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本文引用的文献

1
Effects of o(2) concentration on rice seedlings.氧气浓度对水稻幼苗的影响。
Plant Physiol. 1983 Jan;71(1):30-4. doi: 10.1104/pp.71.1.30.
2
Enzymes for acetaldehyde and ethanol formation in legume nodules.豆类根瘤中乙醛和乙醇形成的酶。
Plant Physiol. 1982 Aug;70(2):388-92. doi: 10.1104/pp.70.2.388.
3
Ethylene, Ethane, Acetaldehyde, and Ethanol Production By Plants under Stress.植物在胁迫下产生乙烯、乙烷、乙醛和乙醇。
Plant Physiol. 1982 Apr;69(4):840-7. doi: 10.1104/pp.69.4.840.
4
Wheat Alcohol Dehydrogenase Isozymes: PURIFICATION, CHARACTERIZATION, AND GENE EXPRESSION.小麦醇脱氢酶同工酶:纯化、特性及基因表达。
Plant Physiol. 1980 Mar;65(3):518-22. doi: 10.1104/pp.65.3.518.
5
Metabolic and ultrastructural changes associated with flooding at low temperature in winter wheat and barley.与冬小麦和大麦低温水淹相关的代谢和超微结构变化。
Plant Physiol. 1979 Oct;64(4):635-9. doi: 10.1104/pp.64.4.635.
6
Subcellular distribution of gluconeogenetic enzymes in germinating castor bean endosperm.蓖麻籽萌发胚乳中糖异生酶的亚细胞分布
Plant Physiol. 1979 Jul;64(1):31-7. doi: 10.1104/pp.64.1.31.
7
Toxicity of Anaerobic Metabolites Accumulating in Winter Wheat Seedlings during Ice Encasement.冰套包裹下冬小麦幼苗中积累的厌氧代谢物的毒性。
Plant Physiol. 1979 Jul;64(1):120-5. doi: 10.1104/pp.64.1.120.
8
Gluconeogenesis in the castor bean endosperm: I. Changes in glycolytic intermediates.蓖麻籽胚乳中的糖异生作用:I. 糖酵解中间产物的变化
Plant Physiol. 1971 Jan;47(1):48-52. doi: 10.1104/pp.47.1.48.
9
Nicotinamide cofactors (NAD and NADP) in glyoxysomes, mitochondria, and plastids isolated from castor bean endosperm.蓖麻籽胚乳中分离出的乙醛酸循环体、线粒体和质体中的烟酰胺辅因子(NAD和NADP)。
Arch Biochem Biophys. 1982 Apr 15;215(1):274-9. doi: 10.1016/0003-9861(82)90305-8.
10
Participation of the glyoxylate cycle in the metabolism of ethanol by castor bean endosperm tissues.蓖麻籽胚乳组织中乙醛酸循环在乙醇代谢中的参与作用。
Can J Biochem. 1966 Apr;44(4):423-32. doi: 10.1139/o66-052.

发芽蓖麻中的厌氧胁迫、乙醇代谢及其对亚细胞细胞器的影响。

Anaerobic stress in germinating castor bean, ethanol metabolism, and effects on subcellular organelles.

机构信息

Department of Biological Sciences, George Washington University, Washington, D.C. 20052.

出版信息

Plant Physiol. 1985 Apr;77(4):978-83. doi: 10.1104/pp.77.4.978.

DOI:10.1104/pp.77.4.978
PMID:16664175
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1064644/
Abstract

Endosperms from castor beans (Ricinus communis) germinated for 0 to 6 days were exposed to anoxia for 0 to 15 hours. Ethanol, the only alcohol detected by gas chromatography in the tissue, accumulates to a concentration of 15 millimolar during the first 2 to 4 hours of anoxia and subsequently decreases. The absolute amount of ethanol varies from 10 micromoles per 5-day endosperm after 4 hours anoxia to less than 1 micromole in 2-day endosperm after 4 hours. Lactate content is 2 micromoles or less per endosperm. Alcohol dehydrogenase and pyruvate decarboxylase activities, which are localized in cytosolic fractions, are not greatly affected by anoxia. The recoveries of the marker enzymes and protein in endoplasmic reticulum (ER) and mitochondrial fractions decrease during anoxia. After 15 hours, the recovery of NADPH cytochrome c reductase is 15% of that in controls, fumarase is 50%, and catalase is 75%.Glyoxysomes and ER are capable of converting ethanol to acetaldehyde which was measured using the fluorogenic reagent, 5,5-dimethyl-1,3-cyclohexanedione. The glyoxysomal activity is dependent on a hydrogen peroxide-generating substrate and the ER is dependent on NADPH. However, these activities are less than 3% of the alcohol dehydrogenase activity.

摘要

蓖麻(Ricinus communis)胚乳在萌发 0 至 6 天后,被暴露于缺氧环境中 0 至 15 小时。胚乳组织中用气相色谱法检测到的唯一醇类物质是乙醇,在缺氧的前 2 至 4 小时内,乙醇积累到 15 毫摩尔的浓度,随后减少。乙醇的绝对含量在 4 小时缺氧后的 5 天胚乳中为 10 微摩尔,在 2 天胚乳中则少于 1 微摩尔。每个胚乳中的乳酸含量为 2 微摩尔或更少。定位于胞质部分的醇脱氢酶和丙酮酸脱羧酶活性受缺氧影响不大。内质网(ER)和线粒体部分的标记酶和蛋白质的回收率在缺氧过程中下降。15 小时后,NADPH 细胞色素 c 还原酶的回收率为对照的 15%,富马酸酶为 50%,过氧化氢酶为 75%。乙醛酸体和 ER 能够将乙醇转化为乙醛,乙醛可以使用荧光试剂 5,5-二甲基-1,3-环己二酮进行测量。乙醛酸体的活性依赖于产生过氧化氢的底物,而 ER 依赖于 NADPH。然而,这些活性小于醇脱氢酶活性的 3%。