Vascular variants in seed plants-a developmental perspective.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-07-01 DOI:10.1093/aobpla/plad036
Israel L Cunha Neto
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引用次数: 2

Abstract

Over centuries of plant morphological research, biologists have enthusiastically explored how distinct vascular arrangements have diversified. These investigations have focused on the evolution of steles and secondary growth and examined the diversity of vascular tissues (xylem and phloem), including atypical developmental pathways generated through modifications to the typical development of ancestral ontogenies. A shared vernacular has evolved for communicating on the diversity of alternative ontogenies in seed plants. Botanists have traditionally used the term 'anomalous secondary growth' which was later renamed to 'cambial variants' by late Dr. Sherwin Carlquist (1988). However, the term 'cambial variants' can be vague in meaning since it is applied for developmental pathways that do not necessarily originate from cambial activity. Here, we review the 'cambial variants' concept and propose the term 'vascular variants' as a more inclusive overarching framework to interpret alternative vascular ontogenies in plants. In this framework, vascular variants are defined by their developmental origin (instead of anatomical patterns), allowing the classification of alternative vascular ontogenies into three categories: (i) procambial variants, (ii) cambial variants and (iii) ectopic cambia. Each category includes several anatomical patterns. Vascular variants, which represent broader developmental based groups, can be applied to both extant and fossil plants, and thereby offer a more adequate term from an evolutionary perspective. An overview of the developmental diversity and phylogenetic distribution of vascular variants across selected seed plants is provided. Finally, this viewpoint discusses the evolutionary implications of vascular variants.

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种子植物的维管变异——一个发育的视角。
在几个世纪的植物形态学研究中,生物学家们热衷于探索不同的维管排列是如何多样化的。这些研究集中在石柱和次生生长的进化上,并研究了维管组织(木质部和韧皮部)的多样性,包括通过对祖先个体发育的典型发育进行修饰而产生的非典型发育途径。为了交流种子植物中不同个体发生的多样性,已经形成了一种共同的白话。植物学家传统上使用的术语是“异常次生生长”,后来由已故的Sherwin Carlquist博士(1988)重新命名为“形成层变异”。然而,术语“形成层变异”的含义可能是模糊的,因为它适用于不一定源于形成层活动的发育途径。在这里,我们回顾了“形成层变异”的概念,并提出了“维管变异”这一术语,作为一个更具包容性的总体框架来解释植物的其他维管个体发生。在这个框架中,血管变异是根据它们的发育起源(而不是解剖模式)来定义的,允许将血管变异分为三类:(i)原形成层变异,(ii)形成层变异和(iii)异位形成层变异。每一类都包括几种解剖模式。维管变异代表了更广泛的发育基础群,可以应用于现存和化石植物,因此从进化的角度提供了一个更合适的术语。综述了种子植物中维管束变异的发育多样性和系统发育分布。最后,这一观点讨论了血管变异的进化意义。
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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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