Page 72 - 《广西植物》2023年第9期
P. 72

1 6 2 0                                广  西  植  物                                         43 卷
                                                                 decrease in the maximum extent of P700 oxidation after
            参考文献:                                                short ̄term chilling in the light in four plant species with
                                                                 different chilling sensitivities [J]. Phy Plantarumꎬ 123(1):
                                                                 100-107.
            CAMPBELL Dꎬ HURRY Vꎬ CLARKE AKꎬ et al.ꎬ 1998.
                                                               KRAMER DMꎬ JOHNSON Gꎬ KIIRATS Oꎬ et al.ꎬ 2004. New
               Chlorophyll  fluorescence  analysis  of  cyanobacterial
                                                                 fluorescence parameters for the determination of Q redox
               photosynthesis and acclimation [J]. Microbiol Mol Biol Revꎬ                             A
                                                                 state and excitation energy fluxes [ J]. Photosynth Resꎬ
               62(3): 667-683.
                                                                 79(2): 209-218.
            CHEN Mꎬ TANG     YLꎬ 2013.  Chlorophyll  fluorescence
               characteristics of Amaranthus  tricolor  L.  under  high  LEUENBERGER Mꎬ MORRIS JMꎬ CHAN AMꎬ et al.ꎬ 2017.
               temperature stress [ J]. Chin J Ecolꎬ 32 ( 7): 1813 -  Dissecting and modeling zeaxanthin ̄ and lutein ̄dependent
               1818. [陈梅ꎬ 唐运来ꎬ 2013. 高温胁迫下苋菜的叶绿素荧                nonphotochemical quenching in Arabidopsis thaliana [J]. Proc
                                                                 Natl Acad Sciꎬ 114(33): E7009-E7017.
               光特性 [J]. 生态学杂志ꎬ 32(7): 1813-1818.]
                                                               LIU LJꎬ GAO Hꎬ 2018. Photosynthesis and chlorophyll
            CHEN Wꎬ 2003. Studies on violaxanthin de ̄epoxidase activity
               in wheat plants and its relations to the xanthophylls ̄cycle ̄  fluorescence characteristics of Ophiopogon japonicus (L.F.)
                                                                 ker ̄gawl under different shade conditions [ J]. Biotechnol
               depending thermal dissipation under environmental stress
                                                                 Bullꎬ 34(6): 96-101. [刘丽娟ꎬ 高辉ꎬ 2018. 不同遮阴条
               [D]. Taian: Shandong Agricultural University. [ 陈 玮ꎬ
               2003. 逆境条件下小麦紫黄质脱环氧化酶活性及其与叶                       件下麦冬光合和叶绿素荧光特性研究 [J]. 生物技术通
               黄素循 环 热 耗 散 关 系 的 研 究 [D]. 泰 安: 山 东 农 业           报ꎬ 34(6): 96-101.]
                                                               LIU Pꎬ 2007. Comparative studies on dissection structure and
               大学.]
            CORREA ̄GALVIS Vꎬ POSCHMANN Gꎬ MELZER Mꎬ et al.ꎬ      localization of key photosynthetic enzyme among two
               2016. PsbS interactions involved in the activation of energy  ephemeral plantsꎬ C3 and C4 plant [D]. Urumqi: Xinjiang
               dissipation in Arabidopsis [J]. Nat Plantsꎬ 2(2): 15225.  University. [刘彭ꎬ 2007. 两种短命植物与典型的 C3 和 C4
                                                   2+            植物在结构及光合关键酶定位方面的比较研究 [D]. 乌
            DENG CNꎬ PAN XLꎬ WANG SZꎬ et al.ꎬ 2014. Cu  inhibits
               photosystemⅡactivities but enhances photosystem I quantum  鲁木齐: 新疆大学.]
               yield of Microcystis aeruginosa [J]. Biol Trace Elem Resꎬ  LU Tꎬ MENG Zꎬ ZHANG Gꎬ et al.ꎬ 2017. Sub ̄high
               160(2): 268-275.                                  temperature and high light intensity induced irreversible
                                                                 inhibition on photosynthesis system of tomato plant (Solanum
            DONG Yꎬ CHEN JWꎬ XIE SQꎬ et al.ꎬ 2021. Adaptation of
               Pinellia ternate photoreaction system to diurnal changes of light  lycopersicum L.) [J]. Front Plant Sciꎬ 8: 365.
               and temperature [J]. Guihaiaꎬ 41(9): 1486-1496. [董益ꎬ 陈  MAO ZMꎬ 1992. Floristic characteristics of spring ephemeral
               军文ꎬ 谢世清ꎬ 等ꎬ 2021. 半夏光系统对光照和温度日变化                  [J]. Arid Zone Resꎬ 9(1): 11-12. [毛祖美ꎬ 1992. 早春
               的适应 [J]. 广西植物ꎬ 41(9): 1486-1496.]                 短命植物区系特点 [J]. 干旱区研究ꎬ 9(1): 11-12.]
            DONG LQꎬ 2014. Study on the regulating function of PsbS on  MAO ZMꎬ ZHANG DMꎬ 1994. The conspectus of ephemeral
               the dynamic lattice structure of photosystemⅡsupramolecular  flora in northern Xinjiang [J]. Arid Zone Resꎬ 11(3): 1-
               complex [ D]. Beijing: University of Chinese Academy of  26. [毛祖美ꎬ 张佃民ꎬ 1994. 新疆北部早春短命植物区系
               Sciences. [董连清ꎬ 2014. PsbS 对光系统Ⅱ超分子复合物            纲要 [J]. 干旱区研究ꎬ 11(3): 1-26.]
               动态晶格结构的调节功能研究 [D]. 北京: 中国科学院                    MUNEKAGE Yꎬ HOJO Mꎬ MEURER Jꎬ et al.ꎬ 2002. PGR5 is
               大学.]                                              involved in cyclic electron flow around photosystem I and is
            DONG LQꎬ TU WFꎬ LIU Kꎬ et al.ꎬ 2015. The PsbS protein  essential for photoprotection in Arabidopsis [ J ]. Cellꎬ
               plays important roles in photosystem Ⅱ supercomplex  110(3): 361-371.
               remodeling under elevated light conditions [ J]. J Plant  PENG MWꎬ HE Hꎬ WANG ZKꎬ et al.ꎬ 2022. Responses and
               Physiolꎬ 172: 33-41.                              comprehensive evaluation of  growth  characteristics of
            HAILIANG Zꎬ ZICUN Zꎬ YI Zꎬ et al.ꎬ 2022. Melatonin reduces  ephemeral plants in the desert ̄oasis ecotone to soil types
               photoinhibition in cucumber during chilling by regulating the  [J]. J Environ Manageꎬ 316: 115288.
               Calvin ̄Benson Cycle [J]. Sci Horticꎬ 299: 111007.  QI LZꎬ 2007. Comparative studies on photosynthesis of two
            JOHN WSꎬ JOSEPH ABꎬ JEFFREY RSꎬ 1983. Tolerance of   desert ephemeral plants Eremurus inderiensis ( M. Bieb)
               photosynthesis to high temperature in desert [ J]. Plant  Regel and E. anisopterus (Kar. et Kir) Regel [D]. Shihezi:
               Physiolꎬ 74(84): 786-790.                         Shihezi University. [齐鲁壮ꎬ 2007. 沙生短命植物粗柄独
            KIM JHꎬ KIM SJꎬ CHO SHꎬ et al.ꎬ 2005. Photosystem I  尾草和异翅独尾草光合特性的比较 [D]. 石河子: 石河
               acceptor side limitation is a prerequisite for the reversible  子大学.]
   67   68   69   70   71   72   73   74   75   76   77