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1
Interaction of cryptochrome 1, phytochrome, and ion fluxes in blue-light-induced shrinking of Arabidopsis hypocotyl protoplasts.隐花色素1、光敏色素与离子通量在蓝光诱导拟南芥下胚轴原生质体收缩中的相互作用
Plant Physiol. 1998 Aug;117(4):1265-79. doi: 10.1104/pp.117.4.1265.
2
Conditional synergism between cryptochrome 1 and phytochrome B is shown by the analysis of phyA, phyB, and hy4 simple, double, and triple mutants in Arabidopsis.通过对拟南芥中phyA、phyB和hy4单突变体、双突变体及三突变体的分析,揭示了隐花色素1与光敏色素B之间的条件协同作用。
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3
Co-action between phytochrome B and HY4 in Arabidopsis thaliana.拟南芥中光敏色素B与HY4之间的协同作用。
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4
The blue light receptor cryptochrome 1 can act independently of phytochrome A and B in Arabidopsis thaliana.蓝光受体隐花色素1在拟南芥中可独立于光敏色素A和B发挥作用。
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The blue-light receptor cryptochrome 1 shows functional dependence on phytochrome A or phytochrome B in Arabidopsis thaliana.蓝光受体隐花色素1在拟南芥中表现出对光敏色素A或光敏色素B的功能依赖性。
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Genetic interactions between phytochrome A, phytochrome B, and cryptochrome 1 during Arabidopsis development.拟南芥发育过程中光敏色素A、光敏色素B和隐花色素1之间的遗传相互作用。
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shl, a New set of Arabidopsis mutants with exaggerated developmental responses to available red, far-red, and blue light.shl,一组对可用红光、远红光和蓝光具有夸张发育反应的拟南芥新突变体。
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Mutant analyses define multiple roles for phytochrome C in Arabidopsis photomorphogenesis.突变分析确定了拟南芥中光敏色素C在光形态建成中的多种作用。
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Cryptochrome 1, cryptochrome 2, and phytochrome a co-activate the chloroplast psbD blue light-responsive promoter.隐花色素1、隐花色素2和光敏色素a共同激活叶绿体psbD蓝光响应启动子。
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Two genetically separable phases of growth inhibition induced by blue light in Arabidopsis seedlings.蓝光诱导拟南芥幼苗生长抑制的两个基因可分离阶段。
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本文引用的文献

1
The role of calcium ions in phytochrome-controlled swelling of etiolated wheat (Triticum aestivum L.) protoplasts.钙离子在光形态建成控制的黄化小麦(Triticum aestivum L.)原生质体膨胀中的作用。
Planta. 1988 Apr;174(1):94-100. doi: 10.1007/BF00394879.
2
Regulation of pea epicotyl elongation by blue light : fluence-response relationships and growth distribution.蓝光对豌豆下胚轴伸长的调控:光通量-反应关系和生长分布。
Plant Physiol. 1989 Jan;89(1):293-8. doi: 10.1104/pp.89.1.293.
3
Effect of vanadate, molybdate, and azide on membrane-associated ATPase and soluble phosphatase activities of corn roots.钒酸盐、钼酸盐和叠氮化物对玉米根膜结合ATP酶及可溶性磷酸酶活性的影响。
Plant Physiol. 1982 Nov;70(5):1335-40. doi: 10.1104/pp.70.5.1335.
4
Rapid Suppression of Growth by Blue Light: OCCURRENCE, TIME COURSE, AND GENERAL CHARACTERISTICS.蓝光对生长的快速抑制:发生情况、时间进程及一般特征
Plant Physiol. 1981 Mar;67(3):584-90. doi: 10.1104/pp.67.3.584.
5
Vanadate inhibits blue light-stimulated swelling of vicia guard cell protoplasts.钒酸盐抑制蓝光刺激下菜豆保卫细胞原生质体的膨胀。
Plant Physiol. 1992 Nov;100(3):1567-70. doi: 10.1104/pp.100.3.1567.
6
Voltage dependence of K channels in guard-cell protoplasts.保卫细胞原生质体钾通道的电压依赖性。
Proc Natl Acad Sci U S A. 1987 Jun;84(12):4108-12. doi: 10.1073/pnas.84.12.4108.
7
The H+/Cl- Symporter in Root-Hair Cells of Sinapis alba (An Electrophysiological Study Using Ion-Selective Microelectrodes).白芥根毛细胞中的H⁺/Cl⁻同向转运体(使用离子选择性微电极的电生理学研究)
Plant Physiol. 1994 Nov;106(3):1131-1136. doi: 10.1104/pp.106.3.1131.
8
Phytochrome A and Phytochrome B Have Overlapping but Distinct Functions in Arabidopsis Development.光敏色素A和光敏色素B在拟南芥发育过程中具有重叠但不同的功能。
Plant Physiol. 1994 Apr;104(4):1139-1149. doi: 10.1104/pp.104.4.1139.
9
Isolation and Initial Characterization of Arabidopsis Mutants That Are Deficient in Phytochrome A.拟南芥光敏色素A缺陷突变体的分离与初步鉴定
Plant Physiol. 1993 May;102(1):269-277. doi: 10.1104/pp.102.1.269.
10
Blue-Light-Induced Shrinking of Protoplasts from Maize Coleoptiles and Its Relationship to Coleoptile Growth.蓝光诱导玉米胚芽鞘原生质体收缩及其与胚芽鞘生长的关系
Plant Physiol. 1997 Jul;114(3):1009-1020. doi: 10.1104/pp.114.3.1009.

隐花色素1、光敏色素与离子通量在蓝光诱导拟南芥下胚轴原生质体收缩中的相互作用

Interaction of cryptochrome 1, phytochrome, and ion fluxes in blue-light-induced shrinking of Arabidopsis hypocotyl protoplasts.

作者信息

Wang X, Iino M

机构信息

Botanical Gardens, Faculty of Science, Osaka City University, Kisaichi, Katano-shi, Osaka 576, Japan.

出版信息

Plant Physiol. 1998 Aug;117(4):1265-79. doi: 10.1104/pp.117.4.1265.

DOI:10.1104/pp.117.4.1265
PMID:9701582
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC34890/
Abstract

Protoplasts isolated from red-light-adapted Arabidopsis hypocotyls and incubated under red light exhibited rapid and transient shrinking within a period of 20 min in response to a blue-light pulse and following the onset of continuous blue light. Long-persisting shrinkage was also observed during continuous stimulation. Protoplasts from a hy4 mutant and the phytochrome-deficient phyA/phyB double mutant of Arabidopsis showed little response, whereas those from phyA and phyB mutants showed a partial response. It is concluded that the shrinking response itself is mediated by the HY4 gene product, cryptochrome 1, whereas the blue-light responsiveness is strictly controlled by phytochromes A and B, with a greater contribution by phytochrome B. It is shown further that the far-red-absorbing form of phytochrome (Pfr) was not required during or after, but was required before blue-light perception. Furthermore, a component that directly determines the blue-light responsiveness was generated by Pfr after a lag of 15 min over a 15-min period and decayed with similar kinetics after removal of Pfr by far-red light. The anion-channel blocker 5-nitro-2-(3-phenylpropylamino)-benzoic acid prevented the shrinking response. This result, together with those in the literature and the kinetic features of shrinking, suggests that anion channels are activated first, and outward-rectifying cation channels are subsequently activated, resulting in continued net effluxes of Cl- and K+. The postshrinking volume recovery is achieved by K+ and Cl- influxes, with contribution by the proton motive force. External Ca2+ has no role in shrinking and the recovery. The gradual swelling of protoplasts that prevails under background red light is shown to be a phytochrome-mediated response in which phytochrome A contributes more than phytochrome B.

摘要

从红光适应的拟南芥下胚轴分离得到的原生质体,在红光下孵育,在蓝光脉冲后以及持续蓝光开始后的20分钟内,会迅速且短暂地收缩。在持续刺激过程中也观察到了长期持续的收缩。来自拟南芥hy4突变体和缺乏光敏色素的phyA/phyB双突变体的原生质体几乎没有反应,而来自phyA和phyB突变体的原生质体则有部分反应。得出的结论是,收缩反应本身由HY4基因产物隐花色素1介导,而蓝光反应性则严格由光敏色素A和B控制,其中光敏色素B的贡献更大。进一步表明,在蓝光感知期间或之后不需要光敏色素的远红光吸收形式(Pfr),但在蓝光感知之前需要。此外,一个直接决定蓝光反应性的成分在15分钟的延迟后由Pfr在15分钟内产生,并在通过远红光去除Pfr后以类似的动力学衰减。阴离子通道阻滞剂5-硝基-2-(3-苯基丙基氨基)苯甲酸可阻止收缩反应。这一结果,连同文献中的结果以及收缩的动力学特征表明,阴离子通道首先被激活,随后外向整流阳离子通道被激活,导致Cl-和K+持续净外流。收缩后的体积恢复是通过K+和Cl-内流实现的,质子动力也有贡献。外部Ca2+在收缩和恢复过程中不起作用。在背景红光下普遍存在的原生质体逐渐肿胀被证明是一种光敏色素介导的反应,其中光敏色素A的贡献大于光敏色素B。