Interconnected idioblasts in Peltaea polymorpha: a novel component of the mucilage-secretory apparatus in Malvaceae.

IF 2.6 3区 生物学 Q2 ECOLOGY
AoB Plants Pub Date : 2025-01-10 eCollection Date: 2025-01-01 DOI:10.1093/aobpla/plae063
Tatiane Maria Rodrigues, Aline Rodrigues de Almeida, Juan de Nicolai, Igor Soares Dos Santos, Silvia Rodrigues Machado
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引用次数: 0

Abstract

The anatomical and cytological characteristics of the mucilage-secretory system have been widely studied in Malvaceae. However, conflicting information regarding the morphological nature of secretory structures exists, and some remain poorly understood. In this sense, some secretory structures in Malvaceae are not characterized as typical isolated idioblasts, canals, or cavities. Here, we describe a novel component of the mucilage-secretory apparatus in the Malvaceae family. Samples of the shoot apex, mature stem and fully expanded leaves were obtained from adult Peltaea polymorpha, which grow in the Cerrado (Brazilian savanna). The samples were processed using standard light and transmission electron microscopy methods. Mucilage cells occurred in the cortex and pith of petioles and stems, and in the midrib of leaves. These cells originate early in the stem apex from successive divisions of cells of the fundamental meristem, resulting in a row of interconnected secretory cells enveloped by a sheath of parenchyma cells devoid of secretory activity. Mucilage is stored in both protoplast and apoplast. In the same row, some cells filled with mucilage become very swollen and compress the neighbouring idioblasts that become flattened. This phenomenon results in a sandwich panel structure consisting of the swollen transversal walls of adjacent cells. As the differentiation progresses, the transversal walls of the rowed mucilage cells became very swollen, multilayered, and porous. Cytoplasmic strands cross such transversal walls connecting rowed cells. Mucilage-secreting cells in P. polymorpha are interconnected idioblasts and represent a novel component of the mucilage-secretory apparatus in Malvaceae. These findings open new avenues for understanding the structure and dynamics of mucilage-secreting cells from a functional perspective.

多形盆草中相互连接的异母细胞:锦葵科粘液分泌装置的新组成部分。
锦葵科粘液分泌系统的解剖学和细胞学特征已被广泛研究。然而,关于分泌结构的形态学性质存在矛盾的信息,有些仍然知之甚少。在这个意义上,一些分泌结构在malvacae不具有典型的分离异母细胞,管,或腔的特征。在这里,我们描述了一个新的组成部分的粘液分泌装置在锦葵科。对生长在巴西塞拉多(Cerrado)热带稀树草原的多形Peltaea polymorpha成虫的茎尖、成熟茎和完全展开的叶片进行了研究。采用标准光镜和透射电镜方法对样品进行处理。叶柄和茎的皮层、髓以及叶的中脉都有粘液细胞。这些细胞起源于茎尖早期的基本分生组织细胞的连续分裂,形成一排相互连接的分泌细胞,被缺乏分泌活性的薄壁细胞鞘包围。黏液储存在原生质体和外质体中。在同一排中,一些充满粘液的细胞变得非常肿胀,压迫邻近变平的异母细胞。这种现象导致由相邻细胞肿胀的横向壁组成的夹心板结构。随着分化的进行,排状黏液细胞的横壁变得非常肿胀、多层且多孔。细胞质链穿过这样的横壁,连接一排排的细胞。多形虫粘液分泌细胞是相互连接的异母细胞,是锦葵科粘液分泌器官的一个新组成部分。这些发现为从功能角度理解粘液分泌细胞的结构和动力学开辟了新的途径。
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来源期刊
AoB Plants
AoB Plants PLANT SCIENCES-
CiteScore
4.80
自引率
0.00%
发文量
54
审稿时长
20 weeks
期刊介绍: AoB PLANTS is an open-access, online journal that has been publishing peer-reviewed articles since 2010, with an emphasis on all aspects of environmental and evolutionary plant biology. Published by Oxford University Press, this journal is dedicated to rapid publication of research articles, reviews, commentaries and short communications. The taxonomic scope of the journal spans the full gamut of vascular and non-vascular plants, as well as other taxa that impact these organisms. AoB PLANTS provides a fast-track pathway for publishing high-quality research in an open-access environment, where papers are available online to anyone, anywhere free of charge.
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