Key Laboratory of Biorheological Science and Technology, Ministry of Education, Chongqing 400044, China.
Plant Sci. 2011 Jun;180(6):757-65. doi: 10.1016/j.plantsci.2011.03.001. Epub 2011 Mar 15.
Here we characterized a classic rice (Oryza sativa) drooping leaf2 mutant (named dl2). The dl2 allele affects both the midrib development and the total leaf venation pattern. Leaf anatomy results revealed the central vein lacks both clear cells and the adaxial small vascular bundle in dl2 mutant, which seemed to cause the drooping leaf phenotype. The dl2 leaves contain more small veins, and the size of the vascular cylinder in dl2 leaf is also altered. Furthermore, similar anatomy alteration was found in the dl2 roots. A reduction in the number of xylem and phloem poles in the central vascular cylinder in dl2 roots was observed and the diameter of cortical cell is also reduced. In addition, the alterations of the vegetative development such as the longer leaf blade and fewer adventitious and lateral roots were also observed in dl2. The physiological mechanism underlying the morphological and vascular alterations of dl2 was further studied. The result demonstrated that the dl2 vascular patterning distortions are strictly associated with a defective PAT (polar auxin transport) activity and sensitivity to different classes of polar auxin transport inhibitors. Finally, the drooping leaf phenotype of dl2 is coupled to a defective response to auxin.
在这里,我们对一个经典的水稻(Oryza sativa)垂叶 2 突变体(命名为 dl2)进行了研究。dl2 等位基因影响中脉发育和整个叶片脉络模式。叶片解剖结果表明,dl2 突变体的中央静脉既没有明显的细胞,也没有腹侧小维管束,这似乎导致了垂叶表型。dl2 叶片含有更多的小叶脉,且 dl2 叶片的维管束直径也发生了改变。此外,在 dl2 根中也发现了类似的解剖结构改变。在 dl2 根的中央维管束中,木质部和韧皮部极点的数量减少,皮层细胞的直径也减小。此外,在 dl2 中还观察到了营养生长的改变,如叶片更长、不定根和侧根更少。进一步研究了 dl2 形态和脉管改变的生理机制。结果表明,dl2 血管模式的扭曲与 PAT(极性生长素运输)活性的缺陷以及对不同类别的极性生长素运输抑制剂的敏感性严格相关。最后,dl2 的垂叶表型与生长素反应缺陷有关。