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本文引用的文献

1
The aux1 Mutation of Arabidopsis Confers Both Auxin and Ethylene Resistance.拟南芥 aux1 突变体同时具有抗生长素和抗乙烯的特性。
Plant Physiol. 1990 Nov;94(3):1462-6. doi: 10.1104/pp.94.3.1462.
2
Transport of indoleacetic Acid in intact corn coleoptiles.完整玉米胚芽鞘中吲哚乙酸的运输。
Plant Physiol. 1990 Oct;94(2):417-23. doi: 10.1104/pp.94.2.417.
3
Effect of Ethylene Treatment on Polar IAA Transport, Net IAA Uptake and Specific Binding of N-1-Naphthylphthalamic Acid in Tissues and Microsomes Isolated from Etiolated Pea Epicotyls.乙烯处理对从黄化豌豆上胚轴分离的组织和微粒体中极性吲哚-3-乙酸运输、吲哚-3-乙酸净吸收及N-1-萘基邻苯二甲酸特异性结合的影响
Plant Physiol. 1988 Nov;88(3):795-9. doi: 10.1104/pp.88.3.795.
4
Auxin Transport Inhibitors: III. Chemical Requirements of a Class of Auxin Transport Inhibitors.生长素运输抑制剂:III. 一类生长素运输抑制剂的化学需求。
Plant Physiol. 1977 Dec;60(6):826-9. doi: 10.1104/pp.60.6.826.
5
Requirement of the Auxin Polar Transport System in Early Stages of Arabidopsis Floral Bud Formation.生长素极性运输系统在拟南芥花芽形成早期的需求
Plant Cell. 1991 Jul;3(7):677-684. doi: 10.1105/tpc.3.7.677.
6
What remains of the Cholodny-Went theory? A summing up.Cholodny-Went理论还剩下什么?总结。
Plant Cell Environ. 1992 Sep;15(7):793-4.
7
Computer-based video digitizer analysis of surface extension in maize roots: kinetics of growth rate changes during gravitropism.基于计算机的玉米根表面延伸视频数字化分析:向地性过程中生长速率变化的动力学
Planta. 1991 Feb;183(3):381-90. doi: 10.1007/BF00197737.
8
Correlations between gravitropic curvature and auxin movement across gravistimulated roots of Zea mays.玉米重力刺激根的向重力性弯曲与生长素运输之间的相关性。
Plant Physiol. 1990;92(3):792-6. doi: 10.1104/pp.92.3.792.
9
Gravitropism: interaction of sensitivity modulation and effector redistribution.向重力性:敏感性调节与效应器重新分布的相互作用。
Plant Physiol. 1991;95(1):1-5. doi: 10.1104/pp.95.1.1.
10
Effect of asymmetric auxin application on Helianthus hypocotyl curvature.不对称施加生长素对向日葵下胚轴弯曲的影响。
Plant Physiol. 1989;91(2):466-8. doi: 10.1104/pp.91.2.466.

AUX1通过促进根尖组织内生长素的摄取来调节拟南芥的根向地性。

AUX1 regulates root gravitropism in Arabidopsis by facilitating auxin uptake within root apical tissues.

作者信息

Marchant A, Kargul J, May S T, Muller P, Delbarre A, Perrot-Rechenmann C, Bennett M J

机构信息

Division of Plant Sciences, School of Biological Sciences, University of Nottingham, NG7 2RD, UK.

出版信息

EMBO J. 1999 Apr 15;18(8):2066-73. doi: 10.1093/emboj/18.8.2066.

DOI:10.1093/emboj/18.8.2066
PMID:10205161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1171291/
Abstract

Plants employ a specialized transport system composed of separate influx and efflux carriers to mobilize the plant hormone auxin between its site(s) of synthesis and action. Mutations within the permease-like AUX1 protein significantly reduce the rate of carrier-mediated auxin uptake within Arabidopsis roots, conferring an agravitropic phenotype. We are able to bypass the defect within auxin uptake and restore the gravitropic root phenotype of aux1 by growing mutant seedlings in the presence of the membrane-permeable synthetic auxin, 1-naphthaleneacetic acid. We illustrate that AUX1 expression overlaps that previously described for the auxin efflux carrier, AtPIN2, using transgenic lines expressing an AUX1 promoter::uidA (GUS) gene. Finally, we demonstrate that AUX1 regulates gravitropic curvature by acting in unison with the auxin efflux carrier to co-ordinate the localized redistribution of auxin within the Arabidopsis root apex. Our results provide the first example of a developmental role for the auxin influx carrier within higher plants and supply new insight into the molecular basis of gravitropic signalling.

摘要

植物利用一个由独立的流入和流出载体组成的专门运输系统,在植物激素生长素的合成位点和作用位点之间转运生长素。类通透酶AUX1蛋白内的突变显著降低了拟南芥根中载体介导的生长素摄取速率,赋予了无向重力性表型。通过在膜通透性合成生长素1-萘乙酸存在的情况下培养突变幼苗,我们能够绕过生长素摄取缺陷并恢复aux1的向重力性根表型。我们利用表达AUX1启动子::uidA(GUS)基因的转基因系表明,AUX1的表达与先前描述的生长素流出载体AtPIN2的表达重叠。最后,我们证明AUX1通过与生长素流出载体协同作用来调节向重力性弯曲,以协调拟南芥根尖内生长素的局部重新分布。我们的结果提供了高等植物中生长素流入载体发育作用的首个实例,并为向重力性信号传导的分子基础提供了新的见解。