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外源有机酸对土壤磷有效性影响的研究进展
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摘要
长期施用有机肥造成的土壤磷库富集问题,已成为目前"农业生态稳定与安全"领域关注的世界性焦点。如何缓解土壤中磷肥的老化、固定以及如何重新利用土壤中潜在磷素,对解决磷在农业生产中所引起的经济、环境和资源问题有很重要的意义。本文结合国内外已有成果和最新研究进展,介绍了土壤中有机酸的种类,以及外源施加的有机酸对土壤磷素的活化效果,综述了有机酸对土壤磷素活化的作用以及活化机理等方面的研究进展,进一步对有机酸在土壤磷素的有效性影响方面进行了展望,为土壤磷素活化提供理论依据。
引文
[1]Stutter M I,Shand C A,George T S,et al.Land use and soil factors affecting accumulation of phosphorus species in temperate soils[J].Geoderma,2015,257:29-39.
    [2]宋金凤,崔晓阳.森林土壤中低分子有机酸研究进展[J].林业科学,2008,06:118-124.
    [3]王树起,韩晓增,乔云发,严君,李晓慧.缺磷胁迫条件下大豆根系有机酸的分泌特性[J].大豆科学,2009,03:409-414.
    [4]Begum H H,Islam M T.Role of synthesis and exudation of organic acids in phosphorus nutrition in plants in tropical soils[J].Biotechnology,2005,4(4):333-340.
    [5]胡红青,李妍,贺纪正.土壤有机酸与磷素相互作用的研究[J].土壤通报,2004,02:222-229.
    [6]Liu C,Huang P M.Kinetics of lead adsorption by iron oxides formed under the influence of citrate[J].Geochimica et Cosmochimica Acta,2003,67(5):1045-1054.
    [7]Chen L S,Tang N,Jiang H X,et al.Changes in organic acid metabolism differ between roots and leaves of Citrus grandis in response to phosphorus and aluminum interactions[J].Journal of plant physiology,2009,166(18):2023-2034.
    [8]Ding Y Z,Li Z A,Zou B.Low-molecular weight organic acids and their ecological roles in soil[J].Soils,2005,37(3):243-250.
    [9]Gerke J.The acquisition of phosphate by higher plants:Effect of carboxylate release by the roots.A critical review[J].Journal of Plant Nutrition and Soil Science,2015,178(3):351-364.
    [10]梁瑞霞,李春俭,宋建兰.6-BA对缺磷白羽扇豆排根形成和有机酸分泌的影响[J].植物生理与分子生物学学报,2004,06:619-624.
    [11]宋金凤,崔晓阳,王政权.低分子有机酸对暗棕壤P、Fe、K有效性及林木吸收的影响[J].水土保持学报,2011,01:123-127.
    [12]王月平.有机酸对铝胁迫下油菜生长生理及缓解机制研究[D].浙江师范大学,2013.
    [13]FANG L,YU Y,YU J,et aL Role of low molecular weight organic acids in mobilization of forest soil phosphorus[J].Journal of Zhejiang Forestry College,2007,1:007.
    [14]崔福星,宋金凤,杨迪.养分缺乏下外源有机酸对暗棕壤磷有效性及落叶松幼苗吸收积累磷的影响[J].水土保持学报,2012,06:116-121.
    [15]李迟园,田霄鸿,曹翠玲.外源有机酸对玉米磷吸收及其生长发育的影响[J].西北植物学报,2011,07:1376-1383.
    [16]裴腊明.转"rsVP提高玉米低磷耐受性的研究及不同玉米基因型低磷响应microRNA的差异分析[D].山东大学,2013.
    [17]张根柱.外源柠檬酸对填土养分、酶活性及微生物活性的影响[D].西北农林科技大学,2011.
    [18]杨凯,颜丽,赵凯,关连珠.外源腐殖酸对棕壤有机磷组分的影响[J].土壤肥料,2005,05:32-34.
    [19]孙桂芳,金继运,石元亮.腐殖酸和改性木质素对土壤磷有效性影响的研究进展[J].土壤通报,2011,04:1003-1009.
    [20]Dotaniya M L,Datta S C,Biswas D R,et al.Production of oxalic acid as influenced by the application of organic residue and its effect on phosphorus uptake by wheat(Triticum aestivum L)in an Inceptisol of north India[J].National Academy Science Letters,2014,37(5):401-405.
    [21]杜振宇,王清华,刘方春,马丙尧.腐殖酸物质对磷在褐土中迁移的影响[J].中国土壤与肥料,2012,02:14-17+50.
    [22]刘秀梅,张夫道,冯兆滨,张树清,何绪生,王茹芳,王玉军.风化煤腐殖酸对氮、磷、钾的吸附和解吸特性[J].植物营养与肥料学报,2005,05:641-646.
    [23]马斌,刘景辉,张兴隆.褐煤腐殖酸对旱作燕麦土壤微生物量碳、氮、磷含量及土壤酶活性的影响[J].作物杂志,2015,05:134-140.
    [24]龚松贵,王兴祥,张桃林,李清曼,周静.低分子量有机酸对红壤无机磷活化的作用[J].土壤学报,2010。04:692-697.
    [25]刘丽,梁成华,王琦,杜立宇,吴玉梅,韩巍.低分子量有机酸对土壤磷活化影响的研究[J].植物营养与肥料学报,2009,03:593-600.
    [26]陆文龙,张福锁,曹一平,王敬国.低分子量有机酸对石灰性土壤磷吸附动力学的影响[J].土壤学报,1999。02:189-197.
    [27]赵文杰,张丽静,畅倩,张聪颖,熊忠宽.低磷胁迫下豆科植物有机酸分泌研究进展[J].草业科学,2011。06:1207-1213.
    [28]孙金兵,宋金凤,张韫,崔晓阳,黄文斌,马瑞.有机酸释放暗棕壤磷素养分中显色时间对磷测定的影响[J].水土保持学报,2014,02:285-291.
    [29]李银水.湖北省油菜氮磷钾肥施用效果及肥料推荐用量研究[D].华中农业大学,2009.
    [30]姜佰文,孙玲,王春宏,高妍,王虹.蔬菜连作对保护地土壤养分变化的影响[J].东北农业大学学报,2014。03:85-90.
    [31]冯晨,颜丽,宋丹,高跃,马宾,关连珠.腐殖酸和柠檬酸对人工合成磷源释磷效应的比较[J].中国土壤与肥料,2009,03:44-47.
    [32]黄建凤,吴昊.植物根系分泌的有机酸及其作用[J].现代农业科技,2008,20:323-324.
    [33]Yamamura T,Dateki H,Wasaki J,et al.Possibility of rhizosphere regulation using acid phosphatase and organic acid for recycling phosphorus in sewage sludge[J].Soil Science and Plant Nutrition,2004,50(1):77-83.
    [34]Erro J,Ma Zamarrefio A,Ma Garcia-Mina J.Ability of various water-insoluble fertilizers to supply available phosphorus in hydroponics to plant species with diverse phosphorus-acquisition efficiency:Involvement of organic acid accumulation in plant tissues and root exudates[J].Journal of Plant Nutrition and Soil Science,2010,173(5):772-777.
    [35]Oburger E,Jones D L,Wenzel W W.Phosphorus saturation and pH differentially regulate the efficiency of organic acid anion-mediated P solubilization mechanisms in soil[J].Plant and Soil,2011,341(1-2):363-382.
    [36]宋金凤,马瑞,黄文斌,杨迪,崔晓阳,刘永.养分缺乏下外源有机酸对暗棕壤磷有效性及落叶松幼苗吸收积累磷的影响[J].Agricultural Science&Technology,2014,05:824-830.
    [37]Gomez D A,Carpena R 0.Effect of 1-naphthaleneacetic acid on organic acid exudation by the roots of white lupin plants grown under phosphorus-deficient conditions[J].Journal of plant physiology,2014,171(15):1354-1361.
    [38]Strom L,Owen A G,Godbold D L,et al.Organic acid behaviour in a calcareous soil implications for rhizosphere nutrient cycling[J].Soil Biology and Biochemistry,2005,37(11):2046-2054.
    [39]王震宇,温胜芳,罗先香,李爱峰,邢宝山,李锋民.2种水生植物根际溶液磷素时空变异及有机酸分泌[J].环境科学,2009,08:2248-2252.
    [40]叶思诚.油茶适应低磷胁迫的根系生理响应[D].中南林业科技大学,2013.
    [41]Hill M W,Hopkins B G,Jolley V D.Maize in-Season Growth Response to Organic Acid-Bonded Phosphorus Fertilizer(Carbond P?)[J].Journal of Plant Nutrition,2015,38(9):1398-1415.
    [42]李迟园.低磷土壤施用有机酸和根外施磷对玉米磷吸收及生长的影响[D].西北农林科技大学,2011.
    [43]田中民,李春俭,王晨,赵紫娟.缺磷白羽扇豆排根与非排根区根尖分泌有机酸的比较[J].植物生理学报,2000,04:317-322.
    [44]Chen L S,Tang N,Jiang H X,et al.Changes in organic acid metabolism differ between roots and leaves of Citrus grandis in response to phosphorus and aluminum interactions[J].Journal of plant physiology,2009,166(18):2023-2034.
    [45]Lin Z H,Chen L S,Chen R B,et aL Root release and metabolism of organic acids in tea plants in response to phosphorus supply[J].Journal of plant physiology,2011,168(7):644-652.
    [46]王斌.腐植酸对棉田土壤磷素有效性影响研究[D].新疆农业大学,2007.
    [47]Wei L,Chen C,Xu Z.Citric acid enhances the mobilization of organic phosphorus in subtropical and tropical forest soils[J].Biology and fertility of soils,2010,46(7):765-769.
    [48]Sas L,Rengel Z,Tang C.Excess cation uptake,and extrusion of protons and organic acid anions by Lupinus albus under phosphorus deficiency[J].Plant Science,2001,160(6):1191-1198.
    [49]卢豪良,严重玲.秋茄(Kandelia candel(L))根系分泌低分子量有机酸及其对重金属生物有效性的影响[J].生态学报,2007,10:4173-4181.
    [50]Yang L T,Jiang H X,Tang N,et al.Mechanisms of aluminum-tolerance in two species of citrus:secretion of organic acid anions and immobilization of aluminum by phosphorus in roots[J].Plant Science,2011,180(3):521-530.
    [51]Earl K D,Syers J K,McLaughlin J R.Origin of the effects of citrate,tartrate,and acetate on phosphate sorption by soils and synthetic gels[J].Soil Science Society of America Journal,1979,43(4):674-678.
    [52]朱先芳.密云水库沉积物中腐殖酸特征及其与重金属吸附作用研究[D].首都师范大学,2013.
    [53]CHI J,ZHAO X,DONG L Effects of Organic Matter and Low Molecular Weight Organic Acids on Sorption and Desorption of Phosphorus on Sediments[J].Journal of Tianjin University,2011,11:004.
    [54]Liu C,Huang P M.Kinetics of lead adsorption by iron oxides formed under the influence of citrate[J].Geochimica et Cosmochimica Acta,2003,67(5):1045-1054.
    [55]李九玉,徐仁扣,龙伦明.低分子量有机酸对可变电荷土壤铝活化动力学的影响[J].土壤学报,2012,04:708-715.
    [56]Taghipour M,Jalali M.Effect of low-molecular-weight organic acids on kinetics release and fractionation of phosphorus in some calcareous soils of western Iran[J].Environmental monitoring and assessment,2013,185(7):5471-5482.
    [57]李春越,党廷辉,王万忠,刘文兆.腐殖酸对农田土壤磷素吸附行为的影响研究[J].水土保持学报,2011。03:77-82.
    [58]何振立,袁可能,朱祖祥.有机阴离子对磷酸根吸附的影响[J].土壤学报,1990,04:377-384.
    [59]Holfordi I C R,Mattingly G E G.High-energy and Low-energy Phosphate Adsorbing Surfaces in Calcareous Soils[J].European Journal of Soil Science,1975,26(4):407-417.
    [60]Blinemann E K,SmernikRJ,MarschnerP,et al.Microbial synthesis of organic and condensed forms of phosphorus in acid and calcareous soils[J].Soil Biology and Biochemistry,2008,40(4):932-946.
    [61]Louche J,Ali M A,Cloutier-Hurteau B,et al.Efficiency of acid phosphatases secreted from the ectomycorrhizal fungus Hebeloma cylindrosporum to hydrolyse organic phosphorus in podzols[J].FEMS microbiology ecology,2010,73(2):323-335.
    [62]Mukherjee S,Sen S K.Exploration of novel rhizospheric yeast isolate as fertilizing soil inoculant for improvement of maize cultivation[J].Journal of the Science of Food and Agriculture,2015,95(7):1491-1499.

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