植物耐受铵离子毒性机制的研究进展
CSTR:
作者:
作者单位:

1.武汉市农业技术推广中心,武汉 430012;2.华中农业大学资源与环境学院/微量元素研究中心,武汉 430070

作者简介:

李文静,E-mail: liwenjing1011@126.com

中图分类号:

S158.4

基金项目:

国家自然科学基金面上项目(31772378)


Progress in mechanisms of plant tolerance to ammonium toxicity
Author:
Affiliation:

1.Wuhan Agricultural Technology Extension Center,Wuhan 430012,China;2.College of Resources & Environment,Huazhong Agricultural University/ Microelement Research Center,Wuhan 430070,China

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献 [68]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    为探究植物耐受铵离子毒性的机制,从植物内铵态氮的来源、产生铵离子毒性的原因以及耐受铵离子的生理及分子机制三方面综述近年来研究进展,指出铵离子吸收和同化引起的根际和质外体酸化是造成铵毒的一个主要原因,植物可通过自身的机制以及外源添加其他养分等缓解铵离子毒性,同时对未来研究耐受铵离子毒性机制的前景进行展望,以期为作物耐受铵离子毒性和高效利用氮素的分子设计育种提供理论指导。

    Abstract:

    As a major inorganic nitrogen source,ammonium can not only be absorbed by plant roots from the soil,but also generated during a number of biochemical processes inside plants. However,high concentrations of ammonium are toxic to plants resulting in growth inhibition and yield loss, therefore ammonium homeostasis needs to be under fine-tuned modulation in plants. Since currently nitrogen fertilizers are widely and largely used in the agricultural production, plants are facing the challenge of high ammonium presence. It is very important to understand the mechanisms of plant tolerance to ammonium toxicity for improving the use efficiency of nitrogen and the yield of crops. In order to explore the mechanisms of plant tolerance to ammonium toxicity, we reviewed the progress in mechanisms of plant tolerance to ammonium toxicity from three aspects including the source of ammonium nitrogen in plants,the causes of ammonium toxicity,and the physiological and molecular mechanisms of plant tolerance to ammonium. It was pointed out that the acidification of rhizosphere and apoplast caused by the absorption and assimilation of ammonium was a major cause of ammonium toxicity. Plants can alleviate the ammonium toxicity through their own mechanisms and the addition of other nutrients. At the same time, the research on mechanisms of plant tolerance to ammonium toxicity in the future was prospected. It will provide the theoretical reference for the molecular breeding of crops to tolerate ammonium toxicity and utilize nitrogen efficiently.

    图1 植物体内氮素同化途径示意图Fig.1 Schematic diagram of nitrogen assimilation pathways in plants
    图2 植物耐受铵离子的分子机制示意图Fig.2 Schematic diagram of the molecular mechanisms of ammonium tolerance for plants
    参考文献
    [1] 杨德生,黄冠军,李勇,等. 水稻氮高效栽培技术、品种改良和生理机制研究进展[J].华中农业大学学报,2022,41(1):62-75.YANG D S,HUANG G J,LI Y,et al.Progress on cultivation technologies,variety improvements and physiological mechanisms of rice with high nitrogen utilization efficiency[J].Journal of Huazhong Agricultural University,2022,41(1):62-75(in Chinese with English abstract).
    [2] 颜晓元,夏龙龙,遆超普.面向作物产量和环境双赢的氮肥施用策略[J].中国科学院院刊,2018,33(2):177-183.YAN X Y,XIA L L,TI C P.Win-win nitrogen management practices for improving crop yield and environmental sustainability[J]. Bulletin of Chinese Academy of Sciences,2018,33(2):177-183 (in Chinese with English abstract).
    [3] TILMAN D,CASSMAN K G,MATSON P A,et al.Agricultural sustainability and intensive production practices[J].Nature,2002,418(6898): 671-677.
    [4] ZHANG W F,DOU Z X,HE P,et al.New technologies reduce greenhouse gas emissions from nitrogenous fertilizer in China [J].PNAS,2013,110(21): 8375-8380.
    [5] 蒋志敏,王威,储成才.植物氮高效利用研究进展和展望[J].生命科学,2018,30(10): 34-45.JIANG Z M,WANG W,CHU C C.Towards understanding of nitrogen use efficiency in plants [J].Chinese bulletin of life science,2018,30(10): 34-45 (in Chinese with English abstract).
    [6] XU G,FAN X,MILLER A J.Plant nitrogen assimilation and use efficiency[J].Annual review of plant biology,2012,63(1): 153-182.
    [7] 徐晓鹏,傅向东,廖红.植物铵态氮同化及其调控机制的研究进展[J].植物学报,2016,51(2): 152-166.XU X P,FU XD,LIAO H.Advances in study of ammonium assimilation and its regulatory mechanism in plants[J].Chinese bulletin of botany,2016,51(2): 152-166 (in Chinese with English abstract).
    [8] BRITTO D T,KRONZUCKER H J.NH4+ toxicity in higher plants: a critical review[J].Journal of plant physiology,2002,159(6): 567-584.
    [9] ESTEBAN R,ARIZ I,CRUZ C,et al.Review: mechanisms of ammonium toxicity and the quest for tolerance[J].Plant science,2016,248: 92-101.
    [10] HART S C,STARK J M,DAVIDSON E A,et al.Nitrogen mineralization,immobilization,and nitrification[M].New York:John Wiley & Sons, Ltd,2018.
    [11] KUYPERS M M M,MARCHANT H K,KARTAL B.The microbial nitrogen-cycling network [J].Nature reviews microbiology,2018,16(5): 263-276.
    [12] ARTH I,FRENZEL P,CONRAD R.Denitrification coupled to nitrification in the rhizosphere of rice[J].Soil biology and biochemistry,1998,30(4): 509-515.
    [13] 朱毅勇,曾后清,狄廷均,等.细胞膜质子泵在水稻耐铵机制中的作用机理探讨[J].中国水稻科学,2011,25(1): 112-118.ZHU Y Y,ZENG H Q,DI T Y,et al.Investigation on the mechanism of adaption of plasma membrane H+-ATPase to ammonium nutrition in rice[J].Chinese journal of rice science,2011,25(1): 112-118 (in Chinese with English abstract).
    [14] HOOPEN F T,CUIN T A,PEDAS P,et al.Competition between uptake of ammonium and potassium in barley and Arabidopsis roots: molecular mechanisms and physiological consequences[J].Journal of experimental botany,2010,61(9): 2303-2315.
    [15] JAHN T P,M?LLER A L,ZEUTHEN T,et al.Aquaporin homologues in plants and mammals transport ammonia[J].FEBS letters,2004,574(1): 31-36.
    [16] SOHLENKAMP C,WOOD C C,ROEB G W,et al.Characterization of Arabidopsis AtAMT2,a high-affinity ammonium transporter of the plasma membrane[J].Plant physiology,2002,130(4): 1788-1796.
    [17] WANG M Y,GLASS A D M,SHAFF J E,et al.Ammonium uptake by rice roots (Ⅲ.electrophysiology)[J].Plant physiology,1994,104(3): 899-906.
    [18] YUAN L,LOQUěD,KOJIMA S,et al.The organization of high-affinity ammonium uptake in Arabidopsis roots depends on the spatial arrangement and biochemical properties of AMT1-type transporters[J].The plant cell,2007,19(8): 2636-2652.
    [19] SCHJOERRING J K,HUSTED S,M?CK G,et al.The regulation of ammonium translocation in plants[J].Journal of experimental botany,2002,53(370): 883-890.
    [20] GIEHL R F H,LAGINHA A M,DUAN F,et al.A critical role of AMT2;1 in root-to-shoot translocation of ammonium in Arabidopsis[J].Molecular plant,2017,10(11): 1449-1460.
    [21] TEGEDER M,MASCLAUX-DAUBRESSE C.Source and sink mechanisms of nitrogen transport and use[J].New phytologist,2018,217(1): 35-53.
    [22] HELDT H W, PIECHULLA B.Plant biochemistry[M].Amsterdam: Academic Press,2005: 275-308.
    [23] LEA P J,MOROT-GAUDRY J F.Plant nitrogen[M].Berlin:Springer-Verlag Press,2001.
    [24] OAKS A.Primary nitrogen assimilation in higher plants and its regulation[J].Canadian journal of botany,1994,72(6): 739-750.
    [25] LAM H M,COSCHIGANO K,OLIVEIRA I,et al. The molecular-genetics of nitrogen assimilation into amino acids in higher plants[J].Annual review of plant biology,1996,47(1): 569-593.
    [26] OSMOND C B,FOYER C H,BOCK G,et al.Photorespiration: metabolic pathways and their role in stress protection[J].Philosophical transactions of the royal society of London series B: biological sciences,2000,355(1402): 1517-1529.
    [27] WHETTEN R,SEDEROFF R.Lignin biosynthesis[J].The plant cell,1995,7(7): 1001-1013.
    [28] HAVé M,MARMAGNE A,CHARDON F,et al.Nitrogen remobilization during leaf senescence: lessons from Arabidopsis to crops[J].Journal of experimental botany,2017,68(10): 2513-2529.
    [29] LIU X X,ZHANG H H,ZHU Q Y,et al.Phloem iron remodels root development in response to ammonium as the major nitrogen source[J/OL].Nature communications,2022,13(1): 561[2022-04-16].https://doi.org/10.1038/s41467-022-28261-4.
    [30] MEIER M,LIU Y,LAY-PRUITT K S,et al.Auxin-mediated root branching is determined by the form of available nitrogen [J].Nature plants,2020,6(9): 1136-1145.
    [31] ZHOU Y,BAI L,SONG C P.Ammonium homeostasis and signaling in plant cells[J].Science bulletin,2015,60(8): 741-747.
    [32] SCHUBERT S,YAN F.Nitrate and ammonium nutrition of plants: effects on acid/base balance and adaptation of root cell plasmalemma H+-ATPase[J].Zeitschrift für pflanzenern?hrung und bodenkunde,1997,160(2): 275-281.
    [33] FENG H,FAN X,MILLER A J,et al.Plant nitrogen uptake and assimilation: regulation of cellular pH homeostasis[J].Journal of experimental botany,2020,71(15): 4380-4392.
    [34] WANG F,GAO J,TIAN Z,et al.Adaptation to rhizosphere acidification is a necessary prerequisite for wheat(Triticum aestivum L.) seedling resistance to ammonium stress[J].Plant physiology and biochemistry,2016,108: 447-455.
    [35] PATTERSON K,CAKMAK T,COOPER A,et al.Distinct signaling pathways and transcriptome response signatures differentiate ammonium- and nitrate-supplied plants [J].Plant, cell & environment,2010,33(9): 1486-1501.
    [36] HU A Y,ZHENG M M,SUN L M,et al.Ammonium alleviates manganese toxicity and accumulation in rice by down-regulating the transporter gene OsNramp5 through rhizosphere acidification[J/OL].Frontiers in plant science,2019,10: 1194[2022-04-16].https://pubmed.ncbi.nlm.nih.gov/31632426/. DOI: 10.3389/fpls.2019.01194.
    [37] SARASKETA A,GONZáLEZ-MORO M B,GONZáLEZ-MURUA C,et al.Nitrogen source and external medium pH interaction differentially affects root and shoot metabolism in Arabidopsis[J/OL].Frontiers in plant science,2016,7:29[2022-04-16].https://doi.org/10.3389/fpls.2016.00029.
    [38] ZHENG X,HE K,KLEIST T,et al.Anion channel SLAH3 functions in nitrate-dependent alleviation of ammonium toxicity in Arabidopsis[J].Plant,cell & environment,2015,38(3): 474-486.
    [39] LIU Y,MANIERO R A,GIEHL R F H,et al.PDX1.1-dependent biosynthesis of vitamin B6 protects roots from ammonium-induced oxidative stress[J].Molecular plant,2022,15: 1-20.
    [40] BITTSáNSZKY A,PILINSZKY K,GYULAI G,et al.Overcoming ammonium toxicity[J].Plant science,2015,231: 184-190.
    [41] LIANG G,SONG H,XIAO Y,et al.Ammonium accumulation caused by reduced tonoplast V-ATPase activity in Arabidopsis thaliana[J/OL].International journal of molecular sciences,2020,22(1):2[2022-04-16].https://pubmed.ncbi.nlm.nih.gov/33374906/.DOI: 10.3390/ijms22010002.
    [42] HACHIYA T,INABA J,WAKAZAKI M,et al.Excessive ammonium assimilation by plastidic glutamine synthetase causes ammonium toxicity in Arabidopsis thaliana[J/OL].Nature communications,2021,12(1): 4944[2022-04-16].https://doi.org/10.1038/s41467-021-25238-7.
    [43] IMLER C S,ARZOLA C I,NUNEZ G H.Ammonium uptake is the main driver of rhizosphere pH in southern highbush blueberry[J].HortScience,2019,54(5): 955-959.
    [44] ZHU Y,DI T,XU G,et al.Adaptation of plasma membrane H+- ATPase of rice roots to low pH as related to ammonium nutrition[J].Plant, cell & environment,2009,32(10): 1428-1440.
    [45] BRITTO D T,SIDDIQI M Y,GLASS A D,et al.Futile transmembrane NH4+ cycling: a cellular hypothesis to explain ammonium toxicity in plants [J].PNAS,2001,98(7): 4255-4258.
    [46] COSKUN D,BRITTO D T,LI M,et al.Rapid ammonia gas transport accounts for futile transmembrane cycling under NH3/NH4+ toxicity in plant roots[J].Plant physiology,2013,163(4): 1859-1867.
    [47] LI G,ZHANG L,WANG M,et al.The Arabidopsis AMOT1/EIN3 gene plays an important role in the amelioration of ammonium toxicity [J].Journal of experimental botany,2019,70(4): 1375-1388.
    [48] LOQUé D,LALONDE S,LOOGER L L,et al.A cytosolic trans-activation domain essential for ammonium uptake[J].Nature,2007,446(7132): 195-198.
    [49] WANG Q,ZHAO Y,LUO W,et al.Single-particle analysis reveals shutoff control of the Arabidopsis ammonium transporter AMT1; 3 by clustering and internalization[J].PNAS,2013,110(32): 13204-13209.
    [50] MARINO D,MORAN J F.Can ammonium stress be positive for plant performance?[J/OL].Frontiers in plant science,2019,10:1103[2022-04-16].https://doi.org/10.3389/fpls.2019.01103.
    [51] LOTHIER J,GAUFICHON L,SORMANI R,et al.The cytosolic glutamine synthetase GLN1;2 plays a role in the control of plant growth and ammonium homeostasis in Arabidopsis rosettes when nitrate supply is not limiting[J].Journal of experimental botany,2011,62(4): 1375-1390.
    [52] BAI L,MA X,ZHANG G,et al.A receptor-like kinase mediates ammonium homeostasis and is important for the polar growth of root hairs in Arabidopsis[J].The plant cell,2014,26(4): 1497-1511.
    [53] VON WIRéN N,GAZZARRINI S,GOJONT A,et al.The molecular physiology of ammonium uptake and retrieval[J].Current opinion in plant biology,2000,3(3): 254-261.
    [54] QIN C,QIAN W,WANG W,et al.GDP-mannose pyrophosphorylase is a genetic determinant of ammonium sensitivity in Arabidopsis thaliana [J].PNAS,2008,105(47): 18308-18313.
    [55] TANAKA H,MARUTA T,OGAWA T,et al.Identification and characterization of Arabidopsis AtNUDX9 as a GDP-D-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium[J].Journal of experimental botany,2015,66(19): 5797-5808.
    [56] DI D W,SUN L,WANG M,et al.WRKY46 promotes ammonium tolerance in Arabidopsis by repressing NUDX9 and indole-3-acetic acid-conjugating genes and by inhibiting ammonium efflux in the root elongation zone[J].New phytologist,2021,232(1): 190-207.
    [57] ZHANG M,WANG Y,CHEN X,et al. Plasma membrane H+-ATPase overexpression increases rice yield via simultaneous enhancement of nutrient uptake and photosynthesis[J/OL].Nature communications,2021,12(1): 735[2022-04-16].https://doi.org/10.1038/s41467-021-20964-4.
    [58] SUN D,FANG X,XIAO C,et al.Kinase SnRK1.1 regulates nitrate channel SLAH3 engaged in nitrate-dependent alleviation of ammonium toxicity[J].Plant physiology,2021,186(1): 731-749.
    [59] BALKOS K D,BRITTO D T,KRONZUCKER H J.Optimization of ammonium acquisition and metabolism by potassium in rice (Oryza sativa L.cv.IR‐72)[J].Plant,cell & environment,2010,33(1): 23-34.
    [60] ROOSTA H R,SCHJOERRING J K.Root carbon enrichment alleviates ammonium toxicity in cucumber plants[J].Journal of plant nutrition,2008,31(5): 941-958.
    [61] ARIZ I,ARTOLA E,ASENSIO A C,et al.High irradiance increases NH4+ tolerance in Pisum sativum: higher carbon and energy availability improve ion balance but not N assimilation[J].Journal of plant physiology,2011,168(10): 1009-1015.
    [62] SETIéN I,FUERTES-MENDIZABAL T,GONZáLEZ A,et al. High irradiance improves ammonium tolerance in wheat plants by increasing N assimilation[J].Journal of plant physiology,2013,170(8): 758-771.
    [63] BLOOM A J,BURGER M,A.KIMBALL B,et al.Nitrate assimilation is inhibited by elevated CO2 in field-grown wheat[J].Nature climate change,2014,4(6): 477-480.
    [64] RUBIO-ASENSIO J S,BLOOM A J.Inorganic nitrogen form: a major player in wheat and Arabidopsis responses to elevated CO2[J].Journal of experimental botany,2017,68(10): 2611-2625.
    [65] 崔润丽,刁现民.植物耐盐相关基因克隆与转化研究进展 [J].中国生物工程杂志,2005,25(8): 25-29.CUI R L,DIAO X M.Advances on cloning and translation of the salt tolerance genes in plant[J].China biotechnology,2005,25 (8): 25-29 (in Chinese with English abstract).
    [66] LOQUé D,LUDEWIG U,YUAN L,et al.Tonoplast intrinsic proteins AtTIP2;1 and AtTIP2;3 facilitate NH3 transport into the vacuole[J].Plant physiology,2005,137(2): 671-680.
    [67] CRUZ C,BIO A F M,DOMíNGUEZ-VALDIVIA M D,et al.How does glutamine synthetase activity determine plant tolerance to ammonium?[J].Planta,2006,223(5): 1068-1080.
    [68] DUBOIS F,TERCé-LAFORGUE T,GONZALEZ-MORO M B,et al.Glutamate dehydrogenase in plants: is there a new story for an old enzyme?[J].Plant physiology and biochemistry,2003,41(6): 565-576.
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

李文静,王创.植物耐受铵离子毒性机制的研究进展[J].华中农业大学学报,2022,41(6):152-159

复制
分享
文章指标
  • 点击次数:509
  • 下载次数: 2114
  • HTML阅读次数: 594
  • 引用次数: 0
历史
  • 收稿日期:2022-04-16
  • 在线发布日期: 2022-12-09
文章二维码