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拟南芥显性Aux/IAA突变体axr2中花序茎的光依赖性向重力性和负向光性

Light-dependent gravitropism and negative phototropism of inflorescence stems in a dominant Aux/IAA mutant of Arabidopsis thaliana, axr2.

作者信息

Sato Atsuko, Sasaki Shu, Matsuzaki Jun, Yamamoto Kotaro T

机构信息

Division of Biological Sciences, Faculty of Science, Hokkaido University, Sapporo, 060-0810, Japan.

出版信息

J Plant Res. 2014 Sep;127(5):627-39. doi: 10.1007/s10265-014-0643-1. Epub 2014 Jun 18.

Abstract

Gravitropism and phototropism of the primary inflorescence stems were examined in a dominant Aux/IAA mutant of Arabidopsis, axr2/iaa7, which did not display either tropism in hypocotyls. axr2-1 stems completely lacked gravitropism in the dark but slowly regained it in light condition. Though wild-type stems showed positive phototropism, axr2 stems displayed negative phototropism with essentially the same light fluence-response curve as the wild type (WT). Application of 1-naphthaleneacetic acid-containing lanolin to the stem tips enhanced the positive phototropism of WT, and reduced the negative phototropism of axr2. Decapitation of stems caused a small negative phototropism in WT, but did not affect the negative phototropism of axr2. p-glycoprotein 1 (pgp1) pgp19 double mutants showed no phototropism, while decapitated double mutants exhibited negative phototropism. Expression of auxin-responsive IAA14/SLR, IAA19/MSG2 and SAUR50 genes was reduced in axr2 and pgp1 pgp19 stems relative to that of WT. These suggest that the phototropic response of stem is proportional to the auxin supply from the shoot apex, and that negative phototropism may be a basal response to unilateral blue-light irradiation when the levels of auxin or auxin signaling are reduced to the minimal level in the primary stems. In contrast, all of these treatments reduced or did not affect gravitropism in wild-type or axr2 stems. Tropic responses of the transgenic lines that expressed axr2-1 protein by the endodermis-specific promoter suggest that AXR2-dependent auxin response in the endodermis plays a more crucial role in gravitropism than in phototropism in stems but no significant roles in either tropism in hypocotyls.

摘要

在拟南芥的一个显性Aux/IAA突变体axr2/iaa7中检测了初生花序茎的向地性和向光性,该突变体在下胚轴中不表现出任何一种向性。axr2-1茎在黑暗中完全缺乏向地性,但在光照条件下缓慢恢复。虽然野生型茎表现出正向光性,但axr2茎表现出负向光性,其光通量响应曲线与野生型(WT)基本相同。将含1-萘乙酸的羊毛脂涂抹在茎尖可增强WT的正向光性,并降低axr2的负向光性。茎尖切除在WT中引起了小的负向光性,但不影响axr2的负向光性。P-糖蛋白1(pgp1)pgp19双突变体不表现向光性,而去顶双突变体表现出负向光性。与WT相比,axr2和pgp1 pgp19茎中生长素响应基因IAA14/SLR、IAA19/MSG2和SAUR50的表达降低。这些结果表明,茎的向光性反应与茎尖的生长素供应成正比,当生长素或生长素信号水平在初生茎中降低到最低水平时,负向光性可能是对单侧蓝光照射的一种基本反应。相比之下,所有这些处理都降低或不影响野生型或axr2茎的向地性。通过内皮层特异性启动子表达axr2-1蛋白的转基因系的向性反应表明,内皮层中依赖AXR2的生长素反应在茎的向地性中比在向光性中起更关键的作用,但在下胚轴的任何一种向性中都没有显著作用。

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