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8 期                 孙维等: 云南亚热带森林固氮地衣与共存附生植物间的氮转移                                          1 3 7 9

               619/ 620: 630-637.                                bryophytes  as  bio ̄indicators  of  atmospheric  nitrogen
            LIU XYꎬ KOBA Kꎬ KOYAMA LAꎬ et al.ꎬ 2018. Nitrate is an  deposition in a subtropical montane cloud forest: Response
               important nitrogen source for Arctic tundra plants [ J].  patternsꎬ mechanismꎬ and critical load [J]. Environmental
               Proceedings of the National Academy of Sciencesꎬ 115(13):  Pollutionꎬ 229: 932-941.
               3398-3403.                                      SIERRA Jꎬ DAUDIN Dꎬ DOMENACH AMꎬ et al.ꎬ 2007.
            LU HZꎬ BROOKER Rꎬ SONG Lꎬ et al.ꎬ 2020. When         Nitrogen transfer from a legume tree to the associated grass
               facilitation meets clonal integration in forest canopies  estimated by the isotopic signature of tree root exudates: A
                                                                              15                  15
               [J]. New Phytologistꎬ 225(1): 135-142.            comparison of the N leaf feeding and natural N abundance
            LÜTTGE Uꎬ 2016. Transport processes: the key integrators in  methods [J]. European Journal of Agronomyꎬ 27(2/ 3/ 4):
               plant biology [J]. Progress in Botanyꎬ 77: 3-65.  178-186.
                                                                                                          15
            MARKLEIN ARꎬ HOULTON BZꎬ 2012. Nitrogen inputs     STEWART GRꎬ SCHMIDT Sꎬ HANDLEY LLꎬ et al.ꎬ 1995. N
               accelerate phosphorus cycling rates across a wide variety of  natural  abundance  of  vascular  rainforest  epiphytes:
               terrestrial ecosystems [J]. New Phytologistꎬ 193: 696-704.  Implications for nitrogen source and acquisition [J]. Plantꎬ
            MARKHAM Jꎬ FERNÁNDEZ OTÁROLA Mꎬ 2021. Bryophyte      Cell & Environmentꎬ 18(1): 85-90.
               and lichen biomass and nitrogen fixation in a high elevation  SU THꎬ ZHOU CYꎬ SUN Wꎬ et al.ꎬ 2023. Greater
               cloud forest in Cerro de La Muerteꎬ Costa Rica [ J].  differentiation in nitrogen sources is essential for co ̄occurring
               Oecologiaꎬ 195(2): 489-497.                       epiphytes under low ̄nitrogen canopy conditions [ J ].
            MA WZꎬ 2009. The composition and biomass of epiphytic  Environmental and Experimental Botanyꎬ 215: 105509.
               materials and their relationships with ecological factors in  TAKEBAYASHI Yꎬ KOBA Kꎬ SASAKI Yꎬ et al.ꎬ 2010. The
                                                                                  15
               Xujiaba region from Ailao Mountainꎬ Yunnan [D]. Beijing:  natural abundance of  N in plant and soil ̄available N
               University of Chinese Academy of Sciences: 30-51. [马文  indicates a shift of main plant N resources to NO  -  from
                                                                                                       3
               章ꎬ 2009. 云南哀牢山徐家坝地区附生(植)物的组成、生                    NH  +  along  the  N  leaching  gradient  [ J ].  Rapid
                                                                   4
               物量及其与生态因子的关系 [D]. 北京: 中国科学院研                      Communications in Mass Spectrometryꎬ 24(7): 1001-1008.
               究生院: 30-51.]                                    TRESEDER KKꎬ DAVIDSON DWꎬ EHLERINGER JRꎬ
            MILLBANK JWꎬ OLSEN JDꎬ 1986. The assessment of nitrogen  1995. Absorption of ant ̄provided carbon dioxide and nitrogen
               fixation and throughput by lichens IV. Nitrogen losses from  by a tropical epiphyte [J]. Natureꎬ 375(6527): 137-139.
               Peltigera membranacea (Ach.) Nyl. in autumnꎬ winter and  WANIA Rꎬ HIETZ Pꎬ WANEK Wꎬ 2002. Natural  15 N
               spring [J]. New Phytologistꎬ 104(4): 643-651.     abundance of epiphytes depends on the position within the
            NASH THꎬ 2008. Lichen biology [M]. Cambridge: Cambridge  forest canopy: Source signals and isotope fractionation
               University Press: 216-233.                        [J]. Plantꎬ Cell & Environmentꎬ 25(4): 581-589.
            PIKE LHꎬ 1978. The importance of epiphytic lichens in mineral  WEGNER Cꎬ WUNDERLICH Mꎬ KESSLER Mꎬ et al.ꎬ
               cycling [J]. The Bryologistꎬ 81(2): 247-257.      2003. Foliar C ∶ N ratio of ferns along an Andean elevational
            PIRHOFER ̄WALZL Kꎬ RASMUSSEN Jꎬ HØGH ̄JENSEN Hꎬ        gradient [J]. Biotropicaꎬ 35(4): 486-490.
               et al.ꎬ 2012. Nitrogen transfer from forage legumes to nine  WOODS CLꎬ CARDELÚS CLꎬ DEWALT SJꎬ 2015. Microhabitat
               neighbouring plants in a multi ̄species grassland [J]. Plant  associations of vascular epiphytes in a wet tropical forest
               and Soilꎬ 350: 71-84.                             canopy [J]. Journal of Ecologyꎬ 103: 421-430.
            PU XYꎬ WANG PCꎬ LI Sꎬ et al.ꎬ 2021. Response of stomatal  WU ZYꎬ QU ZXꎬ JIANG HQꎬ 1983. Research of forest
               characteristics and its plasticity to light change in leaves of  ecosystems on Ailao Mountainsꎬ Yunnan [ M]. Kunming:
               six epiphytes in subtropical forests [J]. Guihaiaꎬ 41(9):  Yunnan Science and Technology Press: 74-117. [吴征镒ꎬ
               1465-1475. [普晓妍ꎬ王鹏程ꎬ李苏ꎬ 等ꎬ 2021. 亚热带森             曲仲湘ꎬ 姜汉侨ꎬ 1983. 云南哀牢山森林生态系统研究
               林附生植物叶片气孔特征及其可塑性对光照变化的响应                          [M]. 昆明: 云南科技出版社: 74-117.]
               [J]. 广西植物ꎬ 41(9): 1465-1475.]                   ZHANG CMꎬ ZHANG CQꎬ AZUMA Tꎬ et al.ꎬ 2023. Different
            QIU XZꎬ XIE SCꎬ 1998. Research of forest ecosystems on Ailao  nitrogen  acquirement  and  utilization  strategies  might
               Mountains [M]. Kunming: Yunnan Science and Technology  determine the ecological competition between ferns and
               Press: 1-8. [邱学忠ꎬ 谢寿昌ꎬ 1998. 哀牢山森林生态系             angiosperms [J]. Annals of Botanyꎬ 131(7): 1097-1106.
               统研究 [M]. 昆明: 云南科技出版社: 1-8.]                     ZHANG TTꎬ LIU WYꎬ HU Tꎬ et al.ꎬ 2020. Divergent
            RASMUSSEN HNꎬ RASMUSSEN FNꎬ 2018. The epiphytic      adaptation strategies of vascular facultative epiphytes to bark
               habitat on a living host: Reflections on the orchid ̄tree  and soil habitats: Insights from stoichiometry [J]. Forestsꎬ
               relationship [J]. Botanical Journal of the Linnean Societyꎬ  12(1): 16.
               186: 456-472.                                   ZOTZ Gꎬ WEIGELT Pꎬ KESSLER Mꎬ et al.ꎬ 2021. EpiList
            RASMUSSEN Jꎬ GYLFADÓTTIR Tꎬ LOGES Rꎬ et al.ꎬ         1.0: A global checklist of vascular epiphytes [J]. Ecologyꎬ
               2013. Spatial and temporal variation in N transfer in grass ̄  102(6): e03326.
               white clover mixtures at three Northern European field sites  ZOTZ Gꎬ 2016. Plants on plants — the biology of vascular
               [J]. Soil Biology and Biochemistryꎬ 57: 654-662.  epiphytes [ M]. Cham: Springer International Publishing:
            RICHARDS JHꎬ 2021. Assessing the strength of climate and  13-46.
               land ̄use influences on montane epiphyte communities
               [J]. Conservation Biologyꎬ 35: 1496-1506.                             (责任编辑  蒋巧媛  王登惠)
            SHI XMꎬ SONG Lꎬ LIU WYꎬ et al.ꎬ 2017. Epiphytic
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