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首页> 外文期刊>Bangladesh Journal of Plant Taxonomy >Leaf architecture and petiole anatomy of Philippine Dipterocarpus species (Dipterocarpaceae)
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Leaf architecture and petiole anatomy of Philippine Dipterocarpus species (Dipterocarpaceae)

机译:菲律宾Dipterocarpus种类的叶子建筑和叶柄解剖学(Dipterocarpaceae)

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The study investigated the leaf architecture and petiole anatomy of eight Dipterocarpus (Dipterocarpaceae) species growing in Mount Makiling Forest Reserve (MMFR) in the Philippines to delineate the species, especially during their non-flowering phase. Leaf and petiole samples from MMFR were examined following the manual on leaf architecture studies. Freehand technique was used to examine the stomata and petiole characters. A UPGMA phenogram was then generated to determine the relationships among Dipterocarpus species using 26 leaf and petiole characters. The most useful characters to delineate Dipterocarpus species are the presence of trichomes, the arrangement of vascular bundles (medullary and outer vascular bundles), areolation, fimbrial vein, and leaf size. Other characters viz., the laminar ratio, blade class, laminar shape, base shape, margin type, and intersecondary, and layers and shape of parenchyma and collenchyma cells were useful as unifying characters. Therefore, certain characters of the leaf architecture and petiole anatomy may be used as taxonomic markers to delineate and correlate the Dipterocarpus species in the Philippines particularly during the nonflowering phase of the species. However, further investigations using samples from the wild populations of the species and molecular techniques may be done to elucidate the taxonomic use of the characters presented in this study.
机译:该研究调查了菲律宾山山森林储备(MMFR)中生长的八个Dipterocarpus(Dipterocarpaceae)物种的叶形建筑和叶柄解剖学,以描绘了物种,特别是在非开花期间。在叶建筑学研究手册之后,检查了MMFR的叶和叶柄样本。使用手绘技术来检查气孔和叶柄字符。然后生成UPGMA尺寸图以确定使用26叶和叶柄特征的Dipterocarpus物种之间的关系。描绘Dipterocarpus种类的最有用的角色是存在毛状体,血管束的布置(髓质和外血管束),粗糙,抑制静脉和叶片尺寸。其他角色Ziz,层流比,刀片等级,层状形状,基础形状,裕度型和差分,以及薄壁和抚慰性细胞的层和形状可用作统一性状。因此,叶架和叶柄解剖学的某些特征可以用作分类标记物,以描绘菲律宾的Dipterocarpus种类,特别是在物种的谐振期间。然而,可以进行使用来自物种和分子技术的野生种群的样品的进一步调查,以阐明本研究中呈现的特征的分类学使用。

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