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被茸毛的纹孔窝和梯状穿孔板形态改变了被子植物导管直径、气候和最大植物高度之间的关系。

Vestured pits and scalariform perforation plate morphology modify the relationships between angiosperm vessel diameter, climate and maximum plant height.

机构信息

Holden Arboretum, 9500 Sperry Rd, Kirtland, OH, 44094, USA.

Naturalis Biodiversity Center, Leiden University, PO Box 9517, Leiden, 2300RA, the Netherlands.

出版信息

New Phytol. 2019 Mar;221(4):1802-1813. doi: 10.1111/nph.15536. Epub 2018 Nov 19.

DOI:10.1111/nph.15536
PMID:30312484
Abstract

Shared ancestry among species and correlation between vessel diameter and plant height can obscure the mechanisms linking vessel diameter to current climate distributions of angiosperms. Because wood is complex, various traits may interact to influence vessel function. Specifically, pit vesturing (lignified cell wall protuberances associated with bordered pits) and perforation plate morphology could alter the relationships between vessel diameter, climate and plant height. Using phylogenetically informed analyses, we tested for associations between vessel diameter, climate and maximum plant height across angiosperm species with different pit vesturing (presence/absence) and perforation plate morphology (simple/scalariform and quantitative variation). We show significantly larger changes in vessel diameter and maximum plant height across climates for species with vestures and simple perforation plates, compared to nonvestured species and those with scalariform plates. We also found a significantly greater increase in height for a given increase in vessel diameter with lower percentage of scalariform plates. Our study provides novel insights into the evolution of angiosperm xylem by showing that vessel pit vesturing and perforation plate morphologies can modify relationships among xylem vessels, climate and height. Our findings highlight the complexity of xylem adaptations to climate, substantiating an integrative view of xylem function in the study of wood evolution.

摘要

物种之间的共同祖先以及管径与植物高度之间的相关性,可能会掩盖将管径与被子植物当前气候分布联系起来的机制。由于木材的复杂性,各种特征可能会相互作用,影响导管的功能。具体来说,纹孔衬质(与具缘纹孔相关的木质化细胞壁突起)和穿孔板形态可能会改变管径、气候和植物高度之间的关系。我们使用系统发育信息分析,检验了具有不同纹孔衬质(存在/不存在)和穿孔板形态(简单/网状和定量变化)的被子植物物种中,管径、气候和最大植物高度之间的关系。与无衬质物种和具网状穿孔板的物种相比,我们发现具有衬质和简单穿孔板的物种在不同气候条件下的管径和最大植物高度变化显著更大。我们还发现,随着具较低比例网状穿孔板的增加,管径的增加与高度的增加呈显著正相关。我们的研究通过表明导管纹孔衬质和穿孔板形态可以改变木质部导管、气候和高度之间的关系,为被子植物木质部的进化提供了新的见解。我们的研究结果强调了木质部对气候的适应性的复杂性,支持了在研究木材进化时对木质部功能的综合观点。

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Vestured pits and scalariform perforation plate morphology modify the relationships between angiosperm vessel diameter, climate and maximum plant height.被茸毛的纹孔窝和梯状穿孔板形态改变了被子植物导管直径、气候和最大植物高度之间的关系。
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