[1] 王传华,李俊清. 地果的光能利用特性及叶面积指数对土壤营养的响应[J]. 草业科学,2009,26(8):181-186
[2] 郭彦荣,陈芳清,郄光武,等. 铺地榕对不同土壤磷营养水平的生理生态学响应[J]. 生态环境学报,2009,18(5):1908-1913
[3] 杨华斌,韦小丽,党伟. 黔中喀斯特植被不同演替阶段群落物种组成及多样性宰[J]. 山地农业生报,2009,28(3):203-207
[4] 马利民,唐燕萍,张明,等. 三峡库区消落区几种两栖植物的适生性评价[J]. 生态学报,2009,29(4):1886-1892
[5] 冯义龙,万涛,朱华明. 优良的护坡植物:地瓜藤[J]. 南方农业,2011,5(12):10
[6] 高燕,黎云祥,赵婷婷,等. 不同光环境下地果叶形态及叶绿素荧光参数的变化[J]. 绵阳师范学院学报,2013,32(2):65-68
[7] 刘旻霞,马建祖. 阴阳坡植物功能性状与环境因子的变化特征[J]. 水土保持研究,2013,20(1):102-106
[8] Wright I J, Reich P B, Westoby M. Strategy shifts in leaf physiology structure and nutrient content between species of high and low rainfall and high and low-nutrient habitats [J]. Functional Ecology,2001,15(4):423-434
[9] 宋超,王婧,倪郁. 植物表皮蜡质对环境胁迫的响应[J]. 植物生理学报,2011,47(10):951-956
[10] 李婧婧,黄俊华. 植物蜡质及其与环境的关系[J]. 生态学报,2011,31(2):565-574
[11] Snchez F J, Manzanares M, Andrs E F, et al. Residual transpiration rate, epicuticular wax load and leaf colour of pea plants in drought conditions. Influence on harvest index and canopy temperature [J]. European Journal of Agronomy,2001,15(1):57-70
[12] Cameron K D, Teece M A, Smart L B. Increased accumulation of cuticular wax and expression of lipid transfer protein in response to periodic drying events in leaves of tree tobacco [J]. Plant Physiology,2005,140(1):76-183
[13] 郭彦军,郭芸江,唐华,等. 紫外线辐射与土壤干旱胁迫对紫花苜蓿叶表皮蜡质晶体结构及含量的影响[J]. 草业学报,2011,20(6):77-84
[14] Gniwotta F, Vogg G, Gartmann V, et al. What do microbes encounter at the plant surface? Chemical composition of pea leaf cuticular waxes [J]. Plant Physiol,2005,139(1):519-530
[15] Li R C, Luo G M, Philip A, et al. Leaf wax n-alkane chemotaxonomy of bamboo from a tropical rain forest in Southwest China [J]. Plant Systematics and Evolution,2012,298(4):731-738
[16] Maffei M. Chemotaxonomic significance of leaf wax n-alkanes in the unbelliferae, cruciferae and leguminosae (subf. Papilionoideae) [J]. Biochemical Systematics and Ecology,1996,24(6):531-545
[17] 郭金春,马海州. 黄土地层中正构烷烃记录古植被变化研究进展[J]. 盐湖研究,2008,16(3):52-55
[18] Rieley G, Welker J M, Gallaghan T V, et al. Epicuticular waxes of two arctic species: Compositional differences in relation to winter snow cover [J]. Phytochemistry,1995,38(1):45-52
[19] 郑艳红,程鹏,周卫建. 正构烷烃及单体碳同位素的古植被与古气候意义[J]. 海洋地质与第四纪地质,2005,25(1):99-104
[20] Nikolic B. Tesevic V. Chemodiversity of nonacosan-10-ol and n-alkanes in the needle wax of Pinus heldreichii [J]. Chemistry & Biodiversity,2012,9(1):80-90
[21] 熊丽丹,李莉. 地瓜藤提取物对酪氨酸酶的激活作用[J]. 中国现代中药,2012,14(3):25-44
[22] 张朝阳,许桂芳,周凤霞,等. 10种藤本植物边坡水土保持效应研究[J]. 中国水土保持,2008(10):39-41
[23] 窦剑,周双云,许再富. 滇南热带3种乡土地被植物的坪用研究初报[J]. 草业科学,2006,23(8):93-96
[24] 郭彦军,倪郁,郭芸江,等. 空气湿度与土壤水分胁迫对紫花苜蓿叶表皮蜡质及理化指标的影响[J]. 生态学报,2011,31(18):5273-5280
[25] Mazurek M A, Simoneit B R T. Molecular markers in environmental geochemistry [M]. Washington:American Chemical Society,1997,671:92-108
[26] Poynter J, Eglinton G. Proceedings of the ocean drilling program: Scientific results distal bengal fan [M]. Texas:Ocean Drilling Program,1990:116-155
[27] Bray E E, Evans E D. Distribution of n-paraffins as a clue to recognition of source beds [J]. Geochimica et Cosmochimica Acta,1961,22(1):2-15
[28] Kuhn T K, Krull E S, Bowater A, et al. The occurrence of short chain n-alkanes with an even over odd predominance in higher plants and soils [J]. Organic Geochemistry,2010,41(2):88-95
[29] 李仁成. 竹叶及其植硅体类脂物的分类学意义及其季节性变化[D]. 北京:中国地质大学,2010
[30] Kosma D K, Bourdenx B, Bernard A, et al. The impact of water deficiency on leaf cuticle lipids of Arabidopsis [M]. Plant Physiology,2009,151(4):1918-1929
[31] Li Q, Fang X M. Northern Tibetan Plateau cooling and aridification linked to Cenozoic global cooling: Evidence from n-alkane distributions of paleogene sedimentary sequences in the Xining Basin [J]. Chinese Science Bulletin,2011,56(15):1569-1578
[32] 钟艳霞,贺婧,薛骞. 黄土高原西部地区现代木本植被叶片正构烷烃分布模式[J]. 兰州大学学报,2011,2(47):32-36
[33] 崔景伟,黄俊华,谢树成. 湖北清江现代植物叶片正构烷烃和烯烃的季节性变化[J]. 科技通报,2008,53(1):1318-1323
[34] Christopher M. R, Timothy I. E, Radosav P. Even carbon number predominance of plant wax n-alkanes [J]. Organic Geochemistry,2000,31(4):331-336
[35] Inno S. Effect of leaf age on epicuticular wax alkanes in Rhododendron [J]. Phytochemistry,1983,22(2):461-463
[36] Gagosian RB B, Peltzer E T, Merrill J T. The importance of atmospheric input of terrestrial organic material to deep sea sediments [J]. Org Geochem,1986,10(4/6):661-669
[37] Schefuss E, Ratmeyer V, Stuut J B W. Carbon isotope analysis of n-alkanes in dust from the lower atmosphere over the eastern Atlantic [J]. Geochimica et Cosmochimica Acta,2013,16(10):1757-1767
[38] 史作民,程瑞梅,刘世荣. 高山植物叶片D13C的海拔响应及其机理[J]. 生态学报,2004,24(12):2901-2907
[39] 郭娜,高建花,刘明秀,等. 蓼科7种植物叶表皮蜡质晶体形态及其正烷烃分布特征[J]. 草地学报,2013,21(6):1194-1199 |