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作 者:梁成刚[1] 陈晴晴[1] 石桃雄[1] 陈其皎[1] 孟子烨[1] 陈庆富[1]
机构地区:[1]贵州师范大学荞麦产业技术研究中心/贵州省荞麦工程技术研究中心,贵州贵阳550001
出 处:《华南农业大学学报》2016年第4期90-96,共7页Journal of South China Agricultural University
基 金:国家自然科学基金(31471562;31171609);国家燕麦荞麦现代农业产业技术体系专项(CARS-08-A4);贵州省高层次创新型人才培养对象十百千计划(2014GZ97588);贵州省荞麦工程技术研究中心项目(黔科合农G字【2015】4003号)
摘 要:【目的】比较普通荞麦Fagopyrum esculentum种内丝裂原活化蛋白激酶基因(MAPK)序列的差异,研究MAPK基因序列在普通荞麦栽培进化过程中的变化。【方法】以普通荞麦的9个栽培品种和3个落花落果野生种质为材料,PCR特异性扩增获得MAPK基因的保守片段,对基因片段序列进行差异分析和蛋白结构预测。【结果】荞麦MAPK基因cDNA全长为2 835 bp,开放阅读框1 827 bp,编码609个氨基酸,含有TDY的三肽模块,为植物D组MAPK蛋白。PCR扩增获得12个供试材料的MAPK序列,其单型不变位点为723个,多态位点为70个。9个栽培品种间开放阅读框(ORF)区域无序列差异,3个野生种质间ORF区域也无序列差异。栽培品种与野生品种的ORF区域序列含有8个差异位点,编码3个差异氨基酸。其中,ORF区域第13位点组氨酸(H)→酪氨酸(Y)发生置换,导致1个α-螺旋构象发生变化。【结论】普通荞麦MAPK基因序列高度保守,栽培驯化对ORF区域第13位点差异氨基酸的选择具有高度一致性。【Objective 】To identify the difference of mitogen-activated protein kinase gene( MAPK)sequences among intraspecific common buckwheat,Fagopyrum esculentum,and study the sequence change during the chronical domestication process. 【Method】The common buckwheat varieties,containing nine cultivars and three wild types with shattering habit,were selected for PCR amplification of the conservative fragments of MAPK gene. Sequences were analyzed and protein conformations were predicted. 【Result】The full length of buckwheat MAPK c DNA was 2 835 bp,the length of the open readling frame( ORF) was 1 827 bp,and 609 amino acids containing the TDY tripeptide module were encoded.The buckwheat MARK belonged to the group D of plant MARK proteins. A total of 723 invariable sites and 70 polymorphic sites in MAPK sequence of common buckwheat were identified in 12 tested materials.We did not find difference among the ORF sequences of nine cultivars,neither among three wild types.There were eight differential nucleotides in the ORF of MAPK gene which encoded three amino acid poly-morphisms between the cultivars and wild types. We found a change of α-helix conformation which was induced by transforming histidine( H) to tyrosine( Y) at the 13 th site in the ORF of MARK. 【Conclusion】The MAPK sequence is highly conserved and the 13 th amino acid site has been highly consistently selected during the chronical process of domestication.
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