[1] |
王啸晨. 4种观赏竹花叶色素组成、结构分析及相关调控基因的研究[D]. 北京: 中国林业科学研究院, 2012.
WANG Xiaochen. Study on Pigment Composition, Structure of Variegated Leaf and Related Genes from Four Ornamental Bamboos[D]. Beijing: Chinese Academy of Forestry, 2012. |
[2] |
杨海芸, 王晓芹, 张宁, 等. 日本花叶矢竹组织培养与叶色变异研究[J]. 竹子研究汇刊, 2010, 29(4): 15 − 20.
YANG Haiyun, WANG Xiaoqin, ZHANG Ning, et al. Tissue culture and leaf color variation of Pseudosasa japonica cv. akebonosuji [J]. J Bamboo Res, 2010, 29(4): 15 − 20. |
[3] |
王振兴, 曹建冉, 秦红艳, 等. 狗枣猕猴桃彩叶色素含量和结构共同影响叶色[J]. 植物生理学报, 2016, 52(12): 1921 − 1926.
WANG Zhenxing, CAO Jianran, QIN Hongyan, et al. Common effect of pigment content and leaf structure on leaf color in Actinidia kolomikta [J]. Plant Physiol Commun, 2016, 52(12): 1921 − 1926. |
[4] |
吴雪霞, 龚静, 查丁石. 遮荫对茄子幼苗叶片叶绿素荧光特性的影响[J]. 吉林蔬菜, 2010(4): 35 − 38.
WU Xuexia, GONG Jing, ZHA Dingshi. Effects of shading on chlorophyll fluorescence characteristics in leaves of eggplant seedlings [J]. Veg Jilin, 2010(4): 35 − 38. |
[5] |
陈凌艳, 何丽婷, 赖金莉, 等. 银丝竹不同叶色叶绿素合成及叶结构差异[J]. 森林与环境学报, 2017, 37(4): 385 − 391.
CHEN Lingyan, HE Liting, LAI Jinli, et al. The variation of chlorophyll biosynthesis and the structure in different color leaves of Bambusa multiplex ‘Silverstripe’ [J]. J For Environ, 2017, 37(4): 385 − 391. |
[6] |
刘儒, 原勤勤, 袁小平, 等. 不同枫香家系叶片色素含量变化及其与叶色变化的关系[J]. 南方林业科学, 2017, 45(4): 46 − 49.
LIU Ru, YUAN Qinqin, YUAN Xiaoping, et al. The relationship with change of pigment content in leaves of different Liquidambar formosana families and change of leaf color [J]. Nanfang For Sci, 2017, 45(4): 46 − 49. |
[7] |
成敏敏, 陈柯伊, 朱雪玉, 等. 花叶矢竹复绿期光合特性及叶绿体结构[J]. 林业科学, 2018, 54(4): 1 − 10.
CHENG Minmin, CHEN Keyi, ZHU Xueyu, et al. Photosynthetic characteristics and chloroplast ultrastructure of Pseudosasa japonica f.akebonosuji during green-revertible albino stage [J]. Sci Silv Sin, 2018, 54(4): 1 − 10. |
[8] |
张向娜, 熊立瑰, 温贝贝, 等. 茶树叶色变异研究进展[J]. 植物生理学报, 2020, 56(4): 643 − 653.
ZHANG Xiangna, XIONG Ligui, WEN Beibei, et al. Advances in leaf color variation of tea plant (Camellia sinensis) [J]. J Plant Physiol, 2020, 56(4): 643 − 653. |
[9] |
刘芬, 屈成, 肖楠, 等. 水稻高光谱变化特征与叶绿素含量监测研究[J]. 激光生物学报, 2017, 26(4): 326 − 333.
LIU Fen, QU Cheng, XIAO Nan, et al. A study on spectral characteristics and chlorophyll content in rice [J]. Acta Laser Biol Sin, 2017, 26(4): 326 − 333. |
[10] |
JOLY D, BIGRAS C, HARNOIS J, et al. Kinetic analyses of the OJIP chlorophyll fluorescence rise in thylakoid membranes [J]. Photosynth Res, 2005, 84(1/3): 107 − 112. |
[11] |
ZHANG Shouren, GAO Rongfu. Effects of light stress on oxygen evolution and photochemical energy storage of hybrid poplar clones determined by photoacoustic technique [J]. Acta Bot Sin, 2000, 42(8): 818 − 823. |
[12] |
LICHTENTHALER H K. Chlorophylls and carotenoids: pigment photosynthetic biomembranes [J]. Methods Enzymol, 1987, 148C(1): 350 − 382. |
[13] |
张宪政. 植物叶绿素含量测定: 丙酮乙醇混合液法[J]. 辽宁农业科学, 1986(3): 26 − 28.
ZHANG Xianzheng. Measurement of chlorophyll content in plants: acetone ethanol mixture [J]. Liaoning Agric Sci, 1986(3): 26 − 28. |
[14] |
GITELSON A A, MERZLYAK M N. Signature analysis of leaf reflectance spectra: algorithm development for remote sensing of chlorophyll [J]. J Plant Physiol, 1996, 148(3/4): 494 − 500. |
[15] |
GITELSON A A, GRITZ Y, MERZLYAK M N. Relationships between leaf chlorophyll content and spectral reflectance and algorithms for non-destructive chlorophyll assessment in higher plant leaves [J]. J Plant Physiol, 2003, 160(3): 271 − 282. |
[16] |
LIU Caifeng, GUO Jiali, CUI Yanlan, et al. Effects of cadmium and salicylic acid on growth, spectral reflectance and photosynthesis of castor bean seedlings [J]. Plant Soil, 2011, 344(1/2): 131 − 141. |
[17] |
GAMON, J A, SERRANO L, SURFUS J S. The photochemical reflectance index: an optical indicator of photosynthetic radiation use efficiency across species, functional types, and nutrient levels [J]. Oecologia, 1997, 112(4): 492 − 501. |
[18] |
STRASSER R J, SRIVASTAVA A, TSIMILLI-MICHAE M. The fluorescence transient as a tool to characterize and screen photosynthetic samples[M]//YUNUS M, PATHRE U, MOHANTY P. Probing Photosynthesis: Mechansim, Regulation and Adaptation. London: Taylor and Francis Press, 2000: 445−483. |
[19] |
李鹏民, 高辉远, STRASSER R J. 快速叶绿素荧光诱导动力学分析在光合作用研究中的应用[J]. 植物生理与分子生物学学报, 2005, 31(6): 559 − 566.
LI Pengmin, GAO Huiyuan, STRASSER R J. Application of the fast chlorophyll fluorescence induction dynamics analysis in photosynthesis [J]. Study J Plant Physiol Mol Biol, 2005, 31(6): 559 − 566. |
[20] |
RICHARDSON A D, DUIGAN S P, BERLYN G P. An evaluation of noninvasive methods to estimate foliar chlorophyll content [J]. New Phytol, 2010, 153(1): 185 − 194. |
[21] |
SCHANSKER G, SRIVASTAVA A, STRASSER R J. Characterization of the 820-nm transmission signal paralleling the chlorophyll a fluorescence rise (OJIP) in pea leaves [J]. Funct Plant Biol, 2003, 30(7): 785 − 796. |
[22] |
APPENROTH K J, STÖCKEL J, SRIVASTAVA A, et al. Multiple effects of chromate on the photosynthetic apparatus of Spirodela polyrhiza as probed by OJIP chlorophyll a fluorescence measurements [J]. Environ Pollut, 2001, 115(1): 49 − 64. |
[23] |
周云龙. 植物生物学[M]. 北京: 高等教育出版社, 1999. |
[24] |
季鹏章, 梁名志, 宋维希, 等. 茶树珍稀品种‘紫娟’的叶片色素含量与叶色变化的关系研究[J]. 西南农业学报, 2010, 23(6): 1860 − 1862.
JI Pengzhang, LIANG Mingzhi, SONG Weixi, et al. Relationship between changes of pigments content and leaf color changing in ‘Zijuan’ (Camellia sinensis var. assamica) [J]. Southwest China J Agric Sci, 2010, 23(6): 1860 − 1862. |
[25] |
WANG Lu, YUE Chuan, CAO Hongli, et al. Biochemical and transcriptome analyses of a novel chlorophyll-deficient chlorina tea plant cultivar [J]. BMC Plant Biol, 2014, 14(1): 352. |
[26] |
GITELSON A A, MERZLYAK M N, LICHTENTHALER H K. Detection of red edge position and chlorophyll content by reflectance measurements near 700 nm [J]. J Plant Physiol, 1996, 148(3/4): 501 − 508. |
[27] |
李涛, 姜闯道. 密植对薄荷叶片光系统Ⅱ功能的影响[J]. 植物生理学报, 2017, 53(7): 1279 − 1286.
LI Tao, JIANG Chuangdao. Effects of close planting on photosystem Ⅱ functions in Mentha haplocalyx leaves [J]. Plant Physiol Commun, 2017, 53(7): 1279 − 1286. |
[28] |
孙小玲, 许岳飞, 马鲁沂, 等. 植株叶片的光合色素构成对遮阴的响应[J]. 植物生态学报, 2010, 34(8): 989 − 999.
SUN Xiaoling, XU Yuefei, MA Luyi, et al. A review of acclimation of photosynthetic pigment composition in plant leaves to shade environment [J]. Chin J Plant Ecol, 2010, 34(8): 989 − 999. |
[29] |
卢玉生, 官凤英, 彭超, 等. 竹笋截梢对绿竹生长及叶绿素荧光特性的影响[J]. 浙江农林大学学报, 2020, 37(1): 51 − 59.
LU Yusheng, GUAN Fengying, PENG Chao, et al. Effects of bamboo shoot truncation on growth and chlorophyll fluorescence characteristics of Dendrocalamopsis oldhami [J]. J Zhejiang A&F Univ, 2020, 37(1): 51 − 59. |
[30] |
韩涛. 叶绿素缺乏对水稻光系统光化学功能的影响[D]. 南京: 南京农业大学, 2010.
HAN Tao. Effect of Chlorophyll Deficiency on Photosystem Photochemistry and Photoinhibition in Rice[D]. Nanjing: Nanjing Agricultural University, 2010. |
[31] |
徐秀玉, 程来亮, 金立桥, 等. AOX途径在苹果离体叶片失水过程中的光破坏防御作用[J]. 西北植物学报, 2016, 36(5): 964 − 970.
XU Xiuyu, CHENG Lailiang, JIN Liqiao, et al. Role of mitochondrial alternative oxidase(AOX) in photoprotection in apple detached leaf under water stress [J]. Acta Bot Boreali-Occident Sin, 2016, 36(5): 964 − 970. |