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拟南芥的ARG1-LIKE2基因在一个与磷酸葡萄糖变位酶(PGM)途径在遗传上不同的重力信号转导途径中发挥作用。

The ARG1-LIKE2 gene of Arabidopsis functions in a gravity signal transduction pathway that is genetically distinct from the PGM pathway.

作者信息

Guan Changhui, Rosen Elizabeth S, Boonsirichai Kanokporn, Poff Kenneth L, Masson Patrick H

机构信息

Laboratory of Genetics, University of Wisconsin, 445 Henry Mall, Madison, WI 53706, USA.

出版信息

Plant Physiol. 2003 Sep;133(1):100-12. doi: 10.1104/pp.103.023358.

Abstract

The arl2 mutants of Arabidopsis display altered root and hypocotyl gravitropism, whereas their inflorescence stems are fully gravitropic. Interestingly, mutant roots respond like the wild type to phytohormones and an inhibitor of polar auxin transport. Also, their cap columella cells accumulate starch similarly to wild-type cells, and mutant hypocotyls display strong phototropic responses to lateral light stimulation. The ARL2 gene encodes a DnaJ-like protein similar to ARG1, another protein previously implicated in gravity signal transduction in Arabidopsis seedlings. ARL2 is expressed at low levels in all organs of seedlings and plants. arl2-1 arg1-2 double mutant roots display kinetics of gravitropism similar to those of single mutants. However, double mutants carrying both arl2-1 and pgm-1 (a mutation in the starch-biosynthetic gene PHOSPHOGLUCOMUTASE) at the homozygous state display a more pronounced root gravitropic defect than the single mutants. On the other hand, seedlings with a null mutation in ARL1, a paralog of ARG1 and ARL2, behave similarly to the wild type in gravitropism and other related assays. Taken together, the results suggest that ARG1 and ARL2 function in the same gravity signal transduction pathway in the hypocotyl and root of Arabidopsis seedlings, distinct from the pathway involving PGM.

摘要

拟南芥的arl2突变体表现出根和下胚轴向重力性改变,而它们的花序茎向重力性正常。有趣的是,突变体根对植物激素和生长素极性运输抑制剂的反应与野生型相似。此外,它们的根冠柱细胞积累淀粉的情况与野生型细胞相似,并且突变体下胚轴对侧向光刺激表现出强烈的向光性反应。ARL2基因编码一种类似于ARG1的DnaJ样蛋白,ARG1是另一种先前涉及拟南芥幼苗重力信号转导的蛋白。ARL2在幼苗和植物的所有器官中低水平表达。arl2-1 arg1-2双突变体根的向重力性动力学与单突变体相似。然而,纯合状态下同时携带arl2-1和pgm-1(淀粉生物合成基因磷酸葡萄糖变位酶的突变)的双突变体比单突变体表现出更明显的根向重力性缺陷。另一方面,在重力性和其他相关测定中,ARG1和ARL2的旁系同源基因ARL1发生无效突变的幼苗表现与野生型相似。综上所述,结果表明ARG1和ARL2在拟南芥幼苗下胚轴和根的同一重力信号转导途径中起作用,这与涉及PGM的途径不同。

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