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水稻光敏色素A的氨基端缺失导致转基因烟草幼苗中烟草光敏色素A活性的显性负抑制。

An amino-terminal deletion of rice phytochrome A results in a dominant negative suppression of tobacco phytochrome A activity in transgenic tobacco seedlings.

作者信息

Emmler K, Stockhaus J, Chua N H, Schäfer E

机构信息

Institut für Biologie II, Albert-Ludwigs-Universität Freiburg, Germany.

出版信息

Planta. 1995;197(1):103-10. doi: 10.1007/BF00239945.

DOI:10.1007/BF00239945
PMID:7580859
Abstract

Overexpression of phytochrome A results in an increased inhibition of hypocotyl elongation under red and far-red light. We used this approach to assay for the function of N-terminal mutations of rice (Oryza sativa L.) phytochrome A. Transgenic tobacco seedlings that express the wild-type rice phytochrome A (RW), a rice phytochrome A lacking the first 80 amino acids (NTD) or a rice phytochrome A with a conversion of the first 10 serines into alanine residues (S/A) were compared with untransformed wild-type tobacco (Nicotiana tabacum L. cv. Xanthi) seedlings. Experiments under different fluence rates showed that RW and, even more strongly, S/A increased the response under both red and far-red light, whereas NTD decreased the response under far-red light but hardly altered the response under red light. These results indicate that NTD not only lacks residues essential for an increased response under red light but also distorts the wild-type response under far-red light. Wild-type rice phytochrome A and, even more so, S/A mediate an enhanced phytochrome A as well as phytochrome B function, whereas NTD interferes with the function of endogenous tobacco phytochrome A as well as that of rice phytochrome A when co-expressed in a single host. Experiments with seedlings of different ages and various times of irradiation under far-red light demonstrated that the effect of NTD is dependent on the stage of development. Our results suggest that the lack of the first 80 amino acids still allows a rice phytochrome A to interact with the phytochrome transduction pathway, albeit non-productively in tobacco seedlings.

摘要

光敏色素A的过表达导致在红光和远红光下对下胚轴伸长的抑制增强。我们采用这种方法来检测水稻(Oryza sativa L.)光敏色素A的N端突变的功能。将表达野生型水稻光敏色素A(RW)、缺失前80个氨基酸的水稻光敏色素A(NTD)或第10个丝氨酸被丙氨酸残基取代的水稻光敏色素A(S/A)的转基因烟草幼苗与未转化的野生型烟草(Nicotiana tabacum L. cv. Xanthi)幼苗进行比较。在不同光通量率下的实验表明,RW以及更显著的S/A在红光和远红光下均增强了反应,而NTD在远红光下降低了反应,但在红光下几乎未改变反应。这些结果表明,NTD不仅缺乏在红光下增强反应所必需的残基,而且还扭曲了远红光下的野生型反应。野生型水稻光敏色素A以及更显著的S/A介导了增强的光敏色素A以及光敏色素B的功能,而当在单个宿主中共表达时,NTD会干扰内源性烟草光敏色素A以及水稻光敏色素A的功能。对不同年龄的幼苗以及在远红光下不同照射时间的实验表明,NTD的作用取决于发育阶段。我们的结果表明,缺失前80个氨基酸仍允许水稻光敏色素A与光敏色素转导途径相互作用,尽管在烟草幼苗中是非生产性的。

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An amino-terminal deletion of rice phytochrome A results in a dominant negative suppression of tobacco phytochrome A activity in transgenic tobacco seedlings.水稻光敏色素A的氨基端缺失导致转基因烟草幼苗中烟草光敏色素A活性的显性负抑制。
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引用本文的文献

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Characterization of a strong dominant phytochrome A mutation unique to phytochrome A signal propagation.

本文引用的文献

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The serine-rich N-terminal domain of oat phytochrome a helps regulate light responses and subnuclear localization of the photoreceptor.燕麦光敏色素a富含丝氨酸的N端结构域有助于调节光反应和光感受器的亚核定位。
Plant Physiol. 2002 Jul;129(3):1127-37. doi: 10.1104/pp.010977.
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Photoresponses of transgenic Arabidopsis overexpressing the fern Adiantum capillus-veneris PHY1.过表达蕨类植物铁线蕨PHY1的转基因拟南芥的光反应
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表达燕麦光敏色素基因的转基因烟草植物的光反应。
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4
Light-grown plants of transgenic tobacco expressing an introduced oat phytochrome A gene under the control of a constitutive viral promoter exhibit persistent growth inhibition by far-red light.在组成型病毒启动子的控制下表达导入的燕麦光敏色素 A 基因的转基因烟草的光生长植株表现出对远红光的持续生长抑制。
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5
Characterization of Tobacco Expressing Functional Oat Phytochrome : Domains Responsible for the Rapid Degradation of Pfr Are Conserved between Monocots and Dicots.功能性燕麦光敏色素的烟草表达特性:调控 Pfr 快速降解的结构域在单子叶植物和双子叶植物中保守。
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Red Light-enhanced Phytochrome Pelletability: Re-examination and Further Characterization.红光增强的光敏色素可沉淀性:重新审视与进一步表征
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Plant Cell. 1989 Aug;1(8):775-782. doi: 10.1105/tpc.1.8.775.
10
Oat Phytochrome Is Biologically Active in Transgenic Tomatoes.燕麦光敏色素在转基因番茄中具有生物活性。
Plant Cell. 1989 Aug;1(8):765-773. doi: 10.1105/tpc.1.8.765.