首页> 外文期刊>International Journal of Botany >Xylem Conductivity and Anatomical Traits in Diverse Lianas and Small Tree Species from a Tropical Forest of Southwest Mexico
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Xylem Conductivity and Anatomical Traits in Diverse Lianas and Small Tree Species from a Tropical Forest of Southwest Mexico

机译:墨西哥西南部热带森林中多种藤本植物和小树种的木质部电导率和解剖特征

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Seven lianas and four small trees collected from a tropical rainforest of Southwest Mexico were studied to relate vessel diameter and vessel frequency to the relative hydraulic conductivity (RC), vulnerability to cavitation and anatomical traits on the secondary xylem. The seven liana species and four small tree species represented ten different families. Two liana species ( Passiflora ligularis A. Juss. and Vitis tiliifolia Humb. and Bonpl.) showed the highest vessel diameters, RC and vulnerability to cavitation. A small tree ( Petrea volubilis L.) presented the lowest values for vessel diameter, RC and cavitation. Narrow vessels determined the vessel frequency per mm2 (-0.58) while wider vessels showed low influence (-0.24). Wider and narrow vessels determined RC and vulnerability to cavitation (r = 0.59 to 0.76). Generally, wider vessels presented solitary distribution on the secondary xylem in liana and small tree species and narrow vessels were grouped in clusters. Liana species presented parenchyma in diverse forms, while parenchyma was scanty in the small tree species. The eleven species showed a broad range in RC and vulnerability to cavitation and showed diversity in anatomical traits on secondary xylem indicating that they have different anatomical adaptations with similar growth habit.
机译:研究了从墨西哥西南部热带雨林中收集的7株藤本植物和4棵小树,以将容器直径和频率与相对水力传导率(RC),易蚀性和次生木质部的解剖特征联系起来。七个藤本植物物种和四个小树种代表十个不同的科。两种藤本植物(西番莲(Passiflora ligularis A. Juss。)和葡萄(Vitis tiliifolia Humb。)和邦普勒(Bonpl。))显示出最高的血管直径,RC和易空化作用。一棵小树(Petrea volubilis L.)的容器直径,RC和空化表现最低。狭窄的血管决定了每毫米 2 的血管频率(-0.58),而较宽的血管表现出较低的影响(-0.24)。较宽和较窄的血管决定了RC和空化的脆弱性(r = 0.59至0.76)。通常,在藤本植物和小树种中,较宽的容器在次生木质部上表现出单独的分布,而较窄的容器则成簇排列。藤本植物的薄壁组织形式多种多样,而薄壁树种的薄壁组织薄弱。这11个物种在RC中表现出广泛的范围,并且对空化具有脆弱性,并且在次生木质部的解剖学特征上表现出多样性,表明它们具有不同的解剖学适应性和相似的生长习性。

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