Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, 03202 Elche, Alicante, Spain.
Plant Cell Physiol. 2010 Oct;51(10):1661-73. doi: 10.1093/pcp/pcq123. Epub 2010 Aug 24.
The characteristically flat structure of Arabidopsis thaliana vegetative leaves requires coordinating the growth of the epidermal, palisade mesophyll, spongy mesophyll and vascular tissues. Mutations disrupting such coordination or the specific growth properties of any of these tissues can cause hyponasty, epinasty, waviness or other deviations from flatness. Here, we show that the incurvata6 (icu6) semi-dominant allele of the AUXIN RESISTANT3 (AXR3) gene causes leaf hyponasty. Cotyledons and leaves of icu6/AXR3 plants exhibited reduced size of adaxial pavement cells, and abnormal expansion of palisade mesophyll cells. Enhanced auxin responses in the adaxial domain of icu6/AXR3 developing cotyledons and leaves correlated with increased cell divisions in the adaxial epidermis. Leaf incurvature in icu6/AXR3 leaves was alleviated by loss-of-function alleles of the ASYMMETRIC LEAVES1 (AS1) and AS2 genes, which restrict the expression of class I KNOX genes to the shoot apical meristem and regulate cell proliferation in leaf primordia. Taken together, our results suggest that an interaction between auxin responses and the AS1-AS2 pathway coordinates tissue growth during Arabidopsis thaliana leaf expansion.
拟南芥营养叶的典型扁平结构需要协调表皮、栅栏薄壁组织、海绵薄壁组织和维管束组织的生长。破坏这种协调或任何这些组织特定生长特性的突变会导致下弯、上弯、波浪形或其他偏离平坦的情况。在这里,我们表明 AUXIN RESISTANT3(AXR3)基因的 incurvata6(icu6)半显性等位基因导致叶片下弯。icu6/AXR3 植株的子叶和叶片表现出近轴铺石细胞大小减小,栅栏薄壁组织细胞异常扩张。icu6/AXR3 发育中的子叶和叶片近轴区域的增强生长素反应与近轴表皮细胞分裂增加相关。icu6/AXR3 叶片的叶卷曲通过 ASYMMETRIC LEAVES1(AS1)和 AS2 基因的功能丧失等位基因得到缓解,AS1 和 AS2 基因将 I 类 KNOX 基因的表达限制在茎尖分生组织,并调节叶片原基中的细胞增殖。总之,我们的结果表明,生长素反应和 AS1-AS2 途径之间的相互作用协调了拟南芥叶片扩展过程中的组织生长。