Biochemistry Department, Rothamsted Experimental Station, Harpenden, Herts., UK.
Plant Cell Rep. 1985 Apr;4(2):92-5. doi: 10.1007/BF00269215.
Protoplasts of Solanum brevidens (leaves) and Nicotiana rustica (suspensions) have been aligned and fused electrically between widely spaced electrodes, and the yield of 1:1 (binary) fusion products in chains of aligned protoplasts has been determined by light microscopy. Leaf protoplasts fuse more easily than protoplasts from suspension cultures (Tempelaar and Jones, 1985), thus electrical parameters and the ratio of leaf: suspension protoplasts can be varied to control the yield of binary and multifusion products. In experiments to determine optimum ratios for electrofusion, up to 60-70% of S. brevidens - N. rustica fusion products were binary at overall fusion frequencies of 40-50%.Fusions in samples of protoplasts with the same characteristics can also be controlled to direct the fusion process towards binary products. However, in this case, at least half of the binary products may be derived from self-fusions.
已将茄属植物(叶片)和烟草属植物(悬浮液)的原生质体在宽间距电极之间进行对齐和电融合,并且通过光学显微镜确定了在对齐的原生质体链中 1:1(二元)融合产物的产量。与悬浮培养物的原生质体相比,叶片原生质体更容易融合(Tempelaar 和 Jones,1985),因此可以改变电参数和叶:悬浮原生质体的比例来控制二元和多融合产物的产量。在确定电融合最佳比例的实验中,在总体融合频率为 40-50%的情况下,高达 60-70%的茄属植物-烟草属植物融合产物为二元产物。具有相同特性的原生质体样品中的融合也可以控制,以使融合过程朝向二元产物。然而,在这种情况下,至少一半的二元产物可能来自自融合。