首页> 美国卫生研究院文献>Journal of Experimental Botany >Getting ready for host invasion: elevated expression and action of xyloglucan endotransglucosylases/hydrolases in developing haustoria of the holoparasitic angiosperm Cuscuta
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Getting ready for host invasion: elevated expression and action of xyloglucan endotransglucosylases/hydrolases in developing haustoria of the holoparasitic angiosperm Cuscuta

机译:为宿主入侵做好准备:木葡聚糖内转葡糖基化酶/水解酶在全寄生性被子植物Cuscuta发育中的表达和作用增强

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摘要

Changes in cell walls have been previously observed in the mature infection organ, or haustorium, of the parasitic angiosperm Cuscuta, but are not equally well charted in young haustoria. In this study, we focused on the molecular processes in the early stages of developing haustoria; that is, before the parasite engages in a physiological contact with its host. We describe first the identification of differentially expressed genes in young haustoria whose development was induced by far-red light and tactile stimuli in the absence of a host plant by suppression subtractive hybridization. To improve sequence information and to aid in the identification of the obtained candidates, reference transcriptomes derived from two species of Cuscuta, C. gronovii and C. reflexa, were generated. Subsequent quantitative gene expression analysis with different tissues of C. reflexa revealed that among the genes that were up-regulated in young haustoria, two xyloglucan endotransglucosylase/hydrolase (XTH) genes were highly expressed almost exclusively at the onset of haustorium development. The same expression pattern was also found for the closest XTH homologues from C. gronovii. In situ assays for XTH-specific action suggested that xyloglucan endotransglucosylation was most pronounced in the cell walls of the swelling area of the haustorium facing the host plant, but was also detectable in later stages of haustoriogenesis. We propose that xyloglucan remodelling by Cuscuta XTHs prepares the parasite for host infection and possibly aids the invasive growth of the haustorium.
机译:以前已经在寄生被子植物Cuscuta的成熟感染器官或泌尿生殖器中观察到了细胞壁的变化,但在年轻的泌尿生殖器中却未同样清楚地标出。在这项研究中,我们重点研究了发展手工艺品的早期阶段的分子过程。也就是说,在寄生虫与其宿主进行生理接触之前。我们首先描述了在年轻的haustoria中差异表达基因的鉴定,该基因的发育是由远红外线和触觉刺激在没有宿主植物的情况下通过抑制性消减杂交诱导的。为了改善序列信息并帮助鉴定所获得的候选物,产生了来自Cuscuta的两个物种(C. gronovii和C. reflexa)的参考转录组。随后对反射性念珠菌的不同组织进行定量基因表达分析,结果表明,在年轻的haustoria中上调的基因中,两个木葡聚糖内转葡糖苷酶/水解酶(XTH)基因几乎完全在泌尿生殖器发育时高表达。对于来自罗氏梭菌的最接近的XTH同源物,也发现了相同的表达模式。 XTH特异性作用的原位测定表明,木葡聚糖内转葡糖基化在面对寄主植物的化工厂的肿胀区域的细胞壁中最明显,但在化工厂的后期也可以检测到。我们建议通过Cu丝XTHs重塑木葡聚糖为宿主感染准备寄生虫,并可能有助于泌尿道的侵袭性生长。

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