Watahiki M K, Tatematsu K, Fujihira K, Yamamoto M, Yamamoto K T
Division of Biological Science, Graduate School of Environmental Earth Science, Hokkaido University, Sapporo, Japan.
Planta. 1999 Jan;207(3):362-9. doi: 10.1007/s004250050493.
Growth-curvature responses of hypocotyls of Arabidopsis thaliana (L.) Heynh. were measured in double mutants between msg1 and axr1, both of which are auxin-resistant and defective in hypocotyl growth curvature induced upon unilateral application of auxin. The msg1 axr1 double mutants showed no auxin-induced growth curvature, that is, they exhibited the msg1 phenotype, though the axr1 defects were partial. Hypocotyls of both the msg1 and axr1 mutants were partially defective in second-positive phototropism, whereas the double mutants lost the response completely. When grown on vertically held agar plates, the axr1 mutant showed normal hypocotyl gravitropism and the mutation did not affect the reduced hypocotyl gravitropism of msg1. Hypocotyls of msg1 and axr1 mutants grew upward like wild-type ones when grown along an agar surface, while they grew more randomly when grown without an agar support, suggesting that axr1 hypocotyls are not completely normal in gravitropism. The extent of defects in growth orientation increased in the order: msg1 axr1 double mutants > msg1 > axr1 > wild type. The hypocotyls of these mutants showed auxin resistance in the order: msg1 axr1 > axr1 > msg1 > wild type. The msg1 mutant had epinastic leaves and axr1 had wrinkled leaves; leaves of the msg1 axr1 double mutants were epinastic and wrinkled. These results suggest that MSG1 and AXR1 act independently in separate pathways of the reactions tested in the present study. In contrast, the phenotype of the msg1 aux1 double mutants shows that AUX1 is not significantly involved in these phenomena.
对拟南芥(Arabidopsis thaliana (L.) Heynh.)下胚轴的生长弯曲反应进行了测量,该测量是在msg1和axr1之间的双突变体中进行的,这两个突变体均对生长素具有抗性,并且在单侧施加生长素时诱导的下胚轴生长弯曲存在缺陷。msg1 axr1双突变体未表现出生长素诱导的生长弯曲,也就是说,尽管axr1的缺陷是部分性的,但它们表现出msg1的表型。msg1和axr1突变体的下胚轴在二次正向光性反应中均存在部分缺陷,而双突变体则完全丧失了该反应。当在垂直放置的琼脂平板上生长时,axr1突变体表现出正常的下胚轴向重力性,并且该突变不影响msg1下胚轴向重力性的降低。msg1和axr1突变体的下胚轴在沿着琼脂表面生长时像野生型一样向上生长,而在没有琼脂支撑的情况下生长时则生长得更加随机,这表明axr1下胚轴在向重力性方面并不完全正常。生长方向缺陷的程度按以下顺序增加:msg1 axr1双突变体>msg1>axr1>野生型。这些突变体的下胚轴对生长素的抗性按以下顺序排列:msg1 axr1>axr1>msg1>野生型。msg1突变体有叶片偏下生长的现象,axr1有叶片皱缩的现象;msg1 axr1双突变体的叶片既偏下生长又皱缩。这些结果表明,MSG1和AXR1在本研究测试的反应的不同途径中独立起作用。相比之下,msg1 aux1双突变体的表型表明AUX1在这些现象中没有显著参与。