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转基因烟草植株中马铃薯卷叶病毒移动蛋白对碳水化合物状态和病毒抗性的表达水平依赖性调节的证据。

Evidence for expression level-dependent modulation of carbohydrate status and viral resistance by the potato leafroll virus movement protein in transgenic tobacco plants.

作者信息

Hofius D, Herbers K, Melzer M, Omid A, Tacke E, Wolf S, Sonnewald U

机构信息

Institut für Pflanzengenetik und Kulturpflanzenforschung (IPK), Corrensstr. 3, 06466 Gatersleben, Germany.

出版信息

Plant J. 2001 Dec;28(5):529-43. doi: 10.1046/j.1365-313x.2001.01179.x.

Abstract

High-level constitutive expression of the cell-to-cell movement protein from the phloem-restricted potato leafroll virus (PLRV-MP17) in transgenic tobacco plants leads to growth retardation and severe phenotypic changes of source leaves paralleled by a drastic accumulation of soluble sugars and starch (Herbers et al., 1997). To investigate whether the MP17-induced alteration in carbon metabolism is related to the targeting and modification of specific plasmodesmata (Pd) or is rather due to pleiotropic effects caused by high MP17 protein amounts, non-phenotypic tobacco plants expressing a MP17:GFP fusion protein were obtained and compared with previously described MP17 transgenic lines. Confocal laser scanning microscopy and immunogold labelling studies revealed an overall affinity of MP17 to Pd in vascular and non-vascular tissue of source leaves, whereas in sink leaves GFP fluorescence was restricted to Pd of trichomes. In source leaves, plasmodesmal size exclusion limits of mesophyll cells were likewise increased by MP17 and MP17:GFP independent from steady-state levels of the protein amount and phenotypic alteration. Conversely, carbohydrate contents in source leaves strictly correlated with quantified MP17 protein levels. Low expression of MP17 and MP17:GFP decreased soluble sugars and starch contents in leaves possibly due to changes in plasmodesmal permeability while increasing MP17 protein levels led to carbohydrate accumulation and a stunted growth. Infection of transgenic lines with the unrelated potato virus Y (PVY)N revealed an expression level-dependent mode of MP17-mediated resistance. Phenotypic changes and carbohydrate-mediated defence responses as indicated by elevated levels of PR-protein transcripts were crucial for increased viral resistance, whereas plasmodesmal targeting and modification by MP17 per se had either no effect or even increased susceptibility to PVY. Thus, our results implicate that the absolute level of expression needs to be critically considered when elucidating the effect of MPs on carbon metabolism, biomass allocation and virus resistance.

摘要

来自韧皮部限制型马铃薯卷叶病毒(PLRV-MP17)的细胞间运动蛋白在转基因烟草植株中的高水平组成型表达导致生长迟缓以及源叶出现严重的表型变化,同时伴随着可溶性糖和淀粉的大量积累(赫伯斯等人,1997年)。为了研究MP17诱导的碳代谢变化是与特定胞间连丝(Pd)的靶向和修饰有关,还是由于MP17蛋白含量过高引起的多效性效应,我们获得了表达MP17:GFP融合蛋白的无表型烟草植株,并与先前描述的MP17转基因株系进行了比较。共聚焦激光扫描显微镜和免疫金标记研究表明,MP17对源叶维管组织和非维管组织中的Pd具有总体亲和力,而在库叶中,绿色荧光蛋白(GFP)荧光仅限于毛状体的Pd。在源叶中,MP17和MP17:GFP同样增加了叶肉细胞的胞间连丝大小排阻极限,这与蛋白质含量的稳态水平和表型改变无关。相反,源叶中的碳水化合物含量与定量的MP17蛋白水平严格相关。MP17和MP17:GFP的低表达可能由于胞间连丝通透性的变化而降低了叶片中的可溶性糖和淀粉含量,而增加MP17蛋白水平则导致碳水化合物积累和生长发育迟缓。用不相关的马铃薯Y病毒(PVY)N感染转基因株系,揭示了MP17介导的抗性的表达水平依赖性模式。PR蛋白转录本水平升高所表明的表型变化和碳水化合物介导的防御反应对于增强病毒抗性至关重要,而MP17本身对胞间连丝的靶向和修饰要么没有影响,甚至会增加对PVY的易感性。因此,我们的结果表明,在阐明运动蛋白对碳代谢、生物量分配和病毒抗性的影响时,需要严格考虑表达的绝对水平。

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