ZHANG Yanyan,LU Yu,SHI Baozheng,et al.Research Progress on Metabolism and Physiological Function of Polyamines in Plants[J].Northern Horticulture,2023,(15):122-127.[doi:10.11937/bfyy.20224477]
植物中多胺的代谢及生理功能研究进展
- Title:
- Research Progress on Metabolism and Physiological Function of Polyamines in Plants
- Keywords:
- polyamine; metabolic pathway; growth and development; stress
- 文献标志码:
- A
- 摘要:
- 多胺是一类广泛存在于原核细胞和真核细胞中的小分子含氮碱,在种子萌发、植物生长分化和衰老等生长发育过程中均发挥着重要的作用,并且与植物抗逆性密切相关。该研究总结了植物中多胺的代谢途径、多胺与植物生长发育以及抗性发育的关系,并介绍了多胺在增加植物抗性方面的应用,以期为多胺在农业生产中的应用提供参考依据。
- Abstract:
- Polyamines are a kind of small molecule nitrogencontaining bases widely existing in prokaryotic and eukaryotic cells.They play important roles in seed germination,plant growth differentiation,aging and other growth and development processes.Also,polyamines are closely related to plant stress resistance and play an important role.This study summarized the metabolic pathway of polyamines in plants,the relationship between polyamines and plant growth and development and resistance development,and introduced the application of polyamines in increasing plant resistance,so as to provide reference for the application of polyamines in agricultural production.
参考文献/References:
[1]刘俊青.多胺诱导黄瓜霜霉病抗性机理的研究[D].郑州:河南农业大学,2012.[2]PASCHALIDIS K,ROUBELAKISANGELAKIS K.Spatial and temporal distribution of polyamine levelsand polya mine anabolism in different organs/tissues of the tobacco plant.Correlations with age,cell division/expansion,and differentiation[J].Plant Physiology,2005,138:145-152.[3]李亚栋,何近刚.植物多胺代谢与胁迫响应研究进展[J].华北农学报,2012,27(S1):240-245.[4]蔡秋华.植物多胺的生理研究进展[J].福建稻麦科技,2009,27(1):37-40.[5]THU HANG P,BASSIE L,SAFWAT G,et al.Expression of a heterologerous Sadenosylmethionine decarboxylase cDNA in plants demonstrates that changes in SadenosylLmethionine decarboxylase activity determine levels of the higher polyamines spermidine and spermine[J].Plant Physiology,2002,129:1744-1754.[6]杨枫.多胺在提高柑橘溃疡病抗性中的作用及其机理研究[D].武汉:华中农业大学,2014.[7]FORTES A,AGUDELOROMERO P,PIMENTEL D,et al.Transcriptional modulation of polyamine metabolism in fruint species under abiotic and biotic stress[J].Fronties in Plant Science,2019(10):1-9.[8]段九菊.外源亚精胺提高黄瓜幼苗耐盐性的生理调节功能研究[D].南京:南京农业大学,2008.[9]张小冰.多胺在植物生长发育过程中的生理作用[J].生物学教学,2007(10):9-11.[10]王颖,何生根,伍春莲,等.多胺代谢和种子萌发[J].种子,2003(2):53-56.[11]段辉国,袁澍,刘文娟,等.多胺与植物逆境胁迫的关系[J].植物生理学通讯,2005(4):531-536.[12]杜红阳,王进,刘怀攀,等.亚精胺浸种对玉米种子萌发的影响[J].安徽农业科学,2007(34):11009-11010.[13]刘春艳,吴强盛.多胺在植物生长发育中的作用[J].生物学教学,2010,35(10):4-6.[14]王娟,牛来春,秦晓杰.植物衰老的机制及调控途径[J].安徽农学通报,2016,22(9):35-36.[15]BAIS H,RAVISHANKAR G.Role of polyamines in the ontogeny of plants and their biotechnological applications[J].Plant Cell Tissue & Organ Culture,2002,69(1):1-34.[16]王亚琴,张康健,黄江康.植物衰老的分子基础与调控[J].西北植物学报,2003(1):182-189.[17]SEIFI H,SHEIP B.Spermine differentinally refines plant defense responses against biotic and abiotic stress[J].Frontiers in Plant Science,2019(10):1-8.[18]宋永骏,刁倩楠,齐红岩.多胺代谢与植物抗逆性研究进展[J].中国蔬菜,2012(18):36-42.[19]ALCZAR R,AITABELLA T,MARCO F,et al.Polyamines:molecules with regulatory functions in plant abiotic stress tolerance[J].Planta,2010,231(6):1237-1249.[20]李霞,程运河,马晓东,等.多胺在植物抗逆中的生理机制[J].世界林业研究,2018,31(4):23-28.[21]刘畅,李佳荫,冯国军,等.低温驯化对菜豆内源多胺含量及其合成分解基因表达的影响[J].北方园艺,2021(23):30-37.[22]李海燕,邹兰.多胺在番茄响应低温胁迫中的作用[J].陕西农业科学,2020,66(7):7-9,52.[23]靖建国,郭翔,俞蓉,等.多胺对高温胁迫下小麦灌浆的影响及生理机制研究[J].种子,2020,39(7):43-48.[24]于力,袁永达,吴珏,等.外源亚精胺对高温胁迫下蚕豆幼苗生长和内源多胺含量的影响[C].昆明:中国园艺学会2017年学术年会,2017.[25]SHI Z R,WANG Q W,LI Y S et al.Putrescine is an intraspecies and interkingdom cell cell communication sign al modulating the virulence of Dickeya zeae[J].Frontiers in Microbiology,2019(10):1-13.[26]张灵,陶亚军,方琳,等.植物多胺的代谢与生理研究进展[J].植物生理学报,2020,56(10):2029-2039.[27]尚庆茂,张志刚.亚精胺对黄瓜幼苗灰霉病的诱抗作用[J].应用生态学报,2008(4):825-830.[28]李小玲,刘长命,刘炼红,等.外源亚精胺对甜瓜幼苗白粉病抗性的影响[J].西北植物学报,2015,35(9):18001807.[29]MARINI F,BETTI L,SCARAMAGLI S,et al.Polyamine metabolism is upregulated in response to tobacco mosaic virus in hypersensitive,but not in susceptible,tobacco[J]. Newphytol,2001,149(2):301-309.[30]YODA H,YAMAGUCHI Y,SANO H.Induction of hypersensitive cell death by hydrogen peroxide produced thro ugh Polyamine degradation in tobacco plants[J].Plant Physiol,2003,132:1973-1981.[31]LEO G,CAROLINE B,STEPHANE G.Polyamines:Double agents in disease and plant immunity[J].Trends in Plant Science,2021,26(10):1061-1071.[32]TEBAYASHI SI,HORIBATA Y,MIKAGI E,et al.Induction of resistance against the leaf miner,Liriomyza trifoli,by jasmonic acid in sweet pepper[J].Bioscience,Biotechnology and Biochemistry,2007,71(6):1521-1526.[33]VOELCKEL C,BALDWIN I.Detecting herbivorEspecific transcriptional responses in plants withmultiple DDRT PCR and subtractive library procedures[J].Physiologia Plantarum,2003,118(2):240-252.[34]SUBHASHREE S,NAGESH S,SUBHASH M,et al.Hessian fly larval feeding triggers enhancedpolyamine levels in susceptible but not resistant wheat[J].BMC Plant Biology,2015,15(1):1-16.[35]WILLIAMS C.Molecular characterization of a set of genes regulated in wheat during hessian fly infestation[J].Crop Production and Pest Control Research,2006,11(5):301-304.[36]王欣.白菜对小菜蛾抗性的评价方法及抗虫机理研究[D].北京:中国农业科学院,2007.[37]KLODE M,ATKINSON J,MERCIER A.Effects of a hydroxycinnamoyl conjugate of spermidine on arthropod neuromuscular junctions[J].Journal of Comparative Physiology A Sensory Neural & Behavioral Physiology,2002,187(12):945-952.[38]OZAWZ R,CINZIA B,MARIA F et al.Exogenous polyamines elicit herbivorEinduced volatiles in lima beanLe aves:involvement of calcium,H2O2 and jasmonic acid[J].Plant and Cell Physiology,2009,50(12):2183-2199.[39]LIN T T,CHEN J P,ZHOU S S,et al.Testing the elemental defense hypothesis with a woody plant species:Cadmium accumulation protects Populus yunnanensis fromleaf herbivory and pathogen infection[J].Chemosphere,2020,247:1-8.[40]QIN S Y,WU Z Q,TANG J Y,et al.Effects of exogenous spermidine on polar resistance to leaf and root her bivory as effected by soil cadmium stress[J].Journal of Enviromental Management,2021,288:112467.[41]向玥如,史端甫,冯怀章,等.多胺参与植物逆境响应过程的作用机理研究进展[J].湖南农业科学,2014(2):19-22.
相似文献/References:
[1]王尚堃,杜红阳.多胺及其合成抑制剂对旱胁迫下李幼苗叶片 渗透调节物质含量和光合作用的影响[J].北方园艺,2016,40(10):1.[doi:10.11937/bfyy.201610001]
WANG Shangkun,DU Hongyang.Effect of Polyamine and Its Composite Inhibitors to Seedlings Leaves of Prunus L.on Content of Osmotic Regulation Substances and Photosynthesis Under Drought Stress[J].Northern Horticulture,2016,40(15):1.[doi:10.11937/bfyy.201610001]
[2]平 吉 成,单 守 明,刘 晶,等.秋季叶面喷施多胺和尿素对酿酒葡萄贮藏营养和抗冻性的影响[J].北方园艺,2011,35(17):0.[doi:10.11937/bfyy.2011017004]
,,et al.E f f e c t s o f P o l y a m i n e s a n d U r e a A p p l i e d i n A u t u m n o n S t o r a g e N u t r i t i o nC o n t e n t a n d F r e e z i n g T o l e r a n c e i n G r a p e v i n e[J].Northern Horticulture,2011,35(15):0.[doi:10.11937/bfyy.2011017004]
[3]王尚堃.多胺对干旱胁迫下杏苗三个酶活性指标的影响[J].北方园艺,2018,42(07):37.[doi:10.11937/bfyy.20172580]
WANG Shangkun.Effects of Polyamines on Three Enzyme Activity Indexes of Armeniaca vulgaris Lam. Seedlings Under Drought Stress[J].Northern Horticulture,2018,42(15):37.[doi:10.11937/bfyy.20172580]
[4]岳雷,孙月丽,尹宝颖,等.外源多胺对鸭梨自花授粉花粉管生长及自交坐果的影响[J].北方园艺,2018,42(17):32.[doi:10.11937/bfyy.20180361]
YUE Lei,SUN Yueli,YIN Baoying,et al.Effects of Exogenous Polyamines on Growth of Self-pollinated Pollen Tube and Self-crossing Fruit of Yali Pear[J].Northern Horticulture,2018,42(15):32.[doi:10.11937/bfyy.20180361]
[5]姜倩倩,杨洪强.多胺对镉胁迫下平邑甜茶根系损伤和NO生成的影响[J].北方园艺,2021,(21):31.[doi:10.11937/bfyy.20211026]
JIANG Qianqian,YANG Hongqiang.Effects of Polyamines on Root Damage and Nitric Oxide Production in Malus hupehensis var.pingyiensis Under Cadmium Stress[J].Northern Horticulture,2021,(15):31.[doi:10.11937/bfyy.20211026]
[6]刘畅,李佳荫,冯国军,等.低温驯化对菜豆内源多胺含量及其合成分解基因表达的影响[J].北方园艺,2021,(23):30.[doi:10.11937/bfyy.20212160]
LIU Chang,LI Jiayin,FENG Guojun,et al.Effects of Low Temperature Acclimation on Endogenous Polyamine Content and Expression of Biosynthesis and Decomposition Genes in Phaseolus vulgaris L.[J].Northern Horticulture,2021,(15):30.[doi:10.11937/bfyy.20212160]
[7]朱晓强,吴向明.外源锰对八棱海棠锰亚细胞分布、养分含量及多胺代谢的影响[J].北方园艺,2022,(24):33.[doi:10.11937/bfyy.20222045]
ZHU Xiaoqiang,WU Xiangming.Effects of Exogenous Manganese on Manganese Subcellular Distribution,Nutrient Content and Polyamine Metabolism of Malus robusta[J].Northern Horticulture,2022,(15):33.[doi:10.11937/bfyy.20222045]
备注/Memo
第一作者简介:张妍妍(1998-),女,硕士研究生,研究方向为资源利用与植物保护。Email:zyy19981218@163.com.责任作者:雷彩燕(1980-),女,博士,副教授,现主要从事植物次生代谢等研究工作。Email:leicaiyanlcy@126.com.基金项目:河南省科技攻关资助项目(222102110059)。收稿日期:2022-11-03