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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Left-right leaf asymmetry in decussate and distichous phyllotactic systems
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Left-right leaf asymmetry in decussate and distichous phyllotactic systems

机译:讨论性和离散性叶序系统中的左右叶不对称

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摘要

Leaves in plants with spiral phyllotaxy exhibit directional asymmetries, such that all the leaves originating from a meristem of a particular chirality are similarly asymmetric relative to each other. Models of auxin flux capable of recapitulating spiral phyllotaxis predict handed auxin asymmetries in initiating leaf primordia with empirically verifiable effects on superficially bilaterally symmetric leaves. Here, we extend a similar analysis of leaf asymmetry to decussate and distichous phyllotaxy. We found that our simulation models of these two patterns predicted mirrored asymmetries in auxin distribution in leaf primordia pairs. To empirically verify the morphological consequences of asymmetric auxin distribution, we analysed the morphology of a tomato sister-of-pin-formed1a (sopin1a) mutant, entire-2, in which spiral phyllotaxy consistently transitions to a decussate state. Shifts in the displacement of leaflets on the left and right sides of entire-2 leaf pairs mirror each other, corroborating predicted model results. We then analyse the shape of more than 800 common ivy (Hedera helix) and more than 3000 grapevine (Vitis and Ampelopsis spp.) leaf pairs and find statistical enrichment of predicted mirrored asymmetries. Our results demonstrate that left-right auxin asymmetries in models of decussate and distichous phyllotaxy successfully predict mirrored asymmetric leaf morphologies in superficially symmetric leaves.
机译:具有螺旋状叶序的植物中的叶片表现出方向性不对称性,因此,所有源自特定手性分生组织的叶片都彼此相似地不对称。能够概括螺旋叶序的生长素通量模型可以预测叶片原基萌发过程中的手工生长素不对称性,并通过经验验证其对表面对称的双侧叶的影响。在这里,我们将对叶片不对称性的类似分析扩展到讨论和区分叶序。我们发现,这两种模式的仿真模型预测了叶片原基对中生长素分布的镜像不对称性。为了从经验上验证不对称生长素分布的形态学后果,我们分析了pin-2形成的番茄姊妹的pin-of-formed1a(sopin1a)突变体的形态,其中螺旋叶序不断地过渡到一个破灭状态。整个2对叶对的左侧和右侧的小叶位移的移位相互镜像,从而证实了预测的模型结果。然后,我们分析了800多个常春藤(常春藤属螺旋)和3000多个葡萄藤(葡萄属和Ampelopsis spp。)叶对的形状,并发现了预测的镜像不对称现象的统计丰富度。我们的结果表明,在讨论的和离散的叶序的模型中,左右生长素的不对称性成功地预测了表面对称叶片中镜像的不对称叶片形态。

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