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The trafficking pathway of a wheat storage protein in transgenic rice endosperm

机译:小麦贮藏蛋白在转基因水稻胚乳中的运输途径

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摘要

Background and Aims The trafficking of proteins in the endoplasmic reticulum (ER) of plant cells is a topic of considerable interest since this organelle serves as an entry point for proteins destined for other organelles, as well as for the ER itself. In the current work, transgenic rice was used to study the pattern and pathway of deposition of the wheat high molecular weight (HMW) glutenin sub-unit (GS) 1Dx5 within the rice endosperm using specific antibodies to determine whether it is deposited in the same or different protein bodies from the rice storage proteins, and whether it is located in the same or separate phases within these.ududMethods The protein distribution and the expression pattern of HMW sub-unit 1Dx5 in transgenic rice endosperm at different stages of development were determined using light and electron microscopy after labelling with antibodies.ududKey results The use of HMW-GS-specific antibodies showed that sub-unit 1Dx5 was expressed mainly in the sub-aleurone cells of the endosperm and that it was deposited in both types of protein body present in the rice endosperm: derived from the ER and containing prolamins, and derived from the vacuole and containing glutelins. In addition, new types of protein bodies were also formed within the endosperm cells.ududConclusions The results suggest that the HMW 1Dx5 protein could be trafficked by either the ER or vacuolar pathway, possibly depending on the stage of development, and that its accumulation in the rice endosperm could compromise the structural integrity of protein bodies and their segregation into two distinct populations in the mature endosperm.
机译:背景和目的植物细胞内质网(ER)中蛋白质的运输是一个令人关注的话题,因为该细胞器可作为发往其他细胞器的蛋白质以及ER本身的切入点。在当前的工作中,转基因水稻被用于研究水稻胚乳中小麦高分子量(HMW)谷蛋白亚基(GS)1Dx5的沉积模式和沉积途径,并使用特异性抗体来确定其是否沉积在同一胚乳中。或与水稻贮藏蛋白不同的蛋白质体,以及它们是否位于相同或不同的相中。 ud ud方法转基因水稻胚乳中不同发育阶段的HMW亚基1Dx5的蛋白质​​分布和表达模式 ud ud关键结果使用HMW-GS特异性抗体表明,亚单位1Dx5主要在胚乳的亚胚层细胞中表达,并沉积在稻胚乳中存在的两种蛋白质体:都来自内质网,含有谷醇溶蛋白;来源于液泡,含有谷蛋白。此外,在胚乳细胞内还形成了新型的蛋白质体。 ud ud结论:结果表明,HMW 1Dx5蛋白可能通过内质网或液泡途径运输,这可能取决于其发育阶段,而且水稻胚乳中的积累会损害蛋白质体的结构完整性及其在成熟胚乳中的分离成两个不同的种群。

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