Key Laboratory of Genetics and Biotechnology, College of Life Science, Capital Normal University, Beijing, 100048, China.
Theor Appl Genet. 2010 Sep;121(5):845-56. doi: 10.1007/s00122-010-1354-1. Epub 2010 May 19.
Twelve new LMW-GS genes were characterized from bread wheat (Triticum aestivum L.) cultivar Zhongyou 9507 and five Aegilops species by AS-PCR. These genes belong to the LMW-m type and can be classified into two subclasses designated as 1 and 2, with the latter predominant in both wheat and related wild species. Genes in the two subclasses were significantly different from each other in SNPs and InDels variations. In comparison to subclass 1, the structural features of subclass 2 differs in possessing 21 amino acid residue substitutions, two fragment deletions (each with 7 amino acid residues), and a double-residue deletion and two fragment insertions (12 and 2-5 residues). Phylogenetic analysis revealed that the two subclasses were divergent at about 6.8 MYA, earlier than the divergence of C, M, N, S(s) and U genomes. The S(s) and B genomes displayed a very close relationship, whereas the C, M, N and U genomes appeared to be related to the D genome of bread wheat. The presently characterized genes ZyLMW-m1 and ZyLMW-m2 from Zhongyou 9507 were assigned to the D genome. Moreover, these genes were expressed successfully in Escherichia coli. Their transcriptional levels during grain developmental stages detected by quantitative real-time PCR (qRT-PCR) showed that both genes started to express at 5 days post-anthesis (DPA), reaching the maximum at 14 DPA after which their expressions decreased. Furthermore, the expression level of ZyLMW-m2 genes was much higher than that of ZyLMW-m1 during all grain developmental stages, suggesting that the expression efficiency of LMW-GS genes between the two subclasses was highly discrepant.
十二种新的低分子量麦谷蛋白(LMW-GS)基因通过 AS-PCR 从小麦品种中中优 9507 和五种野生二粒小麦中被鉴定出来。这些基因属于 LMW-m 型,可以分为两个亚类,1 类和 2 类,后者在小麦和相关野生种中占优势。这两个亚类的基因在 SNP 和 InDels 变异方面存在显著差异。与 1 类亚类相比,2 类亚类的结构特征不同,表现为 21 个氨基酸残基取代、两个片段缺失(每个缺失 7 个氨基酸残基)、双残基缺失和两个片段插入(12 个和 2-5 个残基)。系统发育分析表明,这两个亚类在大约 6.8 MYA 时就已经分化,早于 C、M、N、S(s)和 U 基因组的分化。S(s)和 B 基因组之间的关系非常密切,而 C、M、N 和 U 基因组似乎与普通小麦的 D 基因组有关。中优 9507 中的 ZyLMW-m1 和 ZyLMW-m2 基因被分配到 D 基因组。此外,这些基因在大肠杆菌中成功表达。通过实时定量 PCR(qRT-PCR)检测到它们在籽粒发育阶段的转录水平表明,这两个基因在花后 5 天(DPA)开始表达,在 14 DPA 时达到最大值,之后表达量下降。此外,在整个籽粒发育阶段,ZyLMW-m2 基因的表达水平明显高于 ZyLMW-m1 基因,表明两个亚类的 LMW-GS 基因表达效率存在很大差异。