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多胺代谢及其与大麦种子糊粉层对赤霉素反应的关系。

Polyamine metabolism and its relation to response of the aleurone layers of barley seeds to gibberellic Acid.

作者信息

Lin P P

机构信息

Department of Agronomy, University of Kentucky, Lexington, Kentucky 40546-0091.

出版信息

Plant Physiol. 1984 Apr;74(4):975-83. doi: 10.1104/pp.74.4.975.

Abstract

Polyamine metabolism and its relation to the induction of alpha-amylase formation in the aleurone layers of barley seeds (Hordeum vulgare cv Himalaya) in response to gibberellic acid (GA(3)) has been investigated. A high-performance liquid chromatographic system has been employed for qualitative and quantitative analyses of putrescine (Put), cadaverine (Cad), spermidine (Spd), spermine (Spm), and agmatine (Agm).Active polyamine metabolism occurs in the aleurone cells of deembryonate barley half seeds during imbibition. The aleurone layers isolated from fully imbibed half seeds contain about 880 nanomoles of Put, 920 nanomoles of Spd, and 610 nanomoles of Spm as free form per gram tissue dry weight while the levels of Cad and Agm are relatively low. The polyamine levels do not change significantly in the aleurone layers in response to added GA(3) (1.5 micromolar) during the 8-hour lag period of the growth substance-induced formation of alpha-amylase. Also, the polyamine levels are not altered by the presence of abscisic acid (3 micromolar) which inhibits the enzyme induction by GA(3). Kinetic studies show that both applied [U-(14)C]ornithine and [U-(14)C]arginine are primarily incorporated into Put during 2 hours of incubation, but the incorporation is not significantly affected by added GA(3). Additionally, added GA(3) does not affect the uptake and turnover of [1,4-(14)C]Put, nor does it affect the conversion of Put --> Spd or Spd --> Spm. Treatment of the aleurone layers with GA(3) for 2 hours results in no significant changes in the total activities or the specific activities of ornithine decarboxylase and arginine decarboxylase.Experiments with polyamine synthesis inhibitors demonstrate that the level of Spd in the aleurone layers could be substantially reduced by the presence of methylglyoxal-bis(guanylhydrazone) (MGBG) during imbibition. MGBG treatment does not affect in vivo incorporation of [8-(14)C] adenosine into ATP. The lower the level of Spd the less alpha-amylase formation is induced by added GA(3). The reduction of GA(3)-induced alpha-amylase formation by MGBG treatment can be either completely or partially overcome by added Spd, depending upon the concentration of MGBG used in the imbibition medium. The results indicate that the early action of GA(3), with respect to induction of alpha-amylase formation in barley aleurone layers, appears to be not on polyamine metabolism. However, polyamines, particularly Spd, may be involved in regulation of the growth substance-dependent enzyme induction.

摘要

研究了大麦种子(喜马拉雅大麦品种)糊粉层中多胺代谢及其与赤霉素(GA₃)诱导α-淀粉酶形成的关系。采用高效液相色谱系统对腐胺(Put)、尸胺(Cad)、亚精胺(Spd)、精胺(Spm)和胍丁胺(Agm)进行定性和定量分析。在吸胀过程中,去胚大麦半种子的糊粉细胞中发生活跃的多胺代谢。从完全吸胀的半种子中分离出的糊粉层,每克组织干重含有约880纳摩尔游离形式的Put、920纳摩尔的Spd和610纳摩尔的Spm,而Cad和Agm的水平相对较低。在生长物质诱导α-淀粉酶形成的8小时滞后期,添加GA₃(1.5微摩尔)后,糊粉层中的多胺水平没有显著变化。此外,脱落酸(3微摩尔)的存在也不会改变多胺水平,脱落酸会抑制GA₃诱导的酶形成。动力学研究表明,在孵育2小时期间,施加的[U-(¹⁴)C]鸟氨酸和[U-(¹⁴)C]精氨酸主要掺入Put中,但添加GA₃对掺入没有显著影响。此外,添加GA₃不影响[1,4-(¹⁴)C]Put的摄取和周转,也不影响Put→Spd或Spd→Spm的转化。用GA₃处理糊粉层2小时,鸟氨酸脱羧酶和精氨酸脱羧酶的总活性或比活性没有显著变化。用多胺合成抑制剂进行的实验表明,在吸胀过程中,甲基乙二醛双(脒腙)(MGBG)的存在可使糊粉层中Spd的水平大幅降低。MGBG处理不影响[8-(¹⁴)C]腺苷在体内掺入ATP。Spd水平越低,添加GA₃诱导的α-淀粉酶形成越少。根据吸胀培养基中使用的MGBG浓度,添加Spd可以完全或部分克服MGBG处理对GA₃诱导的α-淀粉酶形成的抑制作用。结果表明,GA₃在大麦糊粉层中诱导α-淀粉酶形成的早期作用似乎与多胺代谢无关。然而,多胺,特别是Spd,可能参与生长物质依赖性酶诱导的调节。

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