
Chinese Journal of Applied Ecology ›› 2001, Vol. ›› Issue (6): 947-950.
• Articles • Previous Articles Next Articles
ZHAO Wenzhi, CHENG Guodong
Received:1999-09-17
Revised:2000-01-26
Online:2001-11-25
CLC Number:
ZHAO Wenzhi, CHENG Guodong. Mycorrhizae and its application in desertification land restoration[J]. Chinese Journal of Applied Ecology, 2001, (6): 947-950.
| [1] Ames RN, Reid CP, Porter LK et al. 1983. Hyphal uptake and transport of nitrogen from two 15N-labeled sources by Glomus mosseae, a vesicular-arbuscular mycorrhizal fungus. New Phytologist, 95:381 ~396 [2] Allen EB Allen MF et al. 1995. Patterns and regulation of mycorrhizal plant and fungal diversity. In: Collins HP, Robertson GP, Klug MJ eds. The Significance and Regulation of Soil Biodiversity. Netherlands: Kluwer Academic Publishers. 47~ 62 [3] Allen EB, Allen MF. 1990. The mediation of competition by mycorrhizal fungi in succession and patchy environments. In:Grace J, Tilman D eds. Perspectives in Plant Competition. New York:Academic Press.367~ 390 [4] Allen EB, Allen MF. 1984. Competition between plants of different succession stages: Mycorrhizae as regulators. Can J Bot, 62:2625 ~2629 [5] Allen MF, Sexton JC, Moore TS et al. 1981. Influence of phosphate source on vesicular-arbuscular mycorrhizae of Bouteloua gracilis. New Phytologist, 87: 687 ~ 694 [6] Allen MF, Smith WK, Moore TS et al. 1981. Comparative water relations and photosynthesis of mycorrhizal and non-mycorrhizal Bouteloua gracillis (J. B. K) Lag. Ex Steud. New Phytologist, 88: 683 ~ 693 [7] Allen MF. 1996. The ecology of arbuscular mycorrhizas: A look back into the past century and a peek into the 21st century. Mycologia Res,100(7) :769~782 [8] Allen EB, Allen MF. 1986. Water relations of xeric grasses in the field: Interactions of mycorrhizae and competition. New Phytologist, 104:559~571 [9] Allen MF, Boosalis MG. 1983. Effects of two species of VA mycorrhizal fungi on drought tolerance of winter wheat. New Phytologist,93:67~76 [10] Allen MF, Allen EB, Stahl PD. 1984. Differential niche response of Bouteloua gracilis and Pascopyrum smithii to VA mycorrhizae. Bull TorreyBot Club, 111:316~325 [11] Allen MF. 1988. Belowground spatial pattering: Influence of root architecture, microorganism and nutrients on plant survival in arid lands. In:Allen EB ed. The Reconstruction of Disturbed Arid Ecosystems. Boulder, Colorado: Westview Press. 113~135 [12] Allen MF, Cunningham GL. 1983. Effects of vesicular-arbuscular mycorrhiae on Disticwis spicata under three salinity levels. New Phytologist, 97: 227 ~ 236 [13] Allen EB, Allen MF. 1980. Natural re-establishment of vesicular-arbuscular mycorrhizae following stripmine raclamation in Wyoming. J Appl Ecol, 17:139~ 147 [14] Allen MF, MacMahon JA. 1985. Impact of disturbance of cold desert fungi: Comparative microscale dispersion patterns. Pedobiologia, 228:215~224 [15] Allen MF, John TV. 1982. Dual culture of endomycorrhizae. In: Schenck NC ed. Methods and Principles of Mycorrhizal Research. St. Paul, Minnesota: American Phytopathological Society. 85 ~ 90 [16] Allen EB. 1988. Some trajectories of succession in Wyoming Sagebrush Grassland: Implications for restoration. In: The Reconstruction of Disturbed arid Ecosystems. An Ecological Approach. Boulder, Colorado: Westview Press. 89~ 112 [17] Buwalda JG, Stribley DP, Tinker PB. 1983. Increased uptake of bromide and chloride by plants infected with vesicular-arbuscular mycorrhizas. New Phytologsist, 93: 217 ~ 225 [18] Bethlenfalvay GJ, Evans RA, Lesperance AL. 1985. Mycorrhizal colonization of crested wheatgrass as influenced by grazing. Agron J, 77:233~236 [19] Bethlenfalvay GJ, Brown JS et al. 1982. Parasitics and mutualistic associations between a mycorrhizal fungus and soybean:development of a host plant. Phytopathology, 722: 889 ~ 893 [20] Cress WA, Throneberry GD, Lindsey DL. 1979. Kinetics of phosphorus absorption by mycorrhizal and non-mycorrhizal tomato roots. Plant Physiol, 64: 484 ~ 487 [21] Feng G(冯固),Bai D-S(白灯莎),Yang M-Q(杨茂秋).1999 Effects of Salinity on VA mycorrhizal fornation and of inoculation with VAMfungi on saline-tolerance of plants.Chin J Appl Ecol(应用生态学报),10(1):79~82(in Chinese) [22] Fitter AH.1977.Influence of mycorrhizal infection on competition for phosphorus and potassium bytwo grasses NewPhytologist,79:119~125 [23] Gong M-Q(弓明钦),Chen Y-L(陈应龙),Zhong C-L(仲崇录).1997. Mycorrhizas and its application. Beijing: Forestry Science Press.70~ 120(in Chinese) [24] Gerdemann JW. 1964. The effect of mycorrhizas on the growth of maize. Mycologia, 56: 342 ~ 349 [25] Gray LE, Gerdemann JW. 1969 Uptake of phosphorus-32 by vesiculararbuscular mycorrhizae. Plant and Soil, 30: 415 ~ 422 [26] Hayman DS, Mosse B. 1972. Plant growth response to vesicular-arbuscular mycorrhiza Ⅲ. Increased uptake of labile P from soil. New Phytologist, 71: 47 ~ 47 [27] Hirrel MC. 1981. The effect of sodium and chloride salts on the germination of Gigaspora margarita. Mycologia, 73: 610 ~ 617 [28] Hayman DS. 1982. Effects of soil and fertility on activity and survival of vesicular-arbuscular mycorrhizal fungi. Phytopathology, 72:1119 ~1125 [29] Hawksworth DL. 1991. The biodiversity of microorganisms and invertebrates: Its role in sustainable agriculture. CAB International, Wallingford, U. K. [30] Hardie K. 1985.The effect of removal of extraradical hyphae on water uptake by vesicular-arbuscular mycorrhizal plants. New Phytologist,101:677~684 [31] Hirrel MC, Gerdemann JW. 1980. Improved growth of onion and bell pepper in saline soils by two vesicular-arbuscular mycorrhizal fungi. Proceeding of the Soil Society of America. 44 : 654~ 655 [32] Hua X-M(花晓梅). 1992. Myeorrhizas and its application in afforestation. Beijing: Forestry Science Press. 94 ~ 114(in Chinese) [33] Janos DP. 1980. Mycorrhizae influence tropical succession. Biotropica, 12:56~64 [34] Jurinak JJ, Dudley LM, Allen MF et al. 1986. The role of calcium oxalate in the availability of phosphorus in soils of semi-arid regions: A thermodynamic study. Soil Sci, 142:255~ 261 [35] Klironomos JN, Kendrick WB. 1996. Research on mycorrhizas:Trends in the past 40 years as expressed in the "MYCILIT" database. New Phytologist, 125: 595 ~ 600 [36] Levy Y, Krikun J. 1980. Effect of vesicular-arbuscular mycorrhiza in Citrus jarmbhir: Water relations. New Phytologist, 85: 25 ~ 32 [37] Li X-L(李晓林).1990.The relationship between the phosphorusfertilization and VA mycorrhizal effectivenessJ Bijing Agric Univ(北京农业大学学报),16(2):177~180(in Chinese) [38] Lin X-G(林先贵),Hao W-Y(郝文英).1999.Mycorrhizal dependency of various kind of plants.ActaBot Sin(植物学报),31(9):721~725(in Chinese) [39] Lin X-G(林先贵),Hao W-Y(郝文英).1989.Effects of Posphorus fertization on VA mycorrhizal response under unsterilizd Soil conditions.ActaPedol Sin(土壤学报),26(2):179~185(in Chinese) [40] Liu R-J(刘润进),Li M(李敏),Liu X-Z(刘杏忠)et al.1999.Effect of arbuscular mycorrhizal fungal inoculation and NPK fertization on improving spoiled soil in brickield.Agric Res Arid Areas(干旱区农业研究),17(3):45~60(in Chinese) [41] Menge JA. 1982. Effects of soil fumigants and fungicides on vesiculararbuscular fungi. Phytopathology, 72:1125 ~ 1132 [42] Miller RM. 1979. Some occurrences of vesicular-arbuscular mycorrhiza in natural and disturbed ecosystems of the Red Desert. Can J Bot, 57:619~623 [43] Mosse B. 1957. Growth and chemical composition of mycorrhizal and non-mycorrhizal applies. Nature, 179: 922~ 924 [44] Nicolson TH. 1960. Mycorrhizae in the Gramineae Ⅱ. Development in different habitats, particularly sand dunes. Trans British Mycol Soc,43:132~145 [45] Nicolson TH, Johnston C. 1979. Mycorrhizae in the Gramineae Ⅲ. Glomusfasciculatus as the endophyte of pioneer grasses in a maritime sand dunes. Trans British Mycol Soc, 72: 261 ~ 268 [46] Peng S, Eissenst DM, Graham JH et al. 1993. Growth depressions in mycorrhizal citrus at high-phosphorus supply. Plant Physiology, 101:1063~1071 [47] Perry DA, Amanranthus MP, Borchers JG et al. 1989. Boortrapping in ecosystems. Bio science, 39: 230 ~ 237 [48] Reece PE, Bonham CD. 1978. Frequency of endomycorrhizal injection in grazed and ungrazed bluegrama plants. J Range Man, 31: 149~151 [49] Reeves FB, Wagner DW, Moorman T et al. 1979. The role of endomy- corrhizae in revegetation practices in the semi-arid west Ⅰ. A compar sion of incidence of mycorrhizae in severely disturbed vs. natural environments. AmerJ Bot, 66: 1 ~ 13 [50] Sander FE, Tinker PB. 1971. Mechanism of absorption of phosphate from soil by Endogone mycorrhizas. Nature, 233:278~279 [51] Safir GR. 1987. Ecophysiology of VA Mycorrhizal Plants. Boca Raton Florida: CRC Press. [52] Tobar RM, Azcon R, Barea JM. 1994. The improvement of plant N ac quisition from an ammonium-treated , drought-stressed soil by the fungal symbiont in arbuscular myeorrhizae. Mycorrhiza, 4:105 ~ 108 [53] Trappe JM. 1981. Mycorrhizae and productivity of arid and semi-arid rangelands. In: Manassah JT, Briskey EJ eds. Advances in Food Producing Systems for Arid and Semi-arid Lands. New York: Academic Press. 581 ~ 599 [54] Van Kessel C, Singleton PW, Hoben HJ. 1985. Enhanced nitrogen-transfer from a soil bean to maize by vesicular-arbuscular mycorrhizal fungi. Plant Physio, 79: 562 ~ 563 [55] WangH-G(汪洪钢),WuG-Y(吴观以),LiH-Q(李慧荃).1989.Effects of vescular-arbuscular mycorrhizae on the growth of Phaseolus aureus andits water use.Acta Pedol Sin(土壤学报),26(4):393~400(in Chinese) [56] Wallace LL. 1981. Growth, morphology and gas exchanges of mycorrhizal and nonmycirrhizal Pannicum coloratum L., a C4 grass species,under different clipping and fertilization regimes. Oecologia, 49:272~278 [57] Wallace LL. 1987. Effects of clipping and soil compaction on growth, morphology and mycorrhizal colonization of Schzachyriurn scopariurn, a C4 bunchgrass. Oecologia, 72:423~428 [58] Wang Y-s(王幼珊)1991.The roles of soil typesin the selection between mycirrhizal fungi and their host plants.Agric Sci(北京农业科学),9(2):11~14(in Chinese) [59] Whifiord WG.1988.Decomposition and nutrient cycling in disturbed arid ecosystems.In:Allen EB ed.The Reconstruction of Disturbed Arid Ecosystems.An Ecological Approach.Boulder Cobrado:Westview Press.136~161 [60] Zhao Z-W(赵之伟).1999.The roles of mycorrhizal fungiinterrestrial ecosystems.Chinese Biodiver(生物多样性),7(3):240~244(in Chinese) [61] Zhao Z-W(赵之伟).1998.Origin and evolution of theVAmycorrhizal symbiosis.Ghin J Ecol(生态学杂志),17(3):37~41(in Chinese) [62] Zhou C-L(周崇莲),Han G-Z(韩桂之),Zhou Y-Z(周玉芝)et al.1983 Studies on some ectomycorrhizal fungi on pine.Acta Ecol Sin(生态学报),3(2):103~109(in Chinese) |
| [1] | FENG Hanhua, YAN Wenjie, WANG Xu, LUO Yong, XU Qihu, ZHENG Quansheng, XIONG Yujiu. Examining vegetation composition and diversity in rocky desertification regions based on the species-area relationship [J]. Chinese Journal of Applied Ecology, 2026, 37(2): 477-484. |
| [2] | ZHAO Lina, CHEN Xiaohan, LI Mingxin, LI Yaning, ZHANG Yini, GAO Yuanjingkun, GU Shaobin. Selection, identification, and ecological application potential of key bacteria in biological soil crusts of deserts [J]. Chinese Journal of Applied Ecology, 2025, 36(5): 1407-1412. |
| [3] | LI Mengni, JIANG Yongjun, CHENG Yurui, WU Ze, HE Qiufang, LI Jiabin, ZHAO Chunfeng, QIAN Feng. Variation of leaf functional traits and adaptive strategies of dominant woody species in rocky desertification habitats in karst area [J]. Chinese Journal of Applied Ecology, 2025, 36(3): 762-770. |
| [4] | XIAO Yang, CHEN Lulu, WU Chuanjing, ZHANG Yuxue, SUN Osbert Jianxin. Effects of Pinus tabuliformis and Quercus liaotungensis mixture on morphological characteristics of ectomycorrhizae [J]. Chinese Journal of Applied Ecology, 2024, 35(8): 2099-2107. |
| [5] | WANG Yuxin, ZHAO Wenzhi, LIU Hu. Ecosystem regime shifts and its application prospects to ecosystem management in cold and arid regions [J]. Chinese Journal of Applied Ecology, 2024, 35(7): 1997-2005. |
| [6] | QIAN Guixia, WANG Xiaoxin, LI Wu, ZHANG Qianni. Evolution and implementation pathways from desertification prevention and control to sandy land management and use in China [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 8-16. |
| [7] | ZHANG Tonghui, CONG Anqi, LIAN Jie, XU Yuanzhi, WANG Ning. Thinking from Horqin Grassland to Horqin Sandy Land [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 25-30. |
| [8] | CHEN Qing, WANG Jiaxiao, WANG Yifan, WANG Yang, WANG Yan. Plant community differentiation of desertification region in northwest Liaoning Province, China [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 41-48. |
| [9] | ZHAO Yanqiao, LIAN Yuchao, XU Wenwen, HAN Gaoling, ZHAO Yang. Effects of fine substance content in soil substrate on the formation of artificial cyanobacteria crusts [J]. Chinese Journal of Applied Ecology, 2023, 34(9): 2398-2404. |
| [10] | WEI Wei, YU Xiao, ZHANG Meng-zhen, ZHANG Juan, YUAN Tao, LIU Chun-fang. Dynamics of desertification in the lower reaches of Shiyang River Basin, Northwest China during 1995-2018 [J]. Chinese Journal of Applied Ecology, 2021, 32(6): 2098-2106. |
| [11] | CHEN Lu-lu, FENG Qiu-hong, SUN Jian-xin. Differentiation of ectomycorrhizal morphology in Abies faxoniana along an elevation gradient in a subalpine forest of western Sichuan Province, China [J]. Chinese Journal of Applied Ecology, 2020, 31(9): 2911-2922. |
| [12] | BAI Yi-xin, SHENG Mao-yin, HU Qi-juan, ZHAO Chu, WU Jing, ZHANG Mao-sha. Effects of land use change on soil organic carbon and its components in karst rocky desertification of southwest China [J]. Chinese Journal of Applied Ecology, 2020, 31(5): 1607-1616. |
| [13] | WANG Bo, DUAN Yu-xi, WANG Wei-feng, LIU Zong-qi, LI Xiao-jing, LIU Yuan. Variations of soil respiration and its temperature sensitivity in the reversion process of desertification in the eastern Hobq Desert, China [J]. Chinese Journal of Applied Ecology, 2020, 31(1): 104-112. |
| [14] | ZHANG Yuan-bo, HUANG Zong-sheng, CHEN Xuan, GUO Xiao-lan, FENG Wei-wei, LIU Yi-fu, PANG Min, FANG Yin. Suitability of human settlement environment in Buyei traditional villages in rocky desertification area of Guizhou, China. [J]. Chinese Journal of Applied Ecology, 2019, 30(9): 3203-3214. |
| [15] | JIANG Xiao-dong, ZHENG Si-rui, YANG Mi-mi, WAN Jia-ming, HUANG Yue, YU Ke, TONG Xiao-gang. Stability characteristics of soil organic carbon pool following development of sand-fixing forest in Mu Us sandy land, China [J]. Chinese Journal of Applied Ecology, 2019, 30(8): 2567-2574. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||