Schmülling T, Schell J
Universität Tübingen, Lehrstuhl für Allgemeine Genetik, Germany.
Plant Mol Biol. 1993 Feb;21(4):705-8. doi: 10.1007/BF00014554.
Amongst rolC transgenic tobacco plants regenerated from leaf disks 6.5% are periclinal chimeras, i.e. plants with genetically different cell populations in different cell layers. The expression of the rolC gene of Agrobacterium rhizogenes causes a reduction in pigment content in leaves. The chimeric composition of the regenerated plants becomes thus apparent as light green leaf tissue in the transgenic region, tissue flanked by dark green wild-type sectors. Southern and northern blot analysis confirmed the chimeric nature of such plants. Investigation of selfed progeny of chimeric plants on selective media indicates that layer invasion in reproductive tissues can occur in tobacco early during the formation of the flower buds. The results show (1) that tobacco plants regenerated from leaf disks and grown on selective media have not necessarily the same clonal origin and (2) that they can give rise to non-transgenic offspring. The chimeric plants provide insight on the effect of rolC gene expression on microsporogenesis.
从叶盘再生的rolC转基因烟草植株中,6.5%是周缘嵌合体,即不同细胞层中具有基因不同细胞群体的植株。发根农杆菌rolC基因的表达导致叶片色素含量降低。再生植株的嵌合组成因此表现为转基因区域中的浅绿色叶组织,该组织两侧为深绿色野生型区段。Southern和Northern印迹分析证实了此类植株的嵌合性质。在选择性培养基上对嵌合植株的自交后代进行研究表明,在花芽形成早期,烟草生殖组织中会发生层间侵入。结果表明:(1)从叶盘再生并在选择性培养基上生长的烟草植株不一定具有相同的克隆起源;(2)它们能够产生非转基因后代。这些嵌合植株为rolC基因表达对小孢子发生的影响提供了见解。