Atypical tracheid organization in proximal wood of late Palaeozoic Sigillaria approximata Fontaine et White (Lycopsida)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-07-25 DOI:10.1093/botlinnean/boad028
Michael P. D'Antonio
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引用次数: 1

Abstract

It is thought that arborescent lycopsid cambial expansion kept pace with radial wood growth via tangential broadening of the fusiform initials, resulting in progressive outward expansion in tracheid diameters and an absence of de novo tracheid files. This pattern appears in distal lycopsid axes but has not been investigated in proximal-most trunk vasculature where wood was thickest and primary xylem thinnest. Here, a ground-level trunk vasculature fossil of Sigillaria approximata in transverse section is described. This proximal vasculature diverges from the expectations of the current lycopsid wood production model in two main ways: first, inner and outer wood tracheids have approximately the same lumen diameters, such that there is no trend towards centrifugally increasing lumen diameters; and second, de novo cell files commonly appear within the wood. The outwards rate of cambial circumference expansion closely tracks the outwards rate of new wood tracheid file appearance, suggesting that the addition of new files is the primary way the cambium expanded proximally. Because this vasculature can only be studied in transverse section, the developmental mode producing new files cannot be determined. However, evidence from this specimen is sufficient to demonstrate that arborescent lycopsid wood production was more complex than previously understood.
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晚古生代方丹贝母近端木材中的非典型管胞组织
人们认为,树状石松质形成层的扩张通过梭形首字母的切向加宽与木材的径向生长保持同步,导致管胞直径逐渐向外扩张,并且没有新的管胞锉。这种模式出现在远端石松轴上,但尚未在木材最厚和初生木质部最薄的最近端树干脉管系统中进行研究。本文描述了近贝母的一个地面干脉管系统化石的横截面。这种近端脉管系统在两个主要方面与当前石松木材生产模型的预期不同:首先,内部和外部木材管胞具有大致相同的管腔直径,因此没有离心增加管腔直径的趋势;其次,新细胞锉通常出现在木材中。形成层圆周向外扩展的速率与新木材管胞锉刀外观的向外速率密切相关,表明添加新锉刀是形成层向近端扩展的主要方式。由于这种脉管系统只能在横截面上进行研究,因此无法确定产生新档案的发育模式。然而,来自该标本的证据足以证明,树状石松木材的生产比以前所理解的更复杂。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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