热带蕨类植物叶片表皮解剖、耐旱性和生物力学的发育变化。

IF 3.6 2区 生物学 Q1 PLANT SCIENCES
Daniel Vieira-Goncalves, Adam B Roddy
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引用次数: 0

摘要

在整个叶片发育过程中,细胞的扩张是动态的,由局部细胞壁力学特性和克服细胞壁刚度导致塑性变形的胞内膨胀压力之间的平衡所驱动。在大多数叶片中,表皮铺装细胞开始发育为小的多角形细胞,但在成熟的叶片中,表皮铺装细胞通常形成高度裂片的拼图。然而,在这两个终点之间的发育和生物力学轨迹之前并没有得到充分的表征。本文研究了热带林下蕨类植物水蛭科(Microsorum grossum)的表皮铺装细胞的大小、形状、细胞壁厚度和水力性状在叶片膨大过程中的变化。当叶子的大小扩大了大约两个数量级时,表皮铺装细胞随着细胞壁的增厚而越来越裂。此外,这些发育变化的时间在不同的椎板上是不同的,首先开始于前基和中脉附近,其次是顶端和外侧区域。在膨胀过程中,叶片也发生了实质性的生理变化:随着细胞的膨胀和细胞壁的增厚,细胞内的膨压和体积细胞壁弹性模量都增加了,而膨压损失时的水势和最小表皮对水蒸气的电导都降低了。这些结果强调了叶片发育过程中解剖和生理性状之间的动态协调,为叶片发育的生物物理建模提供了有价值的数据,并强调了叶片发育过程中对干旱条件的脆弱性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developmental changes in epidermal anatomy, drought tolerance, and biomechanics in the leaves of a tropical fern.

Throughout leaf development, cell expansion is dynamic and driven by the balance between local cell wall mechanical properties and the intracellular turgor pressure that overcomes the stiffness of the cell wall leading to plastic deformation. The epidermal pavement cells in most leaves begin development as small, polygonally shaped cells, but in mature leaves epidermal pavement cells are often shaped as highly lobed puzzle pieces. However, the developmental and biomechanical trajectories between these two end points have not before been fully characterized. Here we characterized how epidermal pavement cell size and shape, cell wall thickness, and hydraulic traits change during leaf expansion in the tropical understory fern Microsorum grossum (Polypodiaceae). As fronds expanded by approximately two orders of magnitude in size, epidermal pavement cells became increasingly lobed as cell walls thickened. Furthermore, the timing of these developmental changes varied across the lamina, start first near the frond base and midrib, followed by more apical and lateral regions. During expansion, fronds also underwent substantial physiological changes: as cells expanded and cell walls thickened, intracellular turgor pressure and the bulk cell wall modulus of elasticity both increased while the water potential at turgor loss and the minimum epidermal conductance to water vapor both decreased. These results highlight the dynamic coordination between anatomical and physiological traits throughout leaf development, provide valuable data for biophysical modeling of leaf development, and highlight the vulnerability of developing leaves to drought conditions.

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来源期刊
Annals of botany
Annals of botany 生物-植物科学
CiteScore
7.90
自引率
4.80%
发文量
138
审稿时长
3 months
期刊介绍: Annals of Botany is an international plant science journal publishing novel and rigorous research in all areas of plant science. It is published monthly in both electronic and printed forms with at least two extra issues each year that focus on a particular theme in plant biology. The Journal is managed by the Annals of Botany Company, a not-for-profit educational charity established to promote plant science worldwide. The Journal publishes original research papers, invited and submitted review articles, ''Research in Context'' expanding on original work, ''Botanical Briefings'' as short overviews of important topics, and ''Viewpoints'' giving opinions. All papers in each issue are summarized briefly in Content Snapshots , there are topical news items in the Plant Cuttings section and Book Reviews . A rigorous review process ensures that readers are exposed to genuine and novel advances across a wide spectrum of botanical knowledge. All papers aim to advance knowledge and make a difference to our understanding of plant science.
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