Gu M X, Zhang L, Shao L D, et al . Progress in somaclonal variation and its application in germplasm improvement of turfgrasses. Journal of Nuclear Agricultural Sciences, 2013, 27(4): 430-436.
[2]
Duo L A, Zhao S L, Gao Y B. Probe into several ecological issues related to the establishment of urban turf systems. Acta Ecologica Sinica, 2007, 27(3): 1065-1071.
[3]
Ma X M, Luo G F, Li D R, et al . Effects of various trampling stresses on turf characteristics and the natural recovery of Zoysia metrella . Acta Prataculturae Sinica, 2014, 23(3): 243-249.
[4]
Evans L T, Bingham J, Jackson P, et al . Effects of awns and drought on the supply of photosynthate and its distribution within the wheat ears. Annals of Applied Biology, 1972, 70: 67-76.
[5]
Wardlaw I F, Moncur L. Source, sink and hormonal control of translocation in wheat. Planta, 1976, 128: 93-100.
[6]
Brenner M L, Cheikh N. The role of hormones in photosynthate partitioning and seed filling. In: Davies J. Plant Hormones[M]. Dordrecht: Kluwer Academic Publishers, 1995: 649-697.
[7]
Marschner H. Mineral Nutrition of Higher Plants. 2nd edn[M]. London: Academic Press, 1995.
[8]
Seth A K, Wareing P F. Hormone-directed transport of metabolites and its possible role in plant senescence. Journal of Experimental Botany, 1967, 18: 65-77.
[9]
Bangerth F, Aufhammer W, Baum O. IAA level and dry matter accumulation at different positions within a wheat ear. Journal of Plant Physiology, 1985, 63: 121-125.
[10]
Hartung W, Davies W J. Drought induced changes in physiology and ABA. In: Davies W J, Jones H G. Abacisic Acid, Physiology and Biochemistry[M]. Oxford: Bios Scientific Publishers, 1991: 63-79.
[11]
Hartung W, Jeschke W D. Abacisic acid: a long distance stress signal in salt-stress plant. In: Lerner H R. Plants Response to Environmental Stress[M]. New York: Marcel Dekerker, 1999: 333-348.
[12]
Zhang Y M, Yan S J, Cao Z Z, et al . Study on the total saponin measurement and variation in growth period of four legumes. Pratacultural Science, 2009, 26(8): 122-127.
[13]
Bian X J, Hu L, Li X L, et al . Effect of nitrogen and potassium levels on the growth and turf quality of perennial ryegrass. Acta Prataculturae Sinica, 2000, 9(1): 55-59.
[14]
Wang X, Below F E. Cytokinins in enhanced growth and tillering of wheat induced by mixed nitrogen source. Crop Science, 1996, 36: 121-126.
[15]
He Z L, Yuan K N, Zhu Z X. Effect of organic ligands on phosphat adsorption by hydrous iron and aluminum oxides, kaolinite and red earth. Acta Pedologica Sinica, 1990, 27(4): 377-384.
[16]
Wang Y L, He Y Q, Li C L. Persistent activating effect of citric acid on phosphorus in red soil and its mechanism. Acta Pedologica Sinica, 2007, 44(1): 130-135.
[17]
Wei M L, Huang T W, Sun Y Q, et al . Effects of shiqi bio-bacterial fertilizer on Panax notoginseng growth. Special Wild Economic Animal and Plant Research, 2008, 30(3): 61-64.
Xiong Y, Li Q K. Chinese Soil[M]. Beijing: Science Press, 1987: 492.
[38]
Zhao Q L, Wu X, Yuan S J, et al . A study on the dynamics of phosphorus adsorption and desorption characteristics of paddy soil with long-term fertilization. Acta Prataculturae Sinica, 2014, 23(1): 113-122.
[39]
Liu Q, Yao T, Ma H L. Combined effects of bio-fertilizer and citric acid on turf quality and soil biology on a calcareous soil. Acta Prataculturae Sinica, 2014, 23(5): 223-230.
[40]
Zhang R L, Cai B Y. Effects of different fertilization tratments on the coverage density and turf grass growing time of hybrid Zoysia . Journal of Sichuan Grassland, 2004, (2): 32-34.
[41]
Liu Y J, Han J G, Liu Y K. Effects of various fertilization treatments on turf quality of tall fescue. Grassland of China, 2001, 23(6): 27-33.
[42]
Zhang M, Nyborg M, Malhi S S. Comparison of controlled-release nitrogen fertilizer on turfgrass in a moderate temperature area. Hort Science, 1998, 33(7): 1203-1206.
[43]
Wang X Y, Hu T M, Wang Q Z, et al . Growth of kentucky bluegrass as influenced by nitrogen and trinexapac-ethyl. Scientia Agricultura Sinica, 2008, 41(11): 3679-3684.
[44]
Han J G, Liu S, Liu Y J, et al . Effects of fertilization on turf quality of Poa pratensis and nitrate dynamic in soil. Acta Prataculturae Sinica, 2004, 13(6): 50-59.
[45]
Fan W G, An H M, Liu G Q, et al . Changes of endogenous hormones contents in fruit, seeds and their effects on the fruit development of Rosa roxburghii . Agricultural Sciences in China, 2004, 37(5): 728-733.
[46]
Liu J X. Approach to the comprehensive assessment system of turf quality-Ⅱ. utilization of the assessment system. Grassland of China, 2000, 65(3): 54-56.
[47]
Zheng H J, Hua L, Gao Z G. A study on indices system and assessment of turf quality. Journal of Capital Normal University, 2003, 24(1): 78-82.
[48]
Liu X J. A new method of evaluating turf quality-apparent quality evaluation. Journal of Gansu Agricultural University, 2004, 39(6): 651-655.
[49]
Fan H R, Hua L, Wang H H. Study on indices system and assessment of turf quality. Pratacultural Science, 2006, 23(10): 101-105.
[50]
Wang Y Z, Liu X W, Sun H Y, et al . Effects of water and nitrogen on root/shoot ratio and water use efficiency of winter wheat. Chinese Journal of Eco-Agriculture, 2013, 21(3): 282-289.
[51]
Zhao H X, Huang X J, Zhu Z L, et al . Effect of mowing on the volume, weight and sugar content of root in mixed pasture of Bromus inermis and alfalfa. Grassland and Turf, 2007, (4): 50-53.
[52]
Zhen J, Chen Q X, Jin C, et al . Discussion of different TTC methods for the determination of Liquidambar formosana and other broad-leaved tree container seedling root activity. Journal of Zhejiang Agricultural Sciences, 2008, (1): 39-42.
[53]
Bai Y, Du F Y, Liu H W. Research progress on detection technique of plant hormone. Life Sciences, 2010, 22(1): 36-42.
[54]
Ma Y N, Chen M X. Recent development in pretreatment and determination methods of plant endohormones. Chinese Agricultural Science Bulletin, 2011, 27(3): 15-19.
[55]
Li Z G, Wang X M, Liu T Y, et al . Restoration of continuous cropping obstacles of rehmannia glutinosa libosch by applying compound bacterial manure. Hunan Agricultural Sciences, 2008, (5): 62-65.
[56]
Huang J, Wang G F, An S Z, et al . Effect of nitrogen fertilization on the vegetation structure and biomass of degraded meadow and soil fertility. Pratacultural Science, 2009, 26(3): 75-75.
[57]
Ji Y, Zhang Q X, Lin H M, et al . Effect of nitrogen on growth and total alkaloids of Sophora flavescens . Acta Prataculturae Sinica, 2009, 18(3): 159-164.
[58]
Lin H M, Ji Y, Wang B, et al . Effects of nitrogen and phosphorus on seedling growth and total alkaloids of Sophora flavescens . Acta Prataculturae Sinica, 2010, 19(3): 102-109.
[59]
Li X W, Men M X, Wang S T, et al . The effects of long-term fertilization on crop yields and farmland nutrient equilibrium. Acta Prataculturae Sinica, 2009, 18(1): 9-16.
[60]
Yean D Y. Effect of fertilizer application on seed production in zoysia grass. Journal of the Korean Society for Horticultural Science, 1987, 28(2): 55-57.
[61]
He P, Jin J Y. Effect of N and K nutrition on changes of endogenous hormone and metabolism of active oxygen during leaf senescence in spring maize. Plant Nutrition and Fertilizer Science, 1999, 5(4): 289-296.
[62]
Guo Y, Song X L, Wang Q C, et al . Effect of potassium nutrition on endogenous hormone and free radicals in cotton seedling. Acta Agriculturae Boreali-Sinica, 2006, 21(1): 59-62.
[63]
Li L Y, Cui G X. Progress in the research on the changes of plant endogenous hormone under nutrient stress. Crop Research, 2002, (5): 240-244.
[64]
Johson J F, Vance C P, Allan D L. Phosphate deficiency in Lupinus albus . Plant Physiology, 1996, 112(1): 31-41.