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猬草及其近缘属植物单拷贝核Pgk1基因序列的系统发育分析
引用本文:凡星,廖莎,沙莉娜,刘静,王晓丽,周永红.猬草及其近缘属植物单拷贝核Pgk1基因序列的系统发育分析[J].遗传,2009,31(10):1049-1058.
作者姓名:凡星  廖莎  沙莉娜  刘静  王晓丽  周永红
作者单位:1. 四川农业大学成都科学研究院小麦研究所, 温江 611130;2. 四川农业大学作物基因资源与遗传改良教育部重点实验室, 雅安 625014;3. 四川农业大学生命科学与理学院, 雅安 625014 ;
基金项目:国家自然科学基金项目,四川农业大学优秀博士论文培育基金项目,四川省教育厅项目资助 
摘    要:文章对禾本科小麦族猬草属及其近缘属Thinopyrum(Eb)、Lophopyrum(Ee)、拟鹅观草属(St)、新麦草属(Ns)、大麦属(H)、赖草属(NsXm)和披碱草属(StH)植物共23个类群的单拷贝核Pgk1基因序列进行系统发育分析, 探讨猬草属及其近缘属植物的系统发育关系。序列分析发现Pgk1基因序列在L. arenarius和Psa. juncea中有81 bp的Stowaway家族DNA转座元件插入, 而在Hy. duthiei、Hy. duthiei ssp. longearistata和L. akmolinensis中有29 bp Copia家族的反转录转座元件插入。最大似然和贝叶斯推断进行的系统发育分析表明: (1)猬草属模式种Hy. patula与披碱草属、拟鹅观草属和大麦属具有密切的亲缘关系; (2)猬草属的其他物种Hy. duthiei、Hy. duthiei ssp. longearistata、Hy. coreana和Hy. komarovii与新麦草属和赖草属植物亲缘关系密切。研究结果支持将Hy. patula从猬草属组合到披碱草属中, 而Hy. duthiei、Hy. duthiei ssp. longearistata、Hy. coreana和Hy. komarovii应组合到赖草属中。

关 键 词:Pgk1基因  猬草属  赖草属  基因组  系统发育  
收稿时间:2009-02-08
修稿时间:2009-04-01

Phylogenetic analysis of Hystrix and its related genera (Poaceae:Triticeae) based on the sequences of the gene encoding 3-phosphoglycerate kinase
FAN Xing,LIAO Sha,SHA Li-Na,LIU Jing,WANG Xiao-Li,ZHOU Yong-Hong.Phylogenetic analysis of Hystrix and its related genera (Poaceae:Triticeae) based on the sequences of the gene encoding 3-phosphoglycerate kinase[J].Hereditas,2009,31(10):1049-1058.
Authors:FAN Xing  LIAO Sha  SHA Li-Na  LIU Jing  WANG Xiao-Li  ZHOU Yong-Hong
Institution:1. Triticeae Research Institute, Chengdu Academy of Sciences, Sichuan Agricultural University, Wenjiang 611130, China; 2. Key Laboratory of Crop Genetic Resources and Improvement, Ministry of Education, Sichuan Agricultural University, Ya’an 625014, China;3. College of Biology and Science, Sichuan Agricultural University, Ya’an 625014, China ;
Abstract:To estimate the phylogenetic relationships between Hystrix and its related genera (Poaceae: Triticeae), the sequences of the single-copy nuclear gene Pgk1 were analyzed for five Hystrix taxa, together with three Pseudoroegneria (St) species, two Hordeum (H) species, two Psathyrostachys (Ns) species, four Elymus (StH) species, five Leymus (NsXm) species, Thinopyrum bessarabicum (Eb), and Lophopyrum elongatum (Ee). Sequence analysis indicated that an 81bp Stowaway insertion occurred in the Pgk1 sequences of L. arenarius and Psa. juncea, and a 29 bp Copia insertion occurred in the Pgk1 sequences of Hy. duthiei, Hy. duthiei ssp. longearistata and L. akmolinensis. Phylogenetic analysis indicated that: (1) Hy. patula was closely related to Pseudoroegneria, Hordeum, and Elymus; (2) Hy. duthiei, Hy. duthiei ssp. longearistata, Hy. coreana, and Hy. komarovii were closely related to Psathyrostachys and Leymus. Based on these results, it is reasonable to transfer Hy. patula from Hystrix to Elymus, and to combine Hy. duthiei, Hy. duthiei ssp. longearistata, Hy. coreana, and Hy. komarovii into Leymus.
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