方向性不对称和方向性因素:从复杂对称的花中得到的启示

IF 2.6 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Evolution & Development Pub Date : 2022-06-16 DOI:10.1111/ede.12402
Sanja Budečević, Sanja Manitašević Jovanović, Ana Vuleta, Branka Tucić, Christian Peter Klingenberg
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引用次数: 2

摘要

方向性不对称是左右对称结构的系统性差异,或复杂对称结构中重复部分的系统性差异。本研究探讨了鸢尾花中产生定向不对称的因素,鸢尾花的结构具有复杂的对称性,这使得同时研究多个这样的因素成为可能。采用几何形态计量学的方法,对三种类型的花器官——垂枝、标准枝和花柱枝的形状和大小进行了定量分析。对于每朵花,本研究记录了花器官的罗盘方向以及它们相对于每朵花的两个路径的解剖方向。为了表征全花水平上的方向性不对称,我们计算了花在罗盘方向和相对方向上的平均大小和形状的差异,并对每个器官的左右不对称进行了评估。没有发现花的大小或形状差异与解剖位置有关;这可能与鸢尾花的末端位置有关,表明鸢尾花可能没有正面-背面极性,这在许多其他类群中非常突出。与罗盘方向相关的形状有明显的方向不对称,可能是由一致的环境梯度(如太阳辐照度)驱动的。每个花器官的左右半部分之间也存在明显的方向不对称,这很可能与花蕾中器官的排列有关。这些发现表明,不同的因素在不同程度上产生了方向性不对称。在不记录花的方向的传统分析中,这些影响是不可能相互分离的,可能会作为波动不对称的一部分被包括在内。
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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Directional asymmetry and direction-giving factors: Lessons from flowers with complex symmetry

Directional asymmetry is a systematic difference between the left and right sides for structures with bilateral symmetry or a systematic differentiation among repeated parts for complex symmetry. This study explores factors that produce directional asymmetry in the flower of Iris pumila, a structure with complex symmetry that makes it possible to investigate multiple such factors simultaneously. The shapes and sizes of three types of floral organs, the falls, standards, and style branches, were quantified using the methods of geometric morphometrics. For each flower, this study recorded the compass orientations of floral organs as well as their anatomical orientations relative to the two spathes subtending each flower. To characterize directional asymmetry at the whole-flower level, differences in the average sizes and shapes according to compass orientation and relative orientation were computed, and the left–right asymmetry was also evaluated for each individual organ. No size or shape differences within flowers were found in relation to anatomical position; this may relate to the terminal position of flowers in Iris pumila, suggesting that there may be no adaxial–abaxial polarity, which is very prominent in many other taxa. There was clear directional asymmetry of shape in relation to compass orientation, presumably driven by a consistent environmental gradient such as solar irradiance. There was also clear directional asymmetry between left and right halves of every floral organ, most likely related to the arrangement of organs in the bud. These findings indicate that different factors are acting to produce directional asymmetry at different levels. In conventional analyses not recording flower orientations, these effects would be impossible to disentangle from each other and would probably be included as part of fluctuating asymmetry.

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来源期刊
Evolution & Development
Evolution & Development 生物-发育生物学
CiteScore
6.30
自引率
3.40%
发文量
26
审稿时长
>12 weeks
期刊介绍: Evolution & Development serves as a voice for the rapidly growing research community at the interface of evolutionary and developmental biology. The exciting re-integration of these two fields, after almost a century''s separation, holds much promise as the focus of a broader synthesis of biological thought. Evolution & Development publishes works that address the evolution/development interface from a diversity of angles. The journal welcomes papers from paleontologists, population biologists, developmental biologists, and molecular biologists, but also encourages submissions from professionals in other fields where relevant research is being carried out, from mathematics to the history and philosophy of science.
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Issue information Front cover From two segments and beyond: Investigating the onset of regeneration in Syllis malaquini Issue information A new motile animal with implications for the evolution of axial polarity from the Ediacaran of South Australia
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