Page 198 - 《广西植物》2025年第6期
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1 1 8 4                                广  西  植  物                                         45 卷
               tradeoff between xylem safety and xylem ̄specific hydraulic  xylem cavitation [J]. Ecologyꎬ 85(8): 2184-2199.
               efficiency across the world’s woody plant species [J]. New  MARTINEZ ̄VILALTA Jꎬ POYATOS Rꎬ AGUADE Dꎬ et al.ꎬ
               Phytologistꎬ 209(1): 123-136.                     2014. A new look at water transport regulation in plants
            HUANG CYꎬ ZHANG Fꎬ ZHU SDꎬ 2024. Comparative analysis  [J]. New Phytologistꎬ 204(1): 105-115.
               of leaf traits of evergreen broad ̄leaved forest tree species  MA XYꎬ LIU Nꎬ JIAN SGꎬ et al.ꎬ 2003. The population
               from different elevations in lower ̄subtropical region [ J].  characters and conservation of Cycas debaoensis Y. C. Zhong
               Journal of Tropical and Subtropical Botanyꎬ 32(2): 151-  et C. J. Chen. [ J ]. Environmental Scienceꎬ 23(2):
               160. [黄昶吟ꎬ 张峰ꎬ 朱师丹ꎬ 2024. 南亚热带不同海拔                123-126.
               常绿阔叶林树种叶性状的比较分析 [J]. 热带亚热带植                     MENG YYꎬ XIANG Wꎬ WEN Yꎬ et al.ꎬ 2022. Correlations
               物学报ꎬ 32(2): 151-160.]                             between leaf economicsꎬ mechanical resistance and drought
            HU Yꎬ CHU HJꎬ LI JQꎬ 2011. Response of leaf anatomy  tolerance across 41 cycad species [J]. Annals of Botanyꎬ
               characteristics and its plasticity to different soil ̄water  130(3): 345-354.
               conditions of Medicago ruthenica in four populations  NADAL Mꎬ CLEMENTE ̄MORENO MJꎬ PERERA ̄CASTRO
               [J]. Plant Science Journalꎬ 29(2): 218-225. [胡营ꎬ 楚海  AVꎬ et al.ꎬ 2023. Incorporating pressure ̄volume traits into
               家ꎬ 李建强ꎬ 2011. 4 个花苜蓿居群叶片解剖结构特征及                   the leaf economics spectrum [J]. Ecology Lettersꎬ 26(4):
               其可塑性对不同水分处理的响应 [J]. 植物科学学报ꎬ                       549-562.
               29(2): 218-225.]                                NARDINI Aꎬ LUGLIO Jꎬ 2014. Leaf hydraulic capacity and
            JIANG GFꎬ QIN BTꎬ PANG YKꎬ et al.ꎬ 2024. Limited effects  drought vulnerability: Possible trade ̄offs and correlations
               of xylem anatomy on embolism resistance in cycad leaves  with climate across three major biomes [ J]. Functional
               [J]. New Phytologistꎬ 243(4): 1329-1346.          Ecologyꎬ 28(4): 810-818.
            JIN Yꎬ WANG CKꎬ ZHOU ZHꎬ 2019. Conifers but not    OLIVEIRA RSꎬ COSTA FRCꎬ BAALEN EVꎬ et al.ꎬ 2019.
               angiosperms exhibit vulnerability segmentation between  Embolism resistance drives the distribution of Amazonian
               leaves and branches in a temperate forest [ J ]. Tree  rainforest tree species along hydro ̄topographic gradients
               Physiologyꎬ 39(3): 454-462.                       [J]. New Phytologistꎬ 221(3): 1457-1465.
            KRIEG Cꎬ WATKINS JEꎬ CHAMBERS Sꎬ et al.ꎬ 2018. Sex ̄  OLIVEIRA RSꎬ ELLER CBꎬ BARROS FVꎬ et al.ꎬ 2021.
               specific differences in functional traits and resource  Linking plant hydraulics and the fast ̄slow continuum to
               acquisition in five cycad species [ J ]. AoB Plantsꎬ  understand resilience to drought in tropical ecosystems
               10(5): ply049.                                    [J]. New Phytologistꎬ 230(3): 904-923.
            LEVIONNOIS Sꎬ ZIEGLER Cꎬ JANSEN Sꎬ et al.ꎬ 2020.   OU ZFꎬ 2016. The ex ̄situ conservation of cycads in mountain
               Vulnerability and hydraulic segmentations at the stem ̄leaf  Qingxiushan Scenic Spot in Nanning [J]. Journal of Green
               transition: Coordination across neotropical trees [ J]. New  Science and Technology (13): 40-41. [欧振飞ꎬ 2016. 南
               Phytologistꎬ 228(2): 512-524.                     宁青秀山风景区苏铁植物迁地保育探讨 [J]. 绿色科技
            LI Lꎬ MCCORMACK MLꎬ MA CGꎬ et al.ꎬ 2015. Leaf        (13): 40-41.]
               economics and hydraulic traits are decoupled in five species ̄  PETEK ̄PETRIK Aꎬ PETRIK Pꎬ LAMARQUE LJꎬ et al.ꎬ
               rich tropical ̄subtropical forests [ J ]. Ecology Lettersꎬ  2023. Drought survival in conifer species is related to the
               18(9): 899-906.                                   time required to cross the stomatal safety margin [J]. Journal
            LIU Hꎬ YE Qꎬ GLEASON SMꎬ et al.ꎬ 2021. Weak tradeoff  of Experimental Botanyꎬ 74(21): 6847-6859.
               between xylem hydraulic efficiency and safety: Climatic  QIN LLꎬ PANG YKꎬ ZHANG THꎬ et al.ꎬ 2022. Contrasting
               seasonality matters [ J ]. New Phytologistꎬ 229(3):  hydraulic safety margins of three cycads [J]. Guihaiaꎬ 42
               1440-1452.                                        (9): 1602 - 1611. [ 覃 兰 丽ꎬ 庞 玉 堃ꎬ 张 天 浩ꎬ 等ꎬ
            LI Xꎬ BLACKMAN CJꎬ CHOAT Bꎬ et al.ꎬ 2018. Tree hydraulic  2022. 三种苏铁植物呈现出迥异的水力安全边界 [J]. 广
               traits are coordinated and strongly linked to climate ̄of ̄origin  西植物ꎬ 42(9): 1602-1611.]
               across a rainfall gradient [J]. Plant Cell and Environmentꎬ  ROSNER Sꎬ JOHNSON DMꎬ VOGGENEDER Kꎬ et al.ꎬ
               41(3): 646-660.                                   2019. The conifer ̄curve: Fast prediction of hydraulic
            LI XYꎬ PIAO SLꎬ WANG Kꎬ et al.ꎬ 2020. Temporal trade ̄off  conductivity loss and vulnerability to cavitation [J]. Annals
               between gymnosperm resistance and resilience increases  of Forest Scienceꎬ 76(3): 82.
               forest sensitivity to extreme drought [J]. Nature Ecology &  SACK Lꎬ COWAN PDꎬ JAIKUMAR Nꎬ et al.ꎬ 2003a. The
               Evolutionꎬ 4(8): 1075-1083.                       ‘ hydrology ’ of leaves: Co ̄ordination of structure and
            MAHERALI Hꎬ POCKMAN WTꎬ JACKSON RBꎬ 2004.            function in temperate woody species [ J]. Plantꎬ Cell &
               Adaptive variation in the vulnerability of woody plants to  Environmentꎬ 26(8): 1343-1356.
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