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本文引用的文献

1
Establishment and maintenance of friable, embryogenic maize callus and the involvement of L-proline.建立和维持易碎的、胚胎发生的玉米愈伤组织以及 L-脯氨酸的参与。
Planta. 1985 May;164(2):207-14. doi: 10.1007/BF00396083.
2
Growth inhibition by exogenous proline and its metabolism in saltgrass (Distichlis spicata) suspension cultures.盐草(Distichlis spicata)悬浮培养中外源脯氨酸的生长抑制及其代谢。
Plant Cell Rep. 1988 Aug;7(5):305-8. doi: 10.1007/BF00269924.
3
Exogenous proline application reduces phytotoxic effects of selenium by minimising oxidative stress and improves growth in bean (Phaseolus vulgaris L.) seedlings.外源脯氨酸的应用通过最小化氧化应激减轻了硒的植物毒性作用,并提高了菜豆(Phaseolus vulgaris L.)幼苗的生长。
Biol Trace Elem Res. 2011 Jun;140(3):354-67. doi: 10.1007/s12011-010-8699-9. Epub 2010 May 9.
4
Exogenous proline effects on photosynthetic performance and antioxidant defense system of young olive tree.外源脯氨酸对幼龄橄榄树光合作用及抗氧化防御系统的影响。
J Agric Food Chem. 2010 Apr 14;58(7):4216-22. doi: 10.1021/jf9041479.
5
Proline: a multifunctional amino acid.脯氨酸:一种多功能氨基酸。
Trends Plant Sci. 2010 Feb;15(2):89-97. doi: 10.1016/j.tplants.2009.11.009. Epub 2009 Dec 23.
6
Exogenous proline and glycinebetaine increase antioxidant enzyme activities and confer tolerance to cadmium stress in cultured tobacco cells.外源脯氨酸和甘氨酸甜菜碱可提高培养烟草细胞中抗氧化酶的活性,并赋予其对镉胁迫的耐受性。
J Plant Physiol. 2009 Oct 15;166(15):1587-97. doi: 10.1016/j.jplph.2009.04.002. Epub 2009 May 7.
7
Proline accumulation and transcriptional regulation of proline biosynthesis and degradation in Brassica napus.甘蓝型油菜中脯氨酸的积累以及脯氨酸生物合成与降解的转录调控
BMB Rep. 2009 Jan 31;42(1):28-34. doi: 10.5483/bmbrep.2009.42.1.028.
8
Protective effects of proline against cadmium toxicity in micropropagated hyperaccumulator, Solanum nigrum L.脯氨酸对微繁超富集植物龙葵镉毒性的保护作用
Plant Cell Rep. 2009 Feb;28(2):325-33. doi: 10.1007/s00299-008-0643-5. Epub 2008 Nov 29.
9
Relationship between proline and Hg2+-induced oxidative stress in a tolerant rice mutant.脯氨酸与耐汞水稻突变体中汞离子诱导的氧化应激之间的关系。
Arch Environ Contam Toxicol. 2009 May;56(4):723-31. doi: 10.1007/s00244-008-9226-2. Epub 2008 Sep 12.
10
Proline accumulation in plants: a review.植物中脯氨酸的积累:综述
Amino Acids. 2008 Nov;35(4):753-9. doi: 10.1007/s00726-008-0061-6. Epub 2008 Apr 1.

脯氨酸在变化环境中的作用:综述。

Role of proline under changing environments: a review.

机构信息

Department of Botany & Microbiology, Faculty of Science, King Saudi University, Riyadh, Saudi Arabia.

出版信息

Plant Signal Behav. 2012 Nov;7(11):1456-66. doi: 10.4161/psb.21949. Epub 2012 Sep 5.

DOI:10.4161/psb.21949
PMID:22951402
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3548871/
Abstract

When exposed to stressful conditions, plants accumulate an array of metabolites, particularly amino acids. Amino acids have traditionally been considered as precursors to and constituents of proteins, and play an important role in plant metabolism and development. A large body of data suggests a positive correlation between proline accumulation and plant stress. Proline, an amino acid, plays a highly beneficial role in plants exposed to various stress conditions. Besides acting as an excellent osmolyte, proline plays three major roles during stress, i.e., as a metal chelator, an antioxidative defense molecule and a signaling molecule. Review of the literature indicates that a stressful environment results in an overproduction of proline in plants which in turn imparts stress tolerance by maintaining cell turgor or osmotic balance; stabilizing membranes thereby preventing electrolyte leakage; and bringing concentrations of reactive oxygen species (ROS) within normal ranges, thus preventing oxidative burst in plants. Reports indicate enhanced stress tolerance when proline is supplied exogenously at low concentrations. However, some reports indicate toxic effects of proline when supplied exogenously at higher concentrations. In this article, we review and discuss the effects of exogenous proline on plants exposed to various abiotic stresses. Numerous examples of successful application of exogenous proline to improve stress tolerance are presented. The roles played by exogenous proline under varying environments have been critically examined and reviewed.

摘要

当植物暴露于应激条件下时,会积累一系列代谢物,特别是氨基酸。氨基酸传统上被认为是蛋白质的前体和组成部分,在植物代谢和发育中发挥着重要作用。大量数据表明脯氨酸积累与植物应激之间存在正相关关系。脯氨酸是一种氨基酸,在植物暴露于各种应激条件下发挥着非常有益的作用。脯氨酸除了作为一种优秀的渗透调节剂外,在应激过程中还发挥着三种主要作用,即作为金属螯合剂、抗氧化防御分子和信号分子。文献综述表明,应激环境会导致植物中脯氨酸的过度产生,从而通过维持细胞膨压或渗透平衡来赋予植物应激耐受性;稳定膜从而防止电解质泄漏;并将活性氧(ROS)的浓度维持在正常范围内,从而防止植物中的氧化爆发。报告表明,当以低浓度外源供应脯氨酸时,会增强植物的应激耐受性。然而,一些报告表明,当以较高浓度外源供应脯氨酸时,会产生毒性作用。在本文中,我们综述并讨论了外源脯氨酸对植物暴露于各种非生物胁迫的影响。提出了许多成功应用外源脯氨酸来提高植物应激耐受性的例子。我们还批判性地检查和审查了外源脯氨酸在不同环境下所发挥的作用。