期刊文献+

植原体tuf基因与其上游部分基因结构和相关基因启动子保守区域特征及活性分析

Structures of the tuf gene and its upstream part genes and characteristic analysis of conserved regions and activity from related gene promoters of a phytoplasma
原文传递
导出
摘要 植原体寄主种类多,危害范围广,开展其遗传多样性、关键基因调控等方面研究有助于提高该病害综合防治水平。通过长片段PCR引物扩增我国PaWB-sdyz、PaWB-fjfz和LY-fjya1植原体株系tuf基因及其上游6个基因的片段,进行植原体基因启动子保守区域序列特征和多位点序列分析。利用启动子探针载体p SUPV4检测植原体tuf基因上游序列的启动子活性。扩增获得PaWB-sdyz、PaWB-fjfz、LY-fjya1株系tuf基因上游12,745–12,748 bp序列,比较分析发现Pa WB-sdyz、Pa WB-fjfz、LY-fjya1、OY-M、AYWB、PAa、SLY、AT植原体株系tuf与其上游6个基因的结构顺序皆为5’-rpl L-rpo B-rpo C-rps12-rps7-fus A-tuf-3’。推测出可能的植原体启动子保守区域模式序列:T_(90)T_(100)G_(92)T_(75)G_(67)A_(85)(-35区);T_(90)A_(96)T_(92)A_(98)T_(73)T_(90)(-10区)。基于8个植原体株系的rpl L-tuf核苷酸序列编码基因、非编码序列、氨基酸序列的多位点序列分析可将不同植原体株系以较高的支持率清晰地区分,不同植原体株系rpl L-tuf核苷酸非编码区变异水平更高。16SrI组植原体tuf基因上游序列存在3种变异类型,其代表株系PaWB-fjfz、LY-fjya1tuf基因上游130 bp片段和CWB-hnsy1 tuf基因上游129 bp片段皆具有启动子活性。 Studies on the genetic diversity,key gene regulation and control of phytoplasma,which cause many diseases with various host plants and have a wide geographical distribution,will be conducive to facilitating integrated disease control.The large DNA fragments including tuf gene sequences and upstream six genes from Pa WB-sdyz,Pa WB-fjfz and LY-fjya1 strains were amplified using long fragment PCR primers.Sequence characteristic of conserved regions of the phytoplasma gene promoter and MLSA were performed.Upstream sequences adjoining the tuf gene was recombined with promoter-probe vector p SUPV4 to analyze their promoter activity.The sequences,12,745–12,748 bp in length,of upstream tuf genes were amplified from the three strains.Comparative analysis showed that the gene structure order of the tuf gene and its upstream six gene sequences of Pa WB-sdyz,Pa WB-fjfz,LY-fjya1,OY-M,AYWB,PAa,SLY,AT phytoplasma strains were identical in the arrangement of 5’-rpl L-rpo B-rpo C-rps12-rps7-fus A-tuf-3’.The potential sequence pattern of conserved region of the phytoplasma promoter was deduced:T90T100G92T75G67A85(–35 region);T90A96T92A98T73T90(–10 region).The different phytoplasma strains were clearly divided with comparatively high bootstrap values based on MLSA of coding genes,non-coding sequences,and deduced amino acid sequences of rpl L-tuf nucleotide sequences.Genetic variation was comparatively high in the non-coding nucleotide sequences.A 130-bp upstream sequence of the tuf gene in Pa WB-fjfz,LY-fjya1 strains and a129-bp upstream sequence of the tuf gene in CWB-hnsy1 strain,and three representative strains of three variation types of upstream sequences adjoining the tuf gene from 16Sr I group,were tested for promoter activity.
作者 于少帅 林彩丽 王圣洁 张文鑫 田国忠 Shaoshuai Yu;Caili Lin;Shengjie Wang;Wenxin Zhang;Guozhong(Tian Key Laboratory of Forest Protection of State Forestry Administration,Research Institute of Forest Ecology,Environment and Protection,Chinese Academy of Forestry,Beijing 100091)
出处 《生物多样性》 CAS CSCD 北大核心 2018年第7期738-748,共11页 Biodiversity Science
基金 国家自然科学基金(31370644)
关键词 植原体 启动子 基因结构 遗传多样性 多位点序列分析 phytoplasma promoter gene structure genetic diversity multilocus sequence analysis
  • 相关文献

参考文献2

二级参考文献99

  • 1潘皎,张义正.枯草芽孢杆菌基因启动子的分离与鉴定[J].微生物学报,2004,44(4):457-460. 被引量:6
  • 2李永,田国忠,朴春根,朱水芳.我国几种植物植原体的快速分子鉴别与鉴定的研究[J].植物病理学报,2005,35(4):293-299. 被引量:33
  • 3Sugio A, Hogenhout SA. The genome biology of phytoplasma: modulators of plants and insects[J]. Current Opinion in Microbiology, 2012, 15(3): 247-254.
  • 4Turner P, Mclennan A, Bates A, et al. Instant Notes Molecular Biology[M]. 3rd Edition. Abingdon: Taylor & Francis Group, 2005.
  • 5Palmano S, Kirkpatrick BC, Firrao G. Expression of chloramphenicol acetyltransferase in Bacillus subtilis under the control of a phytoplasma promoter[J]. FEMS Microbiology Letters, 2001, 199(2): 177-179.
  • 6Ishii Y, Kakizawa S, Hoshi A, et al. In the non-insect-transmissible line of onion yellows phytoplasma (OY-NIM), the plasmid-encoded transmembrane protein ORF3 lacks the major promoter region[J]. Microbiology, 2009, 155(6): 2058-2067.
  • 70shima K, Kakizawa S, Nishigawa H, et al. Reductiveevolution suggested from the complete genome sequence of a plant-pathogenic phytoplasma[J]. Nature Genetics, 2004, 36(1): 27-29.
  • 8Schneider B, Gibb KS, Seemiiller E. Sequence and RFLP analysis of the elongation factor Tu gene used in differentiation and classification of phytoplasmas[J]. Microbiology, 1997, 143(10): 3381-3389.
  • 9Koui T, Natsuaki T, Okuda S. Phylogenetic analysis of elongation factor Tu gene of phytoplasmas from Japan[J]. Journal of General Plant Pathology, 2003, 69(5): 316-319.
  • 10Malembic-Maher S, Salar P, Filippin L, et al. Genetic diversity of European phytoplasmas of the 16SrV taxonomic group and proposal of 'Candidatus Phytoplasma rubi'[J]. International Journal of Systematic and Evolutionary Microbiology, 2011, 61(9): 2129-2134.

共引文献8

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