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Maize YABBY Genes drooping leaf1 and drooping leaf2 Regulate Plant Architecture

机译:玉米YABBY基因下垂leaf1和下垂leaves2调节植物结构

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摘要

Leaf architecture directly influences canopy structure, consequentially affecting yield. We discovered a maize (Zea mays) mutant with aberrant leaf architecture, which we named drooping leaf1 (drl1). Pleiotropic mutations in drl1 affect leaf length and width, leaf angle, and internode length and diameter. These phenotypes are enhanced by natural variation at the drl2 enhancer locus, including reduced expression of the drl2-Mo17 allele in the Mo17 inbred. A second drl2 allele, produced by transposon mutagenesis, interacted synergistically with drl1 mutants and reduced drl2 transcript levels. The drl genes are required for proper leaf patterning, development and cell proliferation of leaf support tissues, and for restricting auricle expansion at the midrib. The paralogous loci encode maize CRABS CLAW co-orthologs in the YABBY family of transcriptional regulators. The drl genes are coexpressed in incipient and emergent leaf primordia at the shoot apex, but not in the vegetative meristem or stem. Genome-wide association studies using maize - (nested association mapping-recombinant inbred line) populations indicated that the drl loci reside within quantitative trait locus regions for leaf angle, leaf width, and internode length and identified rare single nucleotide polymorphisms with large phenotypic effects for the latter two traits. This study demonstrates that drl genes control the development of key agronomic traits in maize.
机译:叶的结构直接影响冠层结构,从而影响产量。我们发现了具有异常叶片结构的玉米(Zea mays)突变体,我们将其命名为下垂leaf1(drl1)。 drl1中的多效性突变会影响叶片的长度和宽度,叶片角度以及节间长度和直径。这些表型通过在drl2增强子基因座处的自然变化而增强,包括在Mo17自交系中drl2-Mo17等位基因的表达减少。转座子诱变产生的第二个drl2等位基因与drl1突变体协同相互作用,并降低了drl2转录水平。 drl基因是适当的叶片模式,叶片支持组织的发育和细胞增殖以及限制中肋耳廓扩张所必需的。旁系同源基因编码YABBY家族的转录调节子中的玉米CRABS CLAW同系同源物。 drl基因在初生和初生叶原基中在茎尖共表达,而在营养分生组织或茎中共表达。全基因组关联研究使用玉米(嵌套关联图谱重组近交系)种群表明,drl基因座位于叶片,叶片宽度和节间长度的数量性状基因座区域内,并确定了罕见的具有大表型效应的单核苷酸多态性。后两个特征。这项研究表明,drl基因控制着玉米关键农艺性状的发展。

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