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含羞草复合体 Mimosa 节的气孔微观形态(豆科)。

Stomatal micromorphology in a complex of Mimosa section Mimosa (Fabaceae).

机构信息

Facultad de Ciencias Exactas y Naturales, Depto. de Biodiversidad y Biología Experimental, Sistemática y Biología Reproductiva de Plantas Vasculares, Universidad de Buenos Aires, Intendente Güiraldes 2620, 1428, Ciudad Autónoma de Buenos Aires, Argentina.

Instituto de Recursos Biológicos, Instituto Nacional de Tecnología Agropecuaria, N. Repetto y Los Reseros S/N, 1686, Hurlingham, Buenos Aires, Argentina.

出版信息

Protoplasma. 2022 Jan;259(1):203-215. doi: 10.1007/s00709-021-01655-9. Epub 2021 May 5.

Abstract

The genus Mimosa Linnaeus (Leguminosae) comprises more than 530 species, being one of the most diversified genera in the family. A vast morphologic variability has been described at all infrageneric levels. Considering stomata description, a very low proportion of species have been studied in the genus, and the description was limited to stomata types, but not to variation in the disposition of subsidiary cells. Here we analyze type, length, and distribution of stomatic complexes in 19 taxa of Mimosa subseries Dolentes and subseries Brevipedes, a high variability taxonomic complex, as well as their density on both foliar faces and epidermic pavement cell morphology. We found four different stomatal types, 2 distribution types, and 3 epidermic pavement cell shapes. Some of these features are taxonomically relevant at infraspecific levels, since it adds important information for the separation of the taxa, but also questions supraspecific taxonomic groups of previous proposals of the genus. We also hypothesized about the origin of the variation of some stomata features in relation to ecological and ploidy-level variability in this complex.

摘要

含羞草属(豆科)包含超过 530 种,是家族中最多样化的属之一。在所有种下水平都描述了广泛的形态变异性。考虑到气孔描述,该属中只有很少比例的物种得到研究,并且描述仅限于气孔类型,而不是附属细胞排列的变化。在这里,我们分析了含羞草亚属 Dolentes 和亚属 Brevipedes 的 19 个分类群的气孔复合体的类型、长度和分布,这是一个高度变异的分类群,以及它们在两个叶面上的密度和表皮铺砌细胞形态。我们发现了四种不同的气孔类型、两种分布类型和三种表皮铺砌细胞形状。这些特征中的一些在种下水平上具有分类学意义,因为它们为分类群的分离提供了重要信息,但也对以前提出的属的超种分类群提出了质疑。我们还假设了一些气孔特征的变异与该复合体中生态和倍性水平变异的关系。

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