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首页> 外文期刊>European Journal of Plant Pathology >Molecular and biological characterization of a severe isolate of Tomato chlorotic dwarf viroid containing a novel terminal right (TR) domain sequence
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Molecular and biological characterization of a severe isolate of Tomato chlorotic dwarf viroid containing a novel terminal right (TR) domain sequence

机译:严重的番茄褪绿矮人病毒分离株的分子和生物学特征,该分离株具有新的末端右(T R )结构域序列

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摘要

Tomato chlorotic dwarf viroid (TCDVd) manually inoculated to transgenic (cv.‘Desiree’) potato plants containing antimicrobial cationic peptides failed to develop symptoms in above ground plant parts, but infected tubers were symptomatic. Plants from the infected tubers (second generation plants) emerged as either severely stunted (bushy stunt isolate, BSI) or tall and symptomless. Molecular characterization of BSI isolates showed TCDVd sequence variants 95 to 98% identical to TCDVd sequences from the database, while a viroid variant identical to TCDVd type isolate (acc # AF162131) was cloned from symptomless plants. The TCDVd BSI variants had novel U165C, GU177-178AA, and UCAC181-184CUUU nucleotide substitutions in the terminal right (TR) domain of the viroid molecule. The cloned viroid cDNAs of the BSI were infectious to experimental (cv. ‘Sheyenne’) tomato plants causing stunted plants with profuse auxiliary shoots. Visual evaluation of the susceptibility of the BSI to 18 potato and 21 tomato cultivars revealed severe symptoms in most cultivars of both species. The progeny variants accumulating in each potato and tomato cultivar exhibited the same novel TR domain in most cultivars, with only a slight variation in a few. The severity of the stunting symptoms induced by TCDVd from BSI isolates in both potato and tomato cultivars has not been noted previously with other TCDVd isolates and, as such, it is proposed that this new isolate be recognized as a distinct genotype. Emergence of this type of sequence variant in commercial fields or commercial tomato greenhouses could potentially cause relevant losses in both crops.
机译:人工接种到含有抗微生物阳离子肽的转基因(Desiree)马铃薯植株上的番茄绿化矮化类病毒(TCDVd)在地面上的植物部位未出现症状,但受感染的块茎是有症状的。受感染块茎的植物(第二代植物)出现严重发育不良(繁忙的特技分离株,BSI)或高大且无症状。 BSI分离株的分子特征表明,TCDVd序列变异与数据库中的TCDVd序列具有95%到98%的同一性,而从无症状植物中克隆了与TCDVd类型分离株(acc#AF162131)相同的类病毒变异。 TCDVd BSI变体在类病毒分子的右末端(T )域中具有新的U165C,GU177-178AA和UCAC181-184CUUU核苷酸取代。 BSI克隆的类病毒cDNA对实验性(Shevenne)番茄植物具有感染力,导致发育不良的植物具有丰富的辅助芽。视觉评估BSI对18个马铃薯和21个番茄品种的敏感性,发现这两个品种的大多数品种都有严重症状。在大多数马铃薯和番茄品种中积累的后代变体在大多数品种中都表现出相同的新的T R 结构域,而在少数品种中只有很小的变化。以前尚未在其他TCDVd分离株中注意到马铃薯和番茄品种中BSI分离株的TCDVd诱导的发育迟缓症状的严重性,因此,建议将该新分离株识别为独特的基因型。在商业田地或商业番茄温室中出现这种类型的序列变体可能会导致两种作物的相关损失。

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