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A Viroid RNA with a Specific Structural Motif Inhibits Chloroplast Development

机译:具有特定结构基序的类病毒RNA抑制叶绿体发育。

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摘要

Peach latent mosaic viroid (PLMVd) is a chloroplast-replicating RNA that propagates in its natural host, peach (Prunus persica), as a complex mixture of variants, some of which are endowed with specific structural and pathogenic properties. This is the case of variant PC-C40, with an insertion of 12 to 13 nucleotides that folds into a hairpin capped by a U-rich loop, which is responsible for an albino-variegated phenotype known as peach calico (PC). We have applied a combination of ultrastructural, biochemical, and molecular approaches to dissect the pathogenic effects of PC-C40. Albino sectors of leaves infected with variant PC-C40 presented palisade cells that did not completely differentiate into a columnar layer and altered plastids with irregular shape and size and with rudimentary thylakoids, resembling proplastids. Furthermore, impaired processing and accumulation of plastid rRNAs and, consequently, of the plastid translation machinery was observed in the albino sectors of leaves infected with variant PC-C40 but not in the adjacent green areas or in leaves infected by mosaic-inducing or latent variants (including PC-C40Δ, in which the 12- to 13-nucleotide insertion was deleted). Protein gel blot and RT-PCR analyses showed that the altered plastids support the import of nucleus-encoded proteins, including a chloroplast RNA polymerase, the transcripts of which were detected. RNA gel blot and in situ hybridizations revealed that PLMVd replicates in the albino leaf sectors and that it can invade the shoot apical meristem and induce alterations in proplastids, bypassing the RNA surveillance system that restricts the entry of a nucleus-replicating viroid and most RNA viruses. Therefore, a non-protein-coding RNA with a specific structural motif can interfere with an early step of the chloroplast developmental program, leading ultimately to an albino-variegated phenotype resembling that of certain variegated mutants in which plastid rRNA maturation is also impaired. Our results highlight the potential of viroids for further dissection of RNA trafficking and pathogenesis in plants.
机译:桃潜在花叶病毒(PLMVd)是一种叶绿体复制RNA,在其天然宿主桃(Prunus persica)中传播,作为变体的复杂混合物,其中一些具有特定的结构和致病性。这是变体PC-C40的情况,插入的12至13个核苷酸折叠成一个由富含U的环封端的发夹,该环负责白化变种表型,称为桃印花布(PC)。我们已经应用了超微结构,生化和分子方法的组合来剖析PC-C40的致病作用。感染变体PC-C40的叶片的白化病区呈现出栅栏细胞,其没有完全分化成柱状层,并且改变了具有不规则形状和大小以及基本类囊体的质体,类似于质体。此外,在感染变体PC-C40的叶片的白化病区域中观察到了质体rRNA的加工和积累受损,因此质体翻译机制受损,但在邻近的绿色区域或被花叶诱导或潜在变体感染的叶片中没有观察到(包括PC-C40Δ,其中删除了12至13个核苷酸的插入)。蛋白质凝胶印迹和RT-PCR分析表明,改变的质体支持导入核编码的蛋白质,包括叶绿体RNA聚合酶,并检测其转录本。 RNA凝胶印迹和原位杂交表明,PLMVd在白化病叶扇叶中复制,并且可以侵染茎尖分生组织并诱导质体发生改变,从而绕开了RNA监控系统,该系统限制了复制核的类病毒和大多数RNA病毒的进入。因此,具有特定结构基序的非蛋白质编码RNA可能会干扰叶绿体发育程序的早期步骤,最终导致类似于某些杂色突变体的白化变种表型,其中质体rRNA成熟也受到损害。我们的结果突出了类病毒在植物中进一步解剖RNA转运和发病机理的潜力。

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