National Institute of Agrobiological Resources, Tsukuba Science City, Yatabe, 305, Ibaraki, Japan.
Plant Cell Rep. 1987 Apr;6(2):90-3. doi: 10.1007/BF00276660.
Conditions of electroporation were optimized for introduction of tobacco mosaic virus (TMV) particles into tobacco mesophyll protoplasts (Nicotiana tabacum L. cv. Petit Havana SR1). Compared with conditions for TMV-RNA uptake, a longer electric pulse was necessary at the same voltage to induce TMV particle entry. Up to 80-90% of the protoplasts were infected with TMV particles after exposure to a 10 msec pulse at 200 V (0.67 KV/cm) in a 0.5 M mannitol solution. Protoplast viability was slightly lower than for controls which did not undergo electroporation. The presence of buffer in the mannitol solution reduced the net voltage in the solution which resulted in a significant decrease of the level of infection. These results suggest that the membrane pores resulting from an electrical pulse were wide enough for TMV particles (300 × 18 nm) to enter protoplasts.
电穿孔条件进行了优化,以将烟草花叶病毒(TMV)颗粒导入烟草叶肉原生质体(Nicotiana tabacum L. cv. Petit Havana SR1)。与 TMV-RNA 摄取条件相比,在相同电压下需要更长的电脉冲才能诱导 TMV 颗粒进入。在 0.5 M 甘露醇溶液中,用 200 V(0.67 KV/cm)的 10 msec 脉冲处理后,多达 80-90%的原生质体被 TMV 颗粒感染。原生质体的存活率略低于未进行电穿孔的对照。甘露醇溶液中缓冲液的存在降低了溶液中的有效电压,导致感染水平显著降低。这些结果表明,电脉冲产生的膜孔足够大,可以使 TMV 颗粒(300×18nm)进入原生质体。