Wang Xinjun, Cao Haihe, Zhang Dengfeng, Li Bo, He Yan, Li Jiansheng, Wang Shoucai
College of Agronomy and Biotechnology, China Agricultural University, Beijing 100094, China.
J Genet Genomics. 2007 Feb;34(2):160-70. doi: 10.1016/S1673-8527(07)60017-4.
Maize (Zea mays L.) is one of the most important crops because of the remarkable properties of its hybrid, which is responsible for the high commercial value of hybrid maize. The genetic basis of heterosis (hybrid vigor) is not well understood. A differential display technique was performed to identify genes with differential expression across twelve maize inbred lines and thirty-three hybrids during ear development. An incomplete diallel design was used to investigate the relationship between the global framework of differential gene expression and heterosis. It was found that the genes belonging to MONO pattern (i.e., genes expressed in both parental lines and in hybrid) was the highest in percentage among the total five patterns and illustrated that the properties of differentially expressed genes are not entirely responsible for heterosis. Furthermore, a larger number of differentially expressed genes in hybrid, which serves as a major reservoir for generating novel phenotypes that exhibit heterosis of certain agronomic traits during early development and differentiation of maize ear. Moreover, there were some silent genesin hybrids that are responsible for the arrest or abortion of spikelets and for the increase in kernels weight.
玉米(Zea mays L.)是最重要的作物之一,因其杂交种具有显著特性,这使得杂交玉米具有很高的商业价值。杂种优势(杂交活力)的遗传基础尚未完全了解。采用差异显示技术来鉴定在玉米穗发育过程中,十二个玉米自交系和三十三个杂交种中差异表达的基因。利用不完全双列杂交设计来研究差异基因表达的整体框架与杂种优势之间的关系。研究发现,在总共五种模式中,属于MONO模式(即在亲本系和杂交种中均表达的基因)的基因所占百分比最高,这表明差异表达基因的特性并非完全决定杂种优势。此外,杂交种中有大量差异表达基因,这些基因是在玉米穗早期发育和分化过程中产生表现出某些农艺性状杂种优势的新表型的主要来源。而且,杂交种中存在一些沉默基因,这些基因导致小穗停滞或败育以及粒重增加。