
Chinese Journal of Applied Ecology ›› 2004, Vol. ›› Issue (4): 712-716.
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MA Xiangqing, LIANG Xia
Received:2002-08-06
Revised:2004-01-04
CLC Number:
MA Xiangqing, LIANG Xia. Research advances in mechanism of high phosphorus use efficiency of plants[J]. Chinese Journal of Applied Ecology, 2004, (4): 712-716.
| [1] Barber SA,Mackay.1986.Root growth and potassium uptake by two corn genotypes in the field.Pert Res,10:217~231 [2] Bonser A,Lynch JP and Snapp S.1996.Effect of phosphorus deficiency on growth angle of basal roots in phaseolus rulgari.New Phytol,132: 281~288 [3] Buso GS,Bliss FA.1988.Variability among lettuce cultivars grown at two levels of available phosphorus.Plant and Soil,111: 67~73 [4] Caradus JR.1992.Inheritance of phosphorus in whire dover( Trifkthin repear L.).Plant and Soil,146:199~208 [5] Clark RB.1983.Plant genotype differences in the uptake,transloca tion,accumulation and use of mineral elements required for plant growth.In: Saric MR and Loughmn BC eds.Genetic Aspect of Plant Nutrient.Martinus Ni jhoff/Dr.W.Junk Publishers.49~70 [6] Driessche R van den,E1-Kassaby YA.1988.Proceedings 10th North American Forest Biology Workshop,Physiology and Genetics of Reforestation.Vancouver,British Columbia,85~92 [7] Fang M-S(樊明寿),Zhang F-S(张福锁).2001.The variation in plant phosphorus acquisition efficiency and its physiological mechanism.Chin Bul Life Sci(生命科学),13(3):129~131(in Chinese) [8] Feng F(冯锋),Zhang F-S(张福锁),Yang X-Q(杨新泉).2000.Advanced in Study on the Nutrition of Plant.Beijing: China Agricultural Press.25~41 ( in Chinese) [9] Fernandes B and Aacencio J.1994.Acid phosphates activity in bean and cowpea plants grown under phosphorus stress.J Plant Nutr,17:229~241 [10] Fist AJ,Smith FW,Edwards DG.1987.External phosphorus requirements of five tropical grain legumes grown in flowing solution culture.Plant Soil,99:75~84 [11] Foehse D.1991.Phosphorus efficiency of plants Ⅱ .Significance of root radius,root hairs and cation-anion balance for phosphorus,influx in seven plant species.Plant Soil,12:261~272 [12] Fox TR.1991.Rhizosphere phosphorus activity and phosphatase hydrozable organic phosphorus in two forested spodosls.Soil Biol Biochem,24(6): 579~583 [13] Gardner WK,Barber DA and Parbery DG.1983.The acquisition of phosphorus by pines albus: The probable mechanism by which phosphorus movement in the soil/root interface is enhanced.Plant Soil,70:107~124 [14] George C,et al.1985.Phosphorus efficiency and phosphute-iron interaction in maize.Agron J,77: 399~403 [15] Gillespie AR,Pope PE.1991.Rhizosphere acidification increases phosphorus recovery of locust Ⅱ .Model predictions and measured recovery.Soil Sci Soc Amer J,55: 537~541 [16] Gstdiner DT,1990.Characterization of phosphorus efficiencies of two winter wheat cultivators.Soil Sci Soc Am J,54:1331~1340 [17] Guo Y-C(郭玉春),Lin W-X(林文雄),Shi Q-M(石秋梅),et al.2003.Physiological adaptability of seeding rice genotypes with different P uptake efficiency under low P-deficient stress.Chin J Appl Ecol(应用生态学报),14(1):61~65(in Chinese) [18] Helal HM,Sauerbeck DR.1994.Influence of plant roots on C and P metabolism in soil.Plant Soil,76:175~182 [19] Huang Z-Q(黄志群),Liao L-P(廖利平),Gao H(高洪).2000.Decomposition process of Chinese fir stump roots and changes of nutrient concentration.Chin J Appl Ecol(应用生态学报),11(1):40~42 (in Chinese) [20] Itoh S.1987.Characteristics of phosphorus uptake of chickpea in comparison with pigeon pea,soybean and maize.Soil Sci Plant Nutr,33:417~422 [21] Johnson JF,Allan DL and Vance CP.1994.Phosphorus stress-induced proteiod roots show altered metabolism in white lupine ( Lupinus albus L.).Plant Physiol,104:657~665 [22] Kou C-L(寇长林),Wang Q-J(王秋杰),Ren L-X(任丽轩).1999.The research of morphology differences in phosphorus utilize between wheat and peanut.Chin J Soil Sci(土壤通报),30(4):181~184(in Chinese) [23] Lee M,Phillips RL.1988.The chromosomal basis of soma clonal variation.Ann Rec Plant Physical Plant Mol Biol,39: 413~437 [24] Li C-J(李春俭).2001.The Newest Development of the Research of Soil and Plant Nutrition 4.Beijing: China Agricultural University Press.13~23,198~210(in Chinese) [25] Li F-Y(李法云),GaoZ-Q(高子勤).1999.Transformation mechanism and availability of nutrients in albic soil-plant Ⅳ.Effect of environmental factors on phosphorus availability in albic soil.Chin J Appl Ecol(应用生态学报),10(5):579 582(in Chinese) [26] Li J-Y(李继云),Liu X-D(刘秀娣),Li Z-S(李振声).1995.New breeding technology of crop with high acquisition to soil nutrition.China Sci B(中国科学B),25(1):41~48(in Chinese) [27] Li Q-K(李庆逵).1986.The modern research of phosphatic fertilizes.Chin J Soil Sci(土壤通报),(2):1~7(in Chinese) [28] Li Z-H(李志洪),et al.1995.Effect of phosphorus level on root morphological and the kinetics of phosphorus uptake by different genotype of maize.J Jilin Agric Univ(吉林农业大学学报),17(4) :40~43(in Chinese) [29] Liao H(廖红),Yang X-L(严小龙).2000.Adaptive changes and genotypic variation for root architecture of common bean in response to phosphorus deficiency.Acta Bot Sin(植物学报),42(2):158~163(in Chinese) [30] Lin C-L(林翠兰).1992.The Newest Development ofthe Research of Soil and Plant Nutrition 1.Beijing: China Agricultural University Press.121~124 (in Chinese) [31] Lin C-L(林翠兰).1992.The Characteristic and Utilization of Soil Resources.Beijing: China Agricultural Press.337~378 (in Chinese) [32] Liu H(刘慧),Liu J-F(刘景福),Liu B-J(刘必进).1999.Differences of root morphology and physiological characteristics between two rape genotypes with different P-efficiency.Plant Nutrit Fert Sci(植物营养与肥料学报),5(1):40~45(in Chinese) [33] LiuZ-W(刘增文),Li Y-S(李雅素),Lu Y-L(吕月玲).1997.Preliminary study on the trunk of nutrients inter-cycling of tree.For Sci Tec(林业科技),22(3):1~4(in Chinese) [34] Lu R-K(鲁如坤).2003.The phosphoruslevel of soil and environmental protection of water body.Phosphate Compound Fertil(磷肥与氮肥),18(2):4~6(in Chinese) [35] Lu W-L(陆文龙),Cao Y-P(曹一平),Zhang F-S(张福锁).1999.Role of root-exuded organic acids in mobilization of soil phosphorus and micronutrients.Chin J Appl Ecol(应用生态学报),10(3):379~382(in Chinese) [36] Lynch JP and Ran BJ.1993.Growth and architecture of seeding roots of Corumon bean genotypes.Crop Soil,133:1253~1257 [37] Ma J (马敬).1994.Root-exuded Organic Acids in Mobilization of Soil Unavailable Phosphorus under Low-Phosphorus Stress.Beijing: Beijing Agricultural University Press.(in Chinese) [38] Moorby H,White RE,Nye PH.1988.The influence of phosphate nutrition on H+ ion efflux from root of young rape plant.Plant Soil,10:247~256 [39] Raghotbama KG.1999.Phosphate acquisition.Annu Rev Plant Physiol Plant Mol Biol,50: 665~693 [40] Pang X(庞欣),Li C-J(李春俭),Zhang F-S(张福锁).1999.Effect of P deficiency of translocation and redistribution of phosphate in intact plants of cucumber.Plant Nutri Pert Sci(植物营养与肥料学报),5(2):137~143(in Chinese) [41] Phillips JM,Hayman DS.1970.Improved procedures for clearing roots and staining parasitic and VA mycorrhizal fungi for rapid assessment of infection.Trans British Mycol Soc,55( 1) :158~160 [42] Shen H(沈宏),Shi W-M(施卫明),Wang X-C(王校常).2001.Study on adaptation mechanisms of different crops to low phosphorus stress.Plant Nutri Fert Sci(植物营养与肥料学报),7(2):172~177 (in Chinese) [43] Shen S-M(沈善敏),Yu W-Y(字万太),Zhang L(张璐),et al.1992.Internal and external nutrient cyclings of poplar tree Ⅰ.Changes of nutrient storage in different parts of poplar tree before and afterleaffallen.Chin J Appl Ecol(应用生态学报),3(4):296~301 (in Chinese) [44] Shen S-M(沈善敏),Yu W-Y(宇万太),Zhang L(张璐),et al.1992.Internal and external nutrient cyclings of poplar tree Ⅱ.Transferring and cycling of nutrients in and out of the tree before and afterleaf fallen.Chin J Appl Ecol(应用生态学报),4(1):27~31(in Chinese) [45] Simon MZ,Suffa L,Burgess D.1990.Variation in N,P and K status and N efficiency in some North American of Willows.Can J For Res,20(12): 1888~1893 [46] Subbarao GV,Otani T.1997.Genotypic variation in iron and aluminum-phosphate solubilizing activity of Pigenonpea root exudates under different conditions.Soil Sci Plant Nutr,43(2):295~305 [47] Sun H-G(孙海国),Zhang F-S(张福锁).2002.Morphology of wheat roots underlow-phosphorus stress.Chin J Appl Ecol(应用生态学报),13(3):295~299(in Chinese) [48] Sun H-G(孙海国),Zhang F-S(张福锁).2000.Growth responseof wheat roots to phosphorus deficlency.Acta Bot Sin(植物学报),42(9) :913~9199(in Chinese) [49] Sun G-H(孙国海),Zhang F-S(张福锁).2002.Effect of phosphorus deficiency on activity of acid phosphatase exuded by wheat roots.Chin J Appl Ecol(应用生态学报),13(3):379~381(in Chinese) [50] Tian Z-M(田中民).2001.The advance on nutrient of phosphorus of plant.JXianyang Teach Col(咸阳师范学院学报),16(6):60~69 (in Chinese) [51] Wang M-L(王美丽),Yan X-L(严小龙).2001.Characteristics on root morphology and root exudation of soybean in relation to phosphorus efficiency.J South China Agric Univ(华南农业大学学报),7(3):1~4(in Chinese) [52] Wang QR(王庆仁),Li J-Y(李继云).1998.Dynamics and prospect on studies of high acquisition of soil unavailable phosphorus by plants.PlantNutriFertSci(植物营养与肥料学报),4(2):107~116(in Chinese) [53] Wieneke J.1990.Phosphorus efficiency and phosphorus mobilization in two sorghum( Sorghum bicolor ( L.) moench ) cultivators.Plant and Soil,23:139~145 [54] Xu M(徐茂),Cao C-Y(曹翠玉),Shi R-H(史瑞和).1991.Phosphorus uptake by various crops as related to root morphological and physiological characteristics.J Nanjing Agric Univ(南京农业大学学报),14(4):65~70(in Chinese) [55] Yan X-L(严小龙).1994.The National Annual Meeting Corpus of Plant Nutrition and Fertilizer.Beijing: China Agricultural Science and Technoloey Press.15~18(in Chinese) [56] Yang X-L(严小龙).1992.Genetic improvement of plant nutritional characters:advances and perspectives.J South China Agric Univ (华南农业大学学报),13(4):121~128(in Chinese) [57] Yan X-L(严小龙),Lu Y-G(卢永根).1994.Origin,evolution and genetic resources of the common bean.J South China Agric Univ (华南农业大学学报),15(4):111~116(in Chinese) [58] Yan X-L(严小龙),Zhang F-S(张福锁).1997.Genetics of Plant Nutrition.Beijing: China Agricultural Press.1~30 (in Chinese) [59] Yan X-L(阎秀兰),Duan H-Y(段海燕),Wang Y-H(王运华).2002.Phosphorus effioiency of different rape( Brassica napus L.)genotypes.ChinJ Oil Crops Sci(油料作物学报),24(2):47~49(in Chinese) [60] Yang M(杨茂),Yan X-L(严小龙).1998.Preliminary studies on morphological and physiological mechanisms of Stylosanthes for P efficiency on acid soil.Acta Agrestla Sin(草地学报),6(3):212~220(in Chinese) [61] Zhang F-S(张福锁).1992.The Newest Development of the Research of Soil and Plant Nutrition.Beijing: China Agricultural Press.(in Chinese) [62] Zhang F-S(张福锁).1993.Circumstance Stress and Plant Nutrition.Beijing: China Agricultural Press.( in Chinese) [63] Zhang H-C(张焕朝),Xu C-K(徐成凯),Wang G-P(王改萍).2001.Interclonal differences in phosphorus efficiency of poplar.J Nanjing For Univ(南京林业大学学报),25(2):15~18(in Chinese) [64] Zou C-Q(周冲权),Huang S-Z(黄寿枝),Wu G-L(吴光林).1992.The research of infection rate and influencing factors for VA mytcorhizal on thefruits.China Fruits(中国果树),(1):22~24(in Chinese) |
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