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PUNCTATE VASCULAR EXPRESSION1 Is a Novel Maize Gene Required for Leaf Pattern Formation That Functions Downstream of the Trans-Acting Small Interfering RNA Pathway

机译:点状血管表达1是叶片模式形成所需的新型玉米基因该基因在反式作用的小干扰RNA途径的下游起作用

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摘要

The maize (Zea mays) gene RAGGED SEEDLING2-R (RGD2-R) encodes an ARGONAUTE7-like protein required for the biogenesis of trans-acting small interfering RNA, which regulates the accumulation of AUXIN RESPONSE FACTOR3A transcripts in shoots. Although dorsiventral polarity is established in the narrow and cylindrical leaves of rgd2-R mutant plants, swapping of adaxial/abaxial epidermal identity occurs and suggests a model wherein RGD2 is required to coordinate dorsiventral and mediolateral patterning in maize leaves. Laser microdissection-microarray analyses of the rgd2-R mutant shoot apical meristem identified a novel gene, PUNCTATE VASCULAR EXPRESSION1 (PVE1), that is down-regulated in rgd2-R mutant apices. Transcripts of PVE1 provide an early molecular marker for vascular morphogenesis. Reverse genetic analyses suggest that PVE1 functions during vascular development and in mediolateral and dorsiventral patterning of maize leaves. Molecular genetic analyses of PVE1 and of rgd2-R;pve1-M2 double mutants suggest a model wherein PVE1 functions downstream of RGD2 in a pathway that intersects and interacts with the trans-acting small interfering RNA pathway.
机译:玉米(Zea mays)基因RAGGED SEEDLING2-R(RGD2-R)编码反式作用小干扰RNA的生物合成所需的ARGONAUTE7样蛋白,该蛋白调节芽中AUXIN RESPONSE FACTOR3A转录本的积累。尽管在rgd2-R突变植物的狭窄和圆柱形叶片中建立了背齿极性,但发生了近/表皮表皮同一性的互换,这表明需要一个模型,其中RGD2需要协调玉米叶片的背齿和中外侧图案。激光显微切割-微阵列分析rgd2-R突变的茎顶端分生组织鉴定出一个新的基因,点状血管表达1(PVE1),在rgd2-R突变的顶点中被下调。 PVE1的转录本为血管形态发生提供了早期的分子标记。反向遗传分析表明,PVE1在血管发育以及玉米叶片的中外侧和背侧图案中起作用。对PVE1和rgd2-R; pve1-M2双重突变体的分子遗传学分析表明,其中PVE1在与反式作用小干扰RNA途径相交并相互作用的途径中,RGD2的下游起作用。

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