Castelblanque Lourdes, Balaguer Begoña, Martí Cristina, Rodríguez Juan José, Orozco Marianela, Vera Pablo
Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-Consejo Superior de Investigaciones Científicas, Ciudad Politécnica de la Innovación, 46022 Valencia, Spain.
Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-Consejo Superior de Investigaciones Científicas, Ciudad Politécnica de la Innovación, 46022 Valencia, Spain
Plant Physiol. 2016 Oct;172(2):1032-1044. doi: 10.1104/pp.16.00954. Epub 2016 Jul 28.
Laticifer cells are specialized plant cells that synthesize and accumulate latex. Studies on laticifers have lagged behind in recent years, and data regarding the functional role of laticifers and their fitness benefit still remain elusive. Laticifer differentiation and its impact on plant growth and development also remain to be investigated. Here, cellular, molecular, and genetic tools were developed to examine the distribution, differentiation, ontogeny, and other characteristic features, as well as the potential developmental role of laticifer cells in the latex-bearing plant Euphorbia lathyris. The organization of the laticiferous system within the E. lathyris plant body is reported, emerging as a single elongated and branched coenocytic cell, constituting the largest cell type existing in plants. We also report the ontogeny and organization of laticifer cells in the embryo and the identification of a laticifer-associated gene expression pattern. Moreover, the identification of laticifer- and latex-deficient mutants (pil mutants) allowed for the identification of distinct loci regulating laticifer differentiation, growth, and metabolic activity. Additionally, pil mutants revealed that laticifer cells appear nonessential for plant growth and development, thus pointing toward their importance, instead, for specific ecophysiological adaptations of latex-bearing plants in natural environments.
乳汁管细胞是合成和积累乳胶的特化植物细胞。近年来对乳汁管的研究滞后,关于乳汁管的功能作用及其适应性益处的数据仍然难以捉摸。乳汁管分化及其对植物生长发育的影响也有待研究。在此,开发了细胞、分子和遗传工具,以研究乳汁管细胞在含乳胶植物续随子中的分布、分化、个体发育及其他特征,以及其潜在的发育作用。报道了续随子植物体内乳汁管系统的组织结构,它是作为单个细长且分支的多核细胞出现的,是植物中现存最大的细胞类型。我们还报道了胚胎中乳汁管细胞的个体发育和组织结构,以及一种与乳汁管相关的基因表达模式的鉴定。此外,乳汁管和乳胶缺陷型突变体(pil突变体)的鉴定使得能够识别调控乳汁管分化、生长和代谢活性的不同基因座。此外,pil突变体表明乳汁管细胞对于植物生长发育似乎并非必不可少,从而指出了它们对于含乳胶植物在自然环境中的特定生态生理适应的重要性。