松科扁平和针状的叶片共享一个保守的正向-反向极性遗传网络,但为了适应光合作用而分化。

IF 3.4 Q1 Agricultural and Biological Sciences BMC Evolutionary Biology Pub Date : 2020-10-07 DOI:10.1186/s12862-020-01694-5
Hong Du, Jin-Hua Ran, Yuan-Yuan Feng, Xiao-Quan Wang
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引用次数: 5

摘要

背景:叶子具有高度多样化的形态。然而,在大约2亿年的进化历史中,松树科的叶子相对单调,通常被统称为“针”,尽管它们的长度、宽度和截面形状各不相同。确定松科植物叶片是否具有相似的形态生理特征,甚至一致的发育和适应机制,将具有重要的意义。结果:在对11种松科植物叶片形态解剖研究的基础上,研究了针状叶和扁平叶两种叶片中正反极性基因的表达模式,并比较了两种叶片的光合能力。研究发现,尽管叶肉组织分化和分布方向上的解剖结构不同,但两种类型的叶片具有相同的维管系统空间格局和近轴-背向遗传网络。此外,针状叶片的物种比扁平叶片的物种表现出更好的光合能力。结论:本研究首次证明了在不同松科植物叶片发育过程中存在一个保守的控制正反极性的遗传模块。
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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The flattened and needlelike leaves of the pine family (Pinaceae) share a conserved genetic network for adaxial-abaxial polarity but have diverged for photosynthetic adaptation.

Background: Leaves have highly diverse morphologies. However, with an evolutionary history of approximately 200 million years, leaves of the pine family are relatively monotonous and often collectively called "needles", although they vary in length, width and cross-section shapes. It would be of great interest to determine whether Pinaceae leaves share similar morpho-physiological features and even consistent developmental and adaptive mechanisms.

Results: Based on a detailed morpho-anatomical study of leaves from all 11 Pinaceae genera, we particularly investigated the expression patterns of adaxial-abaxial polarity genes in two types of leaves (needlelike and flattened) and compared their photosynthetic capacities. We found that the two types of leaves share conserved spatial patterning of vasculatures and genetic networks for adaxial-abaxial polarity, although they display different anatomical structures in the mesophyll tissue differentiation and distribution direction. In addition, the species with needlelike leaves exhibited better photosynthetic capacity than the species with flattened leaves.

Conclusions: Our study provides the first evidence for the existence of a conserved genetic module controlling adaxial-abaxial polarity in the development of different Pinaceae leaves.

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来源期刊
BMC Evolutionary Biology
BMC Evolutionary Biology 生物-进化生物学
CiteScore
5.80
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: BMC Evolutionary Biology is an open access, peer-reviewed journal that considers articles on all aspects of molecular and non-molecular evolution of all organisms, as well as phylogenetics and palaeontology.
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