Yu Weichang, Han Fangpu, Gao Zhi, Vega Juan M, Birchler James A
Division of Biological Sciences, 117 Tucker Hall, University of Missouri, Columbia, MO 65211, USA.
Proc Natl Acad Sci U S A. 2007 May 22;104(21):8924-9. doi: 10.1073/pnas.0700932104. Epub 2007 May 14.
Engineered minichromosomes were constructed in maize by modifying natural A and supernumerary B chromosomes. By using telomere-mediated chromosomal truncation, it was demonstrated that such an approach is feasible for the generation of minichromosomes of normal A chromosomes by selection of spontaneous polyploid events that compensate for the deficiencies produced. B chromosomes are readily fractionated by biolistic transformation of truncating plasmids. Foreign genes were faithfully expressed from integrations into normal B chromosomes and from truncated miniB chromosomes. Site-specific recombination between the terminal transgene on a miniA chromosome and a terminal site on a normal chromosome was demonstrated. It was also found that the miniA chromosome did not pair with its progenitor chromosomes during meiosis, indicating a useful property for such constructs. The miniB chromosomes are faithfully transmitted from one generation to the next but can be changed in dosage in the presence of normal B chromosomes. This approach for construction of engineered chromosomes can be easily extended to other plant species because it does not rely on cloned centromere sequences, which are species-specific. These platforms will provide avenues for studies on plant chromosome structure and function and for future developments in biotechnology and agriculture.
通过对天然A染色体和超数B染色体进行改造,在玉米中构建了工程化小染色体。利用端粒介导的染色体截短技术,通过选择自发多倍体事件来补偿所产生的缺陷,证明了这种方法对于生成正常A染色体的小染色体是可行的。通过对截短质粒进行基因枪转化,B染色体很容易被分离。外源基因从整合到正常B染色体和截短的小B染色体中都能忠实地表达。证明了小A染色体上的末端转基因与正常染色体上的末端位点之间存在位点特异性重组。还发现小A染色体在减数分裂过程中不与其祖染色体配对,这表明此类构建体具有有用的特性。小B染色体能稳定地从上一代传递到下一代,但在有正常B染色体存在时其剂量会发生变化。这种构建工程化染色体的方法可以很容易地扩展到其他植物物种,因为它不依赖于物种特异性的克隆着丝粒序列。这些平台将为植物染色体结构和功能的研究以及生物技术和农业的未来发展提供途径。