de Feyter R, Young M, Schroeder K, Dennis E S, Gerlach W
CSIRO Division of Plant Industry, Canberra, Australia.
Mol Gen Genet. 1996 Feb 25;250(3):329-38. doi: 10.1007/BF02174391.
Ribozymes of the hammerhead class can be designed to cleave a target RNA in a sequence-specific manner and can potentially be used to specifically modulate gene activity. We have targeted the tobacco mosaic virus (TMV) genome with a ribozyme containing three catalytic hammerhead domains embedded within a 1 kb antisense RNA. The ribozyme was able to cleave TMV RNA at all three target sites in vitro at 25 degrees C. Transgenic tobacco plants were generated which expressed the ribozyme or the corresponding antisense constructs directed at the TMV genome. Six of 38 independent transgenic plant lines expressing the ribozyme and 6 of 39 plant lines expressing the antisense gene showed some level of protection against TMV infection. Homozygous progeny of some lines were highly resistant to TMV; at least 50% of the plants remained asymptomatic even when challenged with high levels of TMV. These plants also displayed resistance to infection with TMV RNA or the related tomato mosaic virus (ToMV). In contrast, hemizygous plants of the same lines displayed only very weak resistance when inoculated with low amounts of TMV and no resistance against high inoculation levels. Resistance in homozygous plants was not overcome by a TMV strain which was altered at the three target sites to abolish ribozyme-mediated cleavage, suggesting that the ribozyme conferred resistance primarily by an antisense mechanism.
锤头状核酶能够被设计成以序列特异性方式切割靶RNA,并有可能用于特异性调节基因活性。我们用一种核酶靶向烟草花叶病毒(TMV)基因组,该核酶包含嵌入在1 kb反义RNA中的三个催化锤头结构域。这种核酶能够在25℃下于体外在所有三个靶位点切割TMV RNA。我们培育出了表达该核酶或针对TMV基因组的相应反义构建体的转基因烟草植株。在38个独立的表达核酶的转基因植株系中,有6个系,以及在39个表达反义基因的植株系中,有6个系对TMV感染表现出一定程度的抗性。一些品系的纯合后代对TMV具有高度抗性;即使受到高剂量TMV的挑战,至少50%的植株仍无症状。这些植株对TMV RNA或相关的番茄花叶病毒(ToMV)感染也表现出抗性。相比之下,同一品系的半合子植株在接种少量TMV时仅表现出非常弱的抗性,而对高接种量则没有抗性。在三个靶位点发生改变以消除核酶介导切割的TMV毒株并不能克服纯合植株中的抗性,这表明核酶主要通过反义机制赋予抗性。