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Genomic and genic sequence variation in synthetic hexaploid wheat (AABBDD) as compared to their parental species
作者姓名:Lihong  Nie  Zongfu  Han  Lahu  Lu  Yingyin  Yao  Qixin  Sun  Zhongfu  Ni
作者单位:Key Laboratory of Crop Heterosis and Utilization ( MOE) and State Key Laboratory for Agrobiotechnology, Key Laboratory of CropGenomics and Genetic Improvement ( MOA ), BeO'ing Key Laboratory of Crop Genetic Improvement, Department of Plant Genetics & Breeding, China Agricultural University, Beijing 100094, China
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金
摘    要:In order to understand the genomic changes during the evolution of hexaploid wheat, two sets of synthetic hexaploid wheat from hybridization between maternal tetraploid wheat (AABB) and paternal diploid goat grass (DD) were used for DNA-AFLP and single strand conformation polymorphism (SSCP) analysis to determine the genomic and genic variation in the synthetic hexaploid wheat. Results indicated that more DNA sequences from paternal diploid species were eliminated in the synthetic hexaploid wheat than from maternal tetraploid wheat, suggesting that genome from parental species of lower ploidity tends to be eliminated preferentially. However, sequence variation detected by SSCP procedure was much lower than those detected by DNA-AFLP, which indicated that much less variation in the genic regions occurred in the synthetic hexaploid wheat, and sequence variations detected by DNA-AFLP could be derived mostly from non-coding regions and repetitive sequences. Our results also indicated that sequence variation in 4 genes can be detected in hybrid F1, which suggested that this type of sequence variation could be resulted from distant hybridization. It was interesting to note that 3 out of the 4 genes were mapped and clustered on the long arm of chromosome 2D, which indicated that variation in genic sequences in synthetic hexaploid wheat might not be a randomized process.

关 键 词:杂交小麦  多倍性  基因组  序列变化
收稿时间:22 July 2007
修稿时间:13 September 2007

Genomic and genic sequence variation in synthetic hexaploid wheat (AABBDD) as compared to their parental species
Lihong Nie Zongfu Han Lahu Lu Yingyin Yao Qixin Sun Zhongfu Ni.Genomic and genic sequence variation in synthetic hexaploid wheat (AABBDD) as compared to their parental species[J].Progress in Natural Science,2008,18(5):533-538.
Authors:Lihong Nie  Zongfu Han  Lahu Lu  Yingyin Yao  Qixin Sun  Zhongfu Ni
Institution:aKey Laboratory of Crop Heterosis and Utilization (MOE) and State Key Laboratory for Agrobiotechnology, Key Laboratory of Crop Genomics and Genetic Improvement (MOA), Beijing Key Laboratory of Crop Genetic Improvement, Department of Plant Genetics & Breeding, China Agricultural University, Beijing 100094, China
Abstract:In order to understand the genomic changes during the evolution of hexaploid wheat,two sets of synthetic hexaploid wheat from hybridization between maternal tetraploid wheat (AABB) and paternal diploid goat grass(DD)were used for DNA-AFLP and single strand conformation polymorphism (SSCP) analysis to determine the genomic and genie variation in the synthetic hexaploid wheat.Results indicated that more DNA sequences from paternal diploid species wen eliminated in the synthetic hexaploid wheat than from maternal tetraploid wheat,suggesting that genome from parental species of lower ploidity tends to be eliminated preferentially.However,sequence variation detected by SSCP procedure was much lower than those detected by DNA-AFLP.which indicated that much less variation in the genie regions occurred in the synthetic hexaploid wheat.and sequence variations detected by DNA-AFLP could be derived mostly from non-coding regions and repetitive sequences.Our results also indicated that sequence variation in 4 genes can be detected in hybrid F1.which suggested that this type of sequence variation could be resulted from distant hybridization.It was interesting to note that 3 out of the 4 genes were mapped and clustered on the long alTll of chromosome 2D,which indicated that variation in genic sequences in synthetic hexaploid wheat might not be a randomized process.
Keywords:Synthetic hexaploid wheat  Polyploidy  Genome  Sequence variation
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