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11 期 陈弘毅等: 滇西北纳帕海湖滨带优势植物茭草茎解剖结构对模拟增温的响应 1 9 9 7
2618. [管东旭ꎬ 田昆ꎬ 王志保ꎬ 等ꎬ 2018. 滇西北纳帕海 simulated warming on light and CO utilization capacities of
2
湖滨带优势植物杉叶藻(Hippuris vulgaris L.)维管结构对 lakeside dominant plants in a typical plateau wetland in
模拟增温的响应 [J]. 生态学杂志ꎬ 37(9): 2611-2618.] northwestern Yunnan [J]. Acta Ecol Sinꎬ 37(23): 7821-
HAN Gꎬ LI Yꎬ QIAO Zꎬ et al.ꎬ 2021. Advances in the 7832. [刘振亚ꎬ 张晓宁ꎬ 李丽萍ꎬ 等ꎬ 2017. 大气增温对
regulation of epidermal cell development by C H zinc finger 滇西北高原典型湿地湖滨带优势植物的光和 CO 利用能
2 2 2
proteins in plants [J]. Front Plant Sciꎬ 12: 754512. 力的影响 [J]. 生态学报ꎬ 37(23): 7821-7832.]
HENDRICKSON Lꎬ SHARWOOD Rꎬ LUDWIG Mꎬ et al.ꎬ MA YFꎬ 2020. Effect of increased precipitation and nighttime
2008. The effects of rubisco activase on C4 photosynthesis warming on cotton yield in North China Plain [D]. Kaifeng:
and metabolism at high temperature [J]. J Exp Botꎬ 59(7): Henan University: 3-6. [马雅菲ꎬ 2020. 增雨和夜间增温
1789-1798. 对华 北 平 原 棉 花 产 量 的 影 响 [ D]. 开 封: 河 南 大
HEREDIA ̄GUERRERO JAꎬ GUZMAN ̄PUYOL Sꎬ BENÍTEZ 学: 3-6.]
JJꎬ et al.ꎬ 2018. Plant cuticle under global change: MANRIQUE LAꎬ BARTHOLOMEW DPꎬ 1991. Growth and
biophysical implications [ J]. Glob Change Biolꎬ 24 (7): yield performance of Potato grown at three elevations in
2749-2751. Hawaii: II. dry matter production and efficiency of
HODSON Rꎬ 2017. Climate change [J]. Natureꎬ 550: S53. partitioning [J]. Crop Sciꎬ 31: 367-372.
IPCCꎬ 2013. Working group I contribution to the IPCC fifth MENG Hꎬ WANG Lꎬ ZHANG ZSꎬ et al.ꎬ 2016. Researches on
assessment reportꎬ climate change 2013: The physical the impacts of climate change on spatial distribution and
science basis: Summary for Policymakers [M]. Cambridge: main ecological functions of inland wetland ecosystem in
Cambridge University Press. China [J]. Wetland Sciꎬ 14(5): 710-716. [孟焕ꎬ 王琳ꎬ
KENNEDY Jꎬ CHRISTIDIS Nꎬ DUNN Rꎬ et al.ꎬ 2022. Global 张仲胜ꎬ 等ꎬ 2016. 气候变化对中国内陆湿地空间分布和
and regional climate in 2021 [J]. Weather. DOI:10.1002/ 主要生 态 功 能 的 影 响 研 究 [ J]. 湿 地 科 学ꎬ 14(5):
wea.4256. 710-716.]
'
KIM YXꎬ STUMPF Bꎬ SUNG Jꎬ et al.ꎬ 2018. The relationship MIROS AW ̄SWI TEK Dꎬ MARCINKOWSKI Pꎬ KOCHANEK
between turgor pressure change and cell hydraulics of midrib Kꎬ et al.ꎬ 2020. The impact of climate change on flow
parenchyma cells in the leaves of Zea mays [ J ]. conditions and wetland ecosystems in the Lower Biebrza River
Cellꎬ 7(10): 180. (Poland) [J]. PeerJꎬ 8: e9778.
LI Rꎬ JIANG ZMꎬ ZHANG SXꎬ et al.ꎬ 2015. A review of new PAUL Sꎬ DAS MKꎬ BAISHYA Pꎬ et al.ꎬ 2017. Effect of high
research progress on the vulnerability of xylem embolism of temperature on yield associated parameters and vascular
woody plants [J]. Chin J Plant Ecolꎬ 39(8): 838-848. [李 bundle development in five potato cultivars [J]. Sci Horticꎬ
荣ꎬ 姜在民ꎬ 张硕新ꎬ 等ꎬ 2015. 木本植物木质部栓塞脆 225: 134-140.
弱性研究新进展 [J]. 植物生态学报ꎬ 39(8): 838-848.] PITTERMANN Jꎬ SPERRY Jꎬ 2003. Tracheid diameter is the
LI WDꎬ LIU YGꎬ TIAN Kꎬ et al.ꎬ 2010. Research on key trait determining the extent of freezing ̄induced embolism
purification effect of Jian Lake Z.latifolia wetland lakeside in conifers [J]. Tree Physiolꎬ 23(13): 907-914.
zone in Northwest of Yunnan plateau on nitrogen and QADERI MMꎬ MARTEL ABꎬ DIXON SLꎬ 2019. Environmental
phosphorus of agricultural non ̄point source [ J]. J Anhui factors influence plant vascular system and water regulation
Agric Sciꎬ 38(32): 18294-18296. [李卫东ꎬ 刘云根ꎬ 田 [J]. Plantsꎬ 8(3): 65.
昆ꎬ 等ꎬ 2010. 滇西北高原剑湖茭草湿地湖滨带对农业面 RISTIC Zꎬ JENKS MAꎬ 2002. Leaf cuticle and water loss in
源 N P 污 染 净 化 效 果 研 究 [ J]. 安 徽 农 业 科 学ꎬ maize lines differing in dehydration avoidance [J]. J Plant
38(32): 18294-18296.] Physiolꎬ 159(6): 645-651.
LI Yꎬ LIANG Wꎬ ZHAO Bꎬ 2020. Physiological and SHANG Wꎬ YANG YXꎬ 2012. Degradation characteristicsꎬ
microstructural responses of two Rhododendron cultivars to patternsꎬ and processes of lakeside wetland in Napahai of
high temperature and low light [ J ]. Hortic Environ northwest Yunnan plateauꎬ Southwest China [ J]. Chin J
Biotechnolꎬ 61(3): 445-458. Appl Ecolꎬ 23(12): 3257-3265. [尚文ꎬ 杨永兴ꎬ 2012. 滇
LIU CGꎬ LIU FXꎬ SONG XFꎬ et al.ꎬ 2012. Growth 西北高原纳帕海湖滨湿地退化特征、规律与过程 [J]. 应
adaptabilities of Z. latifolia in different artificial wetlands 用生态学报 23(12): 3257-3265.]
[J]. J Lake Sciꎬ 24(1): 75-82. [刘长娥ꎬ 刘福兴ꎬ 宋祥 SKINNER CBꎬ POULSEN CJꎬ MANKIN JSꎬ 2018.
甫ꎬ 等ꎬ 2012. 茭草(Z. latifolia)在不同人工湿地中的生 Amplification of heat extremes by plant CO physiological
2
长适应性 [J]. 湖泊科学ꎬ 24(1): 75-82.] forcing [J]. Nat Communꎬ 9(1): 1-11.
LIU ZYꎬ ZHANG XNꎬ LI LPꎬ et al.ꎬ 2017. Influence of SONG MLꎬ WEN XZꎬ LI YLꎬ 2010. Effects of high rhizosphere