the expression ofPoSPI-1 in the susceptible individuals but induced its expression in the resistant individuals. Moreover,PoSPI-1 in the resistant individuals is higher than that in the susceptible individuals. These results implied thatPoSPI-1 is involved in the resistance of Japanese flounder toV. anguillarum. 365A/G ofPoSPI-1is a potential marker associated with the resistant Japanese flounders. In conclusion, PoSPI-1 365A/G is a candidate marker that could apply to disease resistant selective-breeding of Japanese flounder in the future.
出处 《渔业科学进展》 CSCD 北大核心 2015年第5期55-62,共8页 Progress in Fishery Sciences
基金 国家自然科学基金青年科学基金(31101891)资助
关键词 丝氨酸蛋白酶基因 牙鲆 鳗弧菌 多态性 Serine protease Japanese flounder Vibrio anguillarum Polymorphism
  • 相关文献

参考文献10

  • 1于大国,张宗伟,孙永昌.牙鲆仔鱼肠道白浊病及防治[J].中国水产,1998(1):42-42. 被引量:3
  • 2曲凌云,孙修勤,张进兴.养殖牙鲆淋巴囊肿病的电镜观察[J].中国海洋大学学报(自然科学版),2000,33(z1). 被引量:7
  • 3张全启,徐晓斐,齐洁,王兴莲,包振民.牙鲆野生群体与养殖群体的遗传多样性分析[J].中国海洋大学学报(自然科学版),2004,34(5):816-820. 被引量:56
  • 4Budayova-Spano M, Lacroix M, Thielens NM, et al. The crystal structure of the zymogen catalytic domain of complement protease Clr reveals that a disruptive mechanical stress is required to trigger activation of the C1 complex. EMBO J, 2002, 21(3): 231-239.
  • 5Li L, Zhao JM, Wang LL, et al. Genomic organization, polymorphisms and molecular evolution of the goose-type lysozyme gene from Zhikong scallop Chlamysfarreri. Gene, 2013, 513(1): 40-52.
  • 6Wan QY, Su JG, Chen XH, et al. Genomic sequence comparison, promoter activity, SNP detection of RIG-lgene and asso- ciation with resistance/susceptibility to grass carp reovirus in grass carp (Ctenopharyngodon idella). Dev Comp Imm- unol, 2013a, 39(4): 333-342.
  • 7Wan QY, Wang L, Su JG, et al. Genetic structure, polymorphism identification of LGP2 gene and their relationship with the resistance/susceptibility to GCRV in grass carp, Ctenoph- aryngodon idella. Gene, 2013b, 521(1): 166-175.
  • 8Wang L, Su JG, Peng LM, et al. Genomic structure of grass carp Mx2 and the association of its polymorphisms with sus- ceptibility/resistance to grass carp reovirus. Mol Immunol, 2011, 49(1-2): 359-366.
  • 9Xu T J, Chen SL, Ji XS, et al. MHC polymorphism and disease resistance to Vibrio anguillarum in 12 selective Japanese flounder (Paralichthys olivaceus) families. Fish Shellfish Immunol, 2008, 25(3): 213-221.
  • 10Zhong QW, Zhang QQ, Wang ZG, et al. Expression profiling and validation of potential reference genes during paralichthy- solivaceus embryogenesis. Mar Biotechnol, 2008, 10(3): 310-318.

二级参考文献16

  • 11,Walker R, Weissenberg R.Conformity of light and electron micr oscopic studies on virus particle distribution in lymphocystis tumor cells of fi sh. [J] Ann N Y Acad Sci ,1965,126:375~378
  • 22,Lawler A R, Howse H D and Cook D W. Silver perch Bairdiella chry sura: a new host for lymphocystis. [J] Copeia, 1965, 266~269
  • 33,Kinne O. Ch. Diseases of Pisces. Lymphocystis disease. [A] ln: Kinne O ed . Diseases of marine animals. [M] 1984,5(1):20~23
  • 4Sunden S L F,Davis S K.Evaluation of genetic variation in a domestic population of Penaeus.annamei Boone:a comparison with three natural populations [J].Aquaculture,1991,97:131-142.
  • 5Wolfus G,Garcia D K,Alcivar-Warren A.Application of the microsatellite technique for analyzing genetic diversity in shrimp breeding programs [J].Aquaculture,1997,152:35-47.
  • 6Allendorf F W,Phelps S R.Loss of genetic variation in a hatchery stock of cutthroat trout.Trans [J].Am Fish Soc,1980,109:537- 543.
  • 7Vos P,Hogers R,Bleeker M,et al.AFLP:A new technique for DNA fingerprinting [J].Nucleic Acids Research,1995,23(21):4490-4414.
  • 8Qi X,Lindhout P.Development of AFLP markers in barley [J].Molecular and General Genetics,1997,254:330-336.
  • 9Nei M,Li W H.Mathematics model for studying genetic variation in terms of restriction endonucleases [J].Proc Natl Acad Sci,1979,76:5296-5273.
  • 10Wachira F H,Waugh R,Hackett C A,et al.Detection of genetic diversity in tea(Camellia sinensis) using RAPD markers [J].Genome,1995,38:20l-210.

共引文献62

同被引文献20

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部