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首页> 外文期刊>Plant Physiology >Distal Expression of knotted1 in Maize Leaves Leads to Reestablishment of Proximal/Distal Patterning and Leaf Dissection
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Distal Expression of knotted1 in Maize Leaves Leads to Reestablishment of Proximal/Distal Patterning and Leaf Dissection

机译:玉米叶片中knotted1的远端表达导致近端/远端模式和叶片解剖的重建

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摘要

Maize (Zea mays) leaves provide a useful system to study how proximal/distal patterning is established because of the distinct tissues found in the distal blade and the proximal sheath. Several mutants disrupt this pattern, including the dominant knotted1-like homeobox (knox) mutants. knox genes encode homeodomain proteins of the TALE superclass of transcription factors. Class I knox genes are expressed in the meristem and down-regulated as leaves initiate. Gain-of-function phenotypes result from misexpression in leaves. We identified a new dominant allele of maize knotted1, Kn1-DL, which contains a transposon insertion in the promoter in addition to a tandem duplication of the kn1 locus. In situ hybridization shows that kn1 is misexpressed in two different parts of the blade that correlate with the different phenotypes observed. When kn1 is misexpressed along the margins, flaps of sheath-like tissue form along the margins. Expression in the distal tip leads to premature termination of the midrib into a knot and leaf bifurcation. The gain-of-function phenotypes suggest that kn1 establishes proximal/distal patterning when expressed in distal locations and lead to the hypothesis that kn1 normally participates in the establishment of proximal/distal polarity in the incipient leaf.
机译:玉米叶(Zea mays)提供了一个有用的系统,用于研究由于在远侧刀片和近侧鞘中发现的不同组织而如何建立近端/远端图案。一些突变体破坏了这种模式,包括占主导地位的类似knotted1的同源异型盒(knox)突变体。诺克斯基因编码TALE超类转录因子的同源域蛋白。 I类诺克斯基因在分生组织中表达,并在叶片启动时被下调。功能获得表型由叶片中的错误表达引起。我们确定了一个新的玉米knotted1,Kn1-DL的玉米等位基因,它除启动子重复的kn1基因座外还包含一个转座子插入。原位杂交表明kn1在与观察到的不同表型相关的叶片的两个不同部分中表达错误。当kn1沿边缘表达不正确时,沿边缘会形成鞘状组织的皮瓣。在远端尖端的表达导致中脉过早地结成结和叶片分叉。功能获得表型表明,当在远端位置表达时,kn1建立近端/远端模式,并得出这样的假设:kn1通常参与初期叶片中近端/远端极性的建立。

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  • 来源
    《Plant Physiology》 |2009年第4期|p.1878-1888|共11页
  • 作者单位

    Department of Plant and Microbial Biology, University of California, Berkeley, California 94720 (J.R., D.L., S.H.);

    and Plant Gene Expression Center, United States Department of Agriculture-Agricultural Research Service, Albany, California 94710 (N.B., S.H.);

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