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Protein Storage Vacuoles Originate from Remodeled Preexisting Vacuoles in Arabidopsis thaliana

机译:拟南芥中经过改造的既有液泡起源于蛋白质存储液泡

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摘要

Protein storage vacuoles (PSV) are the main repository of protein in dicotyledonous seeds, but little is known about the origins of these transient organelles. PSV are hypothesized to either arise de novo or originate from the preexisting embryonic vacuole (EV) during seed maturation. Here, we tested these hypotheses by studying PSV formation in Arabidopsis (Arabidopsis thaliana) embryos at different stages of seed maturation and recapitulated this process in Arabidopsis leaves reprogrammed to an embryogenic fate by inducing expression of the LEAFY COTYLEDON2 transcription factor. Confocal and immunoelectron microscopy indicated that both storage proteins and tonoplast proteins typical of PSV were delivered to the preexisting EV in embryos or to the lytic vacuole in reprogrammed leaf cells. In addition, sectioning through embryos at several developmental stages using serial block face scanning electron microscopy revealed the 3D architecture of forming PSV. Our results indicate that the preexisting EV is reprogrammed to become a PSV in Arabidopsis.
机译:蛋白质贮藏液泡(PSV)是双子叶种子中蛋白质的主要贮藏库,但对这些瞬时细胞器的起源知之甚少。推测PSV可能是从头产生或起源于种子成熟期间预先存在的胚泡(EV)。在这里,我们通过研究拟南芥(Arabidopsis thaliana)胚胎在种子成熟的不同阶段的PSV形成来检验这些假设,并通过诱导LEAFY COTYLEDON2转录因子的表达将拟南芥叶片中的这一过程概括为重编程为胚胎发生的命运。共聚焦和免疫电子显微镜检查表明,PSV的典型贮藏蛋白和液泡膜蛋白均被递送至胚胎中预先存在的EV或重新编程的叶细胞中的裂解液中。此外,使用串行块面扫描电子显微镜在几个发育阶段的胚胎切片揭示了形成PSV的3D结构。我们的结果表明,先前存在的EV被重新编程为拟南芥中的PSV。

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