对于复叶被子植物来说,叶内抗栓性变异并不常见。

IF 2.4 2区 生物学 Q2 PLANT SCIENCES American Journal of Botany Pub Date : 2024-12-16 DOI:10.1002/ajb2.16447
Ian M. Rimer, Scott A. M. McAdam
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引用次数: 0

摘要

前提:水力分割是由于植物各器官之间抗栓塞性的差异造成的,在干旱期间,水力分割为叶子等较便宜的植物器官提供了一层牺牲层,以保护茎等较昂贵的器官。在两种复叶树种中观察到叶内水力分割,小叶比轴或叶柄更脆弱。许多草本植物都有复叶,一些物种的小叶在叶板的底部与脉状体相关,这可以提供一种防止栓塞在叶片内扩散的解剖学手段,因为脉状体中有更多的血管末梢。方法:采用光学易损法研究6种草本树种和1种复叶落叶树种叶片组织抗栓塞性是否存在差异。我们的物种选择包括掌状和羽状复叶两种,每一种在小叶的基部都有一个脉状。结果:我们发现相当大的变化在栓塞阻力跨物种测量,但没有证据表明在栓塞阻力在叶片内的变化。在两种有蒲氏体的物种中,我们观察到主要的栓塞事件穿过蒲氏体,从轴或叶柄扩散到叶层,并以相同的水势栓塞两个组织。结论:我们得出的结论是,由栓塞阻力变化引起的叶内水力分割并不是复叶物种的普遍现象,并且pulvinus的存在并不能提供栓塞在复叶中传播的屏障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Within-leaf variation in embolism resistance is not a rule for compound-leaved angiosperms

Premise

Hydraulic segmentation, caused by the difference in embolism resistance across plant organs, provides a sacrificial layer of cheaper plant organs, like leaves, to protect more costly organs, such as stems, during drought. Within-leaf hydraulic segmentation has been observed in two compound-leaved tree species, with leaflets being more vulnerable than the rachis or petiole. Many herbaceous species have compound leaves, and some species have leaflets that are associated with pulvini at the base of the lamina, which could provide an anatomical means of preventing embolism from spreading within a leaf because of the higher number of vessel endings in the pulvinus.

Methods

We used the optical vulnerability method to investigate whether differences in embolism resistance were observed across the leaf tissues of six herbaceous species and one deciduous tree species with compound leaves. Our species selection included both palmately and pinnately-compound leaved species, one of each with a pulvinus at the base of the leaflets.

Results

We found considerable variation in embolism resistance across the species measured, but no evidence of variation in embolism resistance within the leaf. In two species with pulvini, we observed major embolism events crossing the pulvinus, spreading from the rachis or petiole into the lamina, and embolizing both tissues at the same water potential.

Conclusions

We conclude that within-leaf hydraulic segmentation, caused by variation in embolism resistance, is not a universal phenomenon to compound-leaved species and that the presence of a pulvinus does not provide a barrier to embolism spread in compound leaves.

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来源期刊
American Journal of Botany
American Journal of Botany 生物-植物科学
CiteScore
4.90
自引率
6.70%
发文量
171
审稿时长
3 months
期刊介绍: The American Journal of Botany (AJB), the flagship journal of the Botanical Society of America (BSA), publishes peer-reviewed, innovative, significant research of interest to a wide audience of plant scientists in all areas of plant biology (structure, function, development, diversity, genetics, evolution, systematics), all levels of organization (molecular to ecosystem), and all plant groups and allied organisms (cyanobacteria, algae, fungi, and lichens). AJB requires authors to frame their research questions and discuss their results in terms of major questions of plant biology. In general, papers that are too narrowly focused, purely descriptive, natural history, broad surveys, or that contain only preliminary data will not be considered.
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