首页> 外文期刊>The Plant Cell >Interspecific RNA interference of SHOOT MERISTEMLESS-like disrupts Cuscuta pentagona plant parasitism.
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Interspecific RNA interference of SHOOT MERISTEMLESS-like disrupts Cuscuta pentagona plant parasitism.

机译:SHOOT MERISTEMLESS样的种间RNA干扰破坏了五倍草(Cuscuta pentagona)植物的寄生。

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Infection of crop species by parasitic plants is a major agricultural hindrance resulting in substantial crop losses worldwide. Parasitic plants establish vascular connections with the host plant via structures termed haustoria, which allow acquisition of water and nutrients, often to the detriment of the infected host. Despite the agricultural impact of parasitic plants, the molecular and developmental processes by which host/parasitic interactions are established are not well understood. Here, we examine the development and subsequent establishment of haustorial connections by the parasite dodder (Cuscuta pentagona) on tobacco (Nicotiana tabacum) plants. Formation of haustoria in dodder is accompanied by upregulation of dodder KNOTTED-like homeobox transcription factors, including SHOOT MERISTEMLESS-like (STM). We demonstrate interspecific silencing of a STM gene in dodder driven by a vascular-specific promoter in transgenic host plants and find that this silencing disrupts dodder growth. The reduced efficacy of dodder infection on STM RNA interference transgenics results from defects in haustorial connection, development, and establishment. Identification of transgene-specific small RNAs in the parasite, coupled with reduced parasite fecundity and increased growth of the infected host, demonstrates the efficacy of interspecific small RNA-mediated silencing of parasite genes. This technology has the potential to be an effective method of biological control of plant parasite infection.
机译:寄生植物对农作物物种的感染是主要的农业障碍,导致全世界农作物的大量损失。寄生植物通过称为haustoria的结构与宿主植物建立维管连接,该结构允许获取水和养分,常常损害被感染的宿主。尽管寄生植物对农业产生了影响,但建立宿主/寄生物相互作用的分子和发育过程仍未得到很好的了解。在这里,我们研究了烟草(Nicotiana tabacum)植物上的寄生虫do丝(Cuscuta pentagona)的发育和随后的排烟连接的建立。 do丝虫中抽丝精的形成伴随着K虫KNOTTED状同源盒转录因子的上调,包括SHOOT MERISTEMLESS状(STM)。我们证明了在转基因宿主植物中由血管特异性启动子驱动的do丝中STM基因的种间沉默,并发现这种沉默破坏了d丝的生长。 d丝虫对STM RNA干扰转基因的感染效力降低是由于抽空连接,发育和建立方面的缺陷造成的。寄生虫中转基因特异性小RNA的鉴定,加上降低的寄生虫繁殖力和感染宿主的生长,证明了种间小RNA介导的寄生虫基因沉默的功效。该技术有可能成为有效控制植物寄生虫感染的有效方法。

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