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Asymmetric Auxin Response Precedes Asymmetric Growth and Differentiation of asymmetric leaf1 and asymmetric leaf2 Arabidopsis Leaves

机译:不对称的生长素应答优先于不对称的leaf1和不对称的leaf2拟南芥叶的不对称生长和分化

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摘要

We have analyzed the development of leaf shape and vascular pattern in leaves mutant for ASYMMETRIC LEAVES1 (AS1) or AS2 and compared the timing of developmental landmarks to cellular response to auxin, as measured by expression of the DR5:β-glucuronidase (GUS) transgene and to cell division, as measured by expression of the cycB1:GUS transgene. We found that the earliest visible defect in both as1 and as2 first leaves is the asymmetric placement of auxin response at the distal leaf tip. This precedes visible changes in leaf morphology, asymmetric placement of the distal margin gap, formation of margin gaps along the leaf border, asymmetric distribution of marginal auxin, and asymmetry in cell division patterns. Moreover, treatment of developing leaves with either exogenous auxin or an auxin transport inhibitor eliminates asymmetric auxin response and subsequent asymmetric leaf development. We propose that the initial asymmetric placement of auxin at the leaf tip gives rise to later asymmetries in the internal auxin sources, which subsequently result in asymmetrical cell differentiation and division patterns.
机译:我们已经分析了ASYMMETRIC LEAVES1(AS1)或AS2的叶片突变体中叶片形状和血管模式的发育,并比较了通过DR5:β-葡萄糖醛酸苷酶(GUS)转基因表达来衡量发育标志物对细胞对生长素的反应的时间。并通过cycB1:GUS转基因的表达测量细胞分裂。我们发现最早出现在as1和as2第一片叶子中的缺陷是在远端叶尖处生长素反应的不对称位置。这先于叶片形态的可见变化,远侧边缘间隙的不对称放置,沿叶缘的边缘间隙的形成,边缘生长素的不对称分布以及细胞分裂模式的不对称。此外,用外源生长素或生长素运输抑制剂处理发育中的叶片消除了不对称的生长素应答和随后的不对称叶片发育。我们提出,在叶尖最初生长素的不对称放置会在内部生长素源中引起后来的不对称,随后导致细胞不对称分化和分裂模式的不对称。

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