热治疗后啤酒花美克隆中类病毒水平的逐渐降低:核酸酶降解dsRNA的可能作用。

J Matousek, L Trnĕná, P Svoboda, P Oriniaková, C P Lichtenstein
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引用次数: 29

摘要

在体外培养的奥斯瓦尔德啤酒花感染分克隆中检测到高浓度的啤酒花潜伏病毒(HLVd)。这一浓度比田间种植的幼苗叶片高出约8倍,达到约30 pg/mg的新鲜质量。在体外培养的植物中,在高温(35℃)下处理两周,导致HLVd含量急剧下降(约70-90%)。用Osvald 31的mericlone 6147进行的更详细的研究表明,在随后的热处理循环中,HLVd水平逐渐降低。在热疗周期或热休克后,啤酒花组织中能够切割HLVd和全双链RNA的核酸酶活性显著增加。该核酸酶活性与早期从烟草花药中提取的核酸酶具有相似的性质。这种酶类似于糖非特异性核酸酶,在pH为5.5时具有最大活性。与类病毒和dsRNA的活性分析表明,内溶和外溶活性都归因于该酶。在幼嫩植株中,类病毒具有很强的组织特异性梯度(茎端最低,根部最高),与dsRNAse活性呈负相关。在衰老植株中,成熟球果和上部茎部的类病毒浓度最高。茎上部组织的高核酸酶活性表明,类病毒RNA必须在该组织中受到保护,防止降解。
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The gradual reduction of viroid levels in hop mericlones following heat therapy: a possible role for a nuclease degrading dsRNA.

A high concentration of hop latent viroid (HLVd) was detected in infected mericlones of Osvald's hops grown in vitro. This concentration was about 8-fold higher than in leaves of young, field-grown plants, reaching about 30 pg/mg of fresh mass. Treatment of these in vitro-grown plants at high temperature (35 degrees C) for two weeks lead to a dramatic (about 70-90%) decrease of HLVd content. More detailed investigations performed with mericlone 6147 of Osvald 31 showed that HLVd levels decrease gradually during subsequent cycles of heat treatment. A nuclease activity capable of cleaving HLVd and fully double-stranded RNA was shown to increase significantly in hop tissues during thermotherapy cycles, or after the heat shock. The nuclease activity was found to have similar properties to those extracted earlier from tobacco anthers. This enzyme resembles a sugar-unspecific nuclease which has a maximum activity at pH 5.5. Analysis of the activity with viroid and dsRNA showed that both, endo- and exonucleolytic activities were attributable to the enzyme. A strong tissue-specific gradient of viroid (the lowest level in stem apex and the highest level in roots) was observed in young plants, showing a negative correlation with the dsRNAse activity. In senescent plants, the highest viroid concentration was observed in maturated cones and in upper stems. High nuclease activity in the upper stem tissue suggests that viroid RNA must be protected in this tissue against degradation.

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