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脱落酸在菜豆根尖和近根段的吸收研究

A study of abscisic acid uptake by apical and proximal root segments of Phaseolus coccineus L.

机构信息

Department of Biochemistry, University of Cambridge, Tennis Court Road, CB2 IQW, Cambridge, U.K..

出版信息

Planta. 1980 Dec;150(4):312-20. doi: 10.1007/BF00384661.

DOI:10.1007/BF00384661
PMID:24306804
Abstract
  1. We investigated the pH and concentration dependence of abscisic acid uptake by short segments taken from different zones along the length of primary roots of Phaseolus coccineus L. (Runner bean). Tissue from all regions studied, up to and including the zone of lateral root initiation showed a non-saturable uptake component identifiable with passive diffusion of the undissociated species of abscisic acid. The net uptake increased through the elongation zone towards the apex, perhaps principally due to the increasing relation volume of cytoplasm (pH value 7-8; cf pH 4-6 for vacuole) acting as an anion trap. A saturable uptake component, Km=2.6±0.8 μmol dm(-3), is restricted to the apical 4-6 mm of the root (including lateral roots), is not of metabolic origin, and is likely to be a carrier. 2. No polarity of transport could be detected using donor blocks containing [2-(14)C]abscisic acid applied to 15 mm or 40 mm segments whose apical 10 mm had been removed; if the elongation zone were present in the test segments, a distribution of radioactivity that might be expected from acropetal polarity was obtained, but which may simply be accounted for by the greater uptake capacity of the elongating, relatively unvacuolated cells in the extending region of the root.
摘要
  1. 我们研究了脱落酸(ABA)在菜豆(Phaseolus coccineus L.,也被称为红花菜豆或红芸豆)主根不同区域短段上的 pH 值和浓度依赖性吸收。所有研究区域的组织,包括侧根起始区,都表现出一种非饱和吸收成分,可识别为 ABA 未离解物种的被动扩散。净吸收通过伸长区向根尖增加,可能主要归因于细胞质体积(pH 值 7-8;与液泡的 pH 4-6 相比)不断增加,起到阴离子陷阱的作用。一种饱和吸收成分,Km=2.6±0.8 μmol dm(-3),仅限于根尖 4-6 毫米(包括侧根),不是代谢起源的,可能是一种载体。

  2. 用含有[2-(14)C]ABA 的供体块处理 15 毫米或 40 毫米的段,去除其根尖 10 毫米,没有检测到运输的极性;如果测试段中存在伸长区,可能会从向顶极性获得放射性分布,但这可能仅仅是由于根延伸区中伸长、相对无液泡的细胞具有更大的吸收能力所致。

相似文献

1
A study of abscisic acid uptake by apical and proximal root segments of Phaseolus coccineus L.脱落酸在菜豆根尖和近根段的吸收研究
Planta. 1980 Dec;150(4):312-20. doi: 10.1007/BF00384661.
2
Basipetally polarised transport of [(3)H]gibberellin A 1 and [ (14)C]gibberellin A 3, and acropetal polarity of [ (14)C]indole-3-acetic acid transport, in stelar tissues of Phaseolus coccineus roots.在菜豆(Phaseolus coccineus)根的茎组织中,(3)H]赤霉素 A1 和 [(14)C]赤霉素 A3 呈基底极性运输,而 [(14)C]吲哚-3-乙酸则呈向顶极性运输。
Planta. 1974 Dec;118(4):311-22. doi: 10.1007/BF00385581.
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Carriers for abscisic acid and indole-3-acetic acid in primary roots: their regional localisation and thermodynamic driving forces.主根中脱落酸和吲哚-3-乙酸载体:它们的区域定位和热力学驱动力。
Planta. 1983 Feb;157(1):53-63. doi: 10.1007/BF00394540.
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[The effect of low temperature, nitrogen atmosphere and uncouplers on longitudinal distribution of radioactivity after acropetal and basipetal application of [2-(14)C] ABA in long root segments of Phaseolus coccineus L].[低温、氮气氛围和解偶联剂对菜豆长根段中向顶和向基施用[2-(14)C]脱落酸后放射性纵向分布的影响]
Planta. 1975 Jan;126(2):173-9. doi: 10.1007/BF00380621.
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Auxin transport in roots : VII. Uptake and movement of radioactivity from IAA-(14)C by Zea roots.生长素在根中的运输:VII.玉米根对 IAA-(14)C 的吸收和放射性的移动。
Planta. 1972 Jun;105(2):93-113. doi: 10.1007/BF00385571.
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Abscisic acid and apical dominance in Phaseolus coccineus L.脱落酸和菜豆顶端优势。
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Modulation of carrier-mediated uptake of abscisic acid by methyl jasmonate in Phaseolus coccineus L.茉莉酸甲酯对菜豆中脱落酸载体介导摄取的调控
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[Transport and metabolism of 2-[(14)C]abscisic acid in root segments of Phaseolus coccineus L].[菜豆根段中2-[(14)C]脱落酸的运输与代谢]
Planta. 1974 Jan;120(3):299-305. doi: 10.1007/BF00390298.
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Basipetal and acropetal transport of [3,4-(3)H]Gibberellin A 1 in short and long segments of Phaseolus coccineus second internode.菜豆第二节间短节和长节中[3,4-(3)H]赤霉素 A1 的向基和向顶运输。
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[Localisation of acropetal transport of 2-[(14)C]abscisic acid in roots of Phaseolus coccineus L. and evidence for a radial ABA-translocation between stele and cortex].[菜豆根中2-[(14)C]脱落酸向顶运输的定位及中柱与皮层间脱落酸径向转运的证据]
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2
Abscisic acid dynamics in roots detected with genetically encoded FRET sensors.利用基因编码的荧光共振能量转移传感器检测根中的脱落酸动态变化。
Elife. 2014 Apr 15;3:e01741. doi: 10.7554/eLife.01741.
3
Transport and metabolism of [2(14)-C]abscisic acid in maize root.[2(14)-C]脱落酸在玉米根中的运输和代谢。

本文引用的文献

1
The identification of (+)-abscisin II [(+)-dormin] in plants and measurement of its concentrations.在植物中鉴定(+)-脱落酸 II [(+)- dormin]及其浓度的测量。
Planta. 1967 Jun;76(2):93-113. doi: 10.1007/BF00385456.
2
[Transport and metabolism of 2-[(14)C]abscisic acid in root segments of Phaseolus coccineus L].[菜豆根段中2-[(14)C]脱落酸的运输与代谢]
Planta. 1974 Jan;120(3):299-305. doi: 10.1007/BF00390298.
3
Carrier-mediated auxin transport.载体介导的生长素运输。
Planta. 1982 Jun;154(6):556-61. doi: 10.1007/BF00403000.
4
Stress-related levels of abscisic acid in guard cell protoplasts of Vicia faba L.蚕豆保卫细胞原生质体中与应激相关的脱落酸水平。
Planta. 1982 Mar;154(1):24-8. doi: 10.1007/BF00385492.
5
Carriers for abscisic acid and indole-3-acetic acid in primary roots: their regional localisation and thermodynamic driving forces.主根中脱落酸和吲哚-3-乙酸载体:它们的区域定位和热力学驱动力。
Planta. 1983 Feb;157(1):53-63. doi: 10.1007/BF00394540.
6
The uptake of gibberellin A1 by suspension-cultured Spinacia oleracea cells has a carrier-mediated component.悬浮培养的菠菜细胞对赤霉素 A1 的摄取有载体介导的成分。
Planta. 1984 Apr;160(5):436-43. doi: 10.1007/BF00429760.
7
Modulation of carrier-mediated uptake of abscisic acid by methyl jasmonate in Phaseolus coccineus L.茉莉酸甲酯对菜豆中脱落酸载体介导摄取的调控
Planta. 1985 Oct;166(2):252-8. doi: 10.1007/BF00397356.
8
How far can a molecule of weak acid travel in the apoplast or xylem?弱酸分子在质外体或木质部中能移动多远?
Plant Physiol. 2006 Aug;141(4):1233-6. doi: 10.1104/pp.106.083790.
Planta. 1974 Jun;118(2):101-21. doi: 10.1007/BF00388387.
4
Abscisic acid as a root growth inhibitor: Physiological analyses.脱落酸作为一种根生长抑制剂:生理分析。
Planta. 1975 Jan;122(3):299-302. doi: 10.1007/BF00385279.
5
[Localisation of acropetal transport of 2-[(14)C]abscisic acid in roots of Phaseolus coccineus L. and evidence for a radial ABA-translocation between stele and cortex].[菜豆根中2-[(14)C]脱落酸向顶运输的定位及中柱与皮层间脱落酸径向转运的证据]
Planta. 1975 Jan;122(1):53-9. doi: 10.1007/BF00385404.
6
[The effect of low temperature, nitrogen atmosphere and uncouplers on longitudinal distribution of radioactivity after acropetal and basipetal application of [2-(14)C] ABA in long root segments of Phaseolus coccineus L].[低温、氮气氛围和解偶联剂对菜豆长根段中向顶和向基施用[2-(14)C]脱落酸后放射性纵向分布的影响]
Planta. 1975 Jan;126(2):173-9. doi: 10.1007/BF00380621.
7
The specificity of carrier-mediated auxin transport by suspension-cultured crown gall cells.悬浮培养的冠瘿细胞中介的生长素运输的特异性。
Planta. 1977 Jan;135(3):275-83. doi: 10.1007/BF00384900.
8
Gas chromatography-mass spectrometric determinations of abscisic acid levels in the cap and the apex of maize roots.采用气相色谱-质谱法测定玉米根冠和根尖中的脱落酸水平。
Planta. 1977 Jan;134(1):23-7. doi: 10.1007/BF00390089.
9
The effects of 2,4-dinitrophenol and chemical modifying reagents on auxin transport by suspension-cultured crown gall cells.2,4-二硝基苯酚和化学修饰试剂对悬浮培养冠瘿细胞中生长素运输的影响。
Planta. 1979 Jan;144(2):173-8. doi: 10.1007/BF00387267.
10
Uptake and distribution of abscisic acid in Commelina leaf epidermis.脱落酸在鸭跖草叶片表皮中的吸收和分布。
Planta. 1979 Jan;144(2):167-72. doi: 10.1007/BF00387266.