Chin J Plant Ecol ›› 2010, Vol. 34 ›› Issue (8): 989-999.DOI: 10.3773/j.issn.1005-264x.2010.08.012
• Review • Previous Articles Next Articles
SUN Xiao-Ling1, XU Yue-Fei1, MA Lu-Yi2, ZHOU He1,*()
Received:
2009-12-01
Accepted:
2010-01-20
Online:
2010-12-01
Published:
2010-09-28
Contact:
ZHOU He
SUN Xiao-Ling, XU Yue-Fei, MA Lu-Yi, ZHOU He. A review of acclimation of photosynthetic pigment composition in plant leaves to shade environment[J]. Chin J Plant Ecol, 2010, 34(8): 989-999.
Fig. 1 Schematic of conversion pathway of primary plant carotenoids responsible for photoprotection and light harvesting (adapted from McElroy et al., 2006).
Fig. 2 Proportion of photosynthetic photon flux plus far-red quanta (PPFFR; μmol·s-1·m-2) under deciduous shade, coniferous shade, building shade and full sun in Columbus, Ohio, USA (Adapted from Bell et al., 2000).
Fig. 3 Diurnal photosynthetic photo flux (PPF) under deciduous shade, coniferous shade, building shade and full sun in Columbus, Ohio, USA. Horizontal lines at 150 and 867 μmol·m-2·s-1 represent the approximate light compensation and saturation points of perennial ryegrass (Adapted from Bell et al., 2000).
Fig. 4 Absorption spectra of chlorophyll a, chlorophyll b and carotenoids. Source: http://www.life.uiuc.edu/govindjee/paper/fig.5.gif. Cited: Aug. 2009.
[1] |
Amunts A, Drory O, Nelson N (2007). The structure of a plant photosystem I supercomplex at 3.4 Å resolution. Nature, 447, 58-63.
URL PMID |
[2] | Atanasova L, Stefanov D, Yordanov I, Kornova K, Kavard- zikov L (2003). Comparative characteristics of growth and photosynthesis of sun and shade leaves from normal and pendulum walnut (Juglans regia L.) trees. Photosynt- hetica, 41, 289-292. |
[3] | Baig MJ, Anand A, Mandal PK, Bhatt RK (2005). Irradiance influences contents of photosynthetic pigments and proteins in tropical grasses and legumes. Photosynthetica, 43, 47-53. |
[4] | Bell GE, Danneberger TK (1999). Temporal shade on creeping bentgrass turf. Crop Science, 39, 1142-1146. |
[5] | Bell GE, Danneberger TK, McMahon MJ (2000). Spectral irradiance available for turfgrass growth in sun and shade. Crop Science, 40, 189-195. |
[6] | Bertamini M, Muthuchelian K, Nedunchezhian N (2006). Shade effect alters leaf pigments and photosynthetic responses in Norway spruce (Picea abies L.) grown under field conditions. Photosynthetica, 44, 227-234. |
[7] |
Bradburne JA, Kasperbauer MJ, Mathis JN (1989). Reflected far-red light effects on chlorophyll and light-harvesting chlorophyll protein (LHC-II) contents under field conditions. Plant Physiology, 91, 800-803.
URL PMID |
[8] | Chu ZX (储钟稀), Tong Z (童哲), Feng LJ (冯丽洁), Zhang Q (张群), Wen XG (温晓刚), Song ST (宋森田), Zhu XF (朱孝凤) (1999). Effect of different light quality on photosynthetic characteristics of cucumber leaves. Acta Botanica Sinica (植物学报), 41, 867-870. (in Chinese with English abstract) |
[9] | Dall’Osto L, Fiore A, Cazzaniga S, Giuliano G, Bassi R (2007). Different roles of α- and β-branch xanthophylls in photosystem assembly and photoprotection. Journal of Biological Chemistry, 282, 35056-35068. |
[10] |
Dall’Osto L, Lico C, Alric J, Giuliano G, Havaux M, Bassi R (2006). Lutein is needed for efficient chlorophyll triplet quenching in the major LHCII antenna complex of higher plants and effective photoprotection in vivo under strong light. BMC Plant Biology, 6, 32.
URL PMID |
[11] |
Davison PA, Hunter CN, Horton P (2002). Overexpression of [beta]-carotene hydroxylase enhances stress tolerance in Arabidopsis. Nature, 418, 203-206.
DOI URL PMID |
[12] | Demmig-Adams B, Adams WW III (1992). Carotenoid composition in sun and shade leaves of plants with different life forms. Plant, Cell and Environment, 15, 411-419. |
[13] |
Demmig-Adams B, Adams WW III (2000). Harvesting sunlight safely. Nature, 403, 371-374.
DOI URL PMID |
[14] | Demmig-Adams B, Adams WW III (2006). Photoprotection in an ecological context: the remarkable complexity of thermal energy dissipation. New Phytologist, 172, 11-21. |
[15] | Demmig-Adams B, Gilmore AM, Adams WW III (1996). Carotenoids 3: in vivo function of carotenoids in higher plants. Journal of the Federation of American Societies for Experimental Biology, 14, 402-412. |
[16] | Eichelmann H, Oja V, Rasulov B, Padu E, Bichele I, Pettai H, Mänd P, Kull O, Laisk A (2005). Adjustment of leaf photosynthesis to shade in a natural canopy: reallocation of nitrogen. Plant, Cell and Environment, 28, 389-401. |
[17] |
Ferreira KN, Iverson TM, Maghlaoui K, Barber J, Iwata S (2004). Architecture of the photosynthetic oxygen- evolving center. Science, 303, 1831-1838.
URL PMID |
[18] | García-Plazaola JI, Becerril JM (2000). Photoprotection mechanisms in European beech (Fagus sylvatica L.) seedlings from diverse climatic origins. Trees, 14, 339-343. |
[19] |
García-Plazaola JI, Matsubara S, Osmond CB (2007). The lutein epoxide cycle in higher plants: its relationships to other xanthophyll cycles and possible functions. Functional Plant Biology, 34, 759-773.
DOI URL PMID |
[20] | Gilmore AM, Yamamoto HY (1991). Resolution of lutein and zeaxanthin using a non-endcapped, lightly carbon-loaded C18 high-performance liquid chromatographic column. Journal of Chromatography A, 543, 137-145. |
[21] |
Glick RE, McCauley SW, Melis A (1985). Effect of light quality on chloroplact-membrane organization and function in pea. Planta, 164, 487-494.
URL PMID |
[22] | Hansen U, Fiedler B, Rank B (2002a). Variation of pigment composition and antioxidative systems along the canopy light gradient in a mixed beech/oak forest: a comparative study on deciduous tree species differing in shade tolerance. Trees, 16, 354-364. |
[23] | Hansen U, Schneiderheinze J, Rank B (2002b). Is the lower shade tolerance of Scots pine, relative to pedunculate oak, related to the composition of photosynthetic pigments? Photosynthetica, 40, 369-374. |
[24] | Hobe S, Trostmann I, Raunser S, Paulsen H (2006). Assembly of the major light-harvesting chlorophyll-a/b complex: thermodynamics and kinetics of neoxanthin binding. Journal of Biological Chemistry, 281, 25156-25166. |
[25] |
Holt NE, Zigmantas D, Valkunas L, Li XP, Niyogi KK, Fleming GR (2005). Carotenoid cation formation and the regulation of photosynthetic light harvesting. Science, 307, 433-436.
URL PMID |
[26] | Jiang Y, Duncan RR, Carrow RN (2004). Assessment of low light tolerance of seashore paspalum and bermudagrass. Crop Science, 44, 587-594. |
[27] | Johnson GN, Scholes JD, Horton P, Young AJ (1993). Relationships between carotenoid composition and growth habit in British plant species. Plant, Cell & Environment, 16, 681-686. |
[28] |
Kim JH, Glick RE, Melis A (1993). Dynamics of photosystem stoichiometry adjustment by light quality in chloroplasts. Plant Physiology, 102, 181-190.
URL PMID |
[29] | Koh KJ, Bell GE, Martin DL, Walker NR (2003). Shade and airflow restriction effects on creeping bentgrass golf greens. Crop Science, 43, 2182-2188. |
[30] |
Leong TY, Goodchild DJ, Anderson JM (1985). Effect of light quality on the composition, function, and structure of photosynthetic thylakoid membranes of Asplenium australasicum (Sm.) Hook. Plant Physiology, 78, 561-567.
URL PMID |
[31] | Lin ZF (林植芳), Peng CL (彭长连), Lin GZ (林桂珠) (2006). Lutein and lutein epoxide-lutein cycle in plants. Plant Physiology Communications (植物生理学通讯), 42, 385-394. (in Chinese with English abstract) |
[32] |
Liu Z, Yan H, Wang K, Kuang T, Zhang J, Gui L, An X, Chang W (2004). Crystal structure of spinach major light-harvesting complex at 2.72Å resolution. Nature, 428, 287-292.
DOI URL PMID |
[33] |
Loll B, Kern J, Saenger W, Zouni A, Biesiadka J (2005). Towards complete cofactor arrangement in the 3.0Å resolution structure of photosystem II. Nature, 438, 1040-1044.
URL PMID |
[34] | Ma JZ (马建忠), Lou SQ (娄世庆), Kuang TY (匡廷云), Li J (黎家), Tong Z (童哲), Tang PS (汤佩松) (1997). The effects of light quality on the development of chloroplast photosystems and the transcription of psbA gene of broomcorn millet (Panicum miliaceum). Acta Genetica Sinica (遗传学报), 24, 464-470. (in Chinese with English abstract) |
[35] | Matsubara S, Gilmore AM, Osmond CB (2001). Diurnal and acclimatory responses of violaxanthin and lutein epoxide in the Australian mistletoe Amyema miquelii. Functional Plant Biology, 28, 793-800. |
[36] |
Matsubara S, Krause GH, Aranda J, Virgo A, Beisel KG, Jahns P, Winter K (2009). Sun-shade patterns of leaf carotenoid composition in 86 species of neotropical forest plants. Functional Plant Biology, 36, 20-36.
URL PMID |
[37] |
Matsubara S, Krause GH, Seltmann M, Virgo A, Kursar TA, Jahns P, Winter K (2008). Lutein epoxide cycle, light harvesting and photoprotection in species of the tropical tree genus Inga. Plant, Cell and Environment, 31, 548-561.
URL PMID |
[38] |
Matsubara S, Morosinotto T, Osmond CB, Bassi R (2007). Short- and long-term operation of the lutein-epoxide cycle in light-harvesting antenna complexes. Plant Physiology, 144, 926-941.
URL PMID |
[39] |
Maxwell K, Marrison JL, Leech RM, Griffiths H, Horton P (1999). Chloroplast acclimation in leaves of Guzmania monostachia in response to high light. Plant Physiology, 121, 89-96.
DOI URL PMID |
[40] | McElroy JS, Kopsell DA, Sorochan JC, Sams CE (2006). Response of creeping bentgrass carotenoid composition to high and low irradiance. Crop Science, 46, 2606-2612. |
[41] |
Munné-Bosch S, Peñuelas J (2003). Photo-and antioxidative protection during summer leaf senescence in Pistacia lentvscus L. grown under mediterranean field conditions. Annals of Botany, 92, 385-391.
URL PMID |
[42] | Murchie EH, Horton P (1997). Acclimation of photosynthesis to irradiance and spectral quality in British plant species: chlorophyll content, photosynthetic capacity and habitat preference. Plant, Cell & Environment, 20, 438-448. |
[43] | Murchie EH, Horton P (1998). Contrasting patterns of photosynthetic acclimation to the light environment are dependent on the differential expression of the responses to altered irradiance and spectral quality. Plant, Cell & Environment, 21, 139-148. |
[44] | Ramalho JC, Marques NC, Semedo JN, Matos MC, Quartin VL (2002). Photosynthetic performance and pigment composition of leaves from two tropical species is determined by light quality. Plant Biology, 4, 112-120. |
[45] | Rosevear MJ, Young AJ, Johnson GN (2001). Growth conditions are more important than species origin in determining leaf pigment content of British plant species. Functional Ecology, 15, 474-480. |
[46] |
Thayer SS, Björkman O (1990). Leaf xanthophyll content and composition in sun and shade determined by HPLC. Photosynthesis Research, 23, 331-343.
URL PMID |
[47] |
Thayer SS, Björkman O (1992). Carotenoid distribution and deepoxidation in thylakoid pigment-protein complexes from cotton leaves and bundle-sheath cells of maize. Photosynthesis Research, 33, 213-225.
URL PMID |
[48] | Wherley BG, Gardner DS, Metzger JD (2005). Tall fescue photomorphogenesis as influenced by changes in the spectral composition and light intensity. Crop Science, 45, 562-568. |
[49] | Xu L (许莉), Liu SQ (刘世琦), Qi LD (齐连东), Liang QL (梁庆玲), Yu WY (于文艳) (2007). Effect of light quality on leaf lettuce photosynthesis and chlorophyll fluorescence. Chinese Agricultural Science Bulletin (中国农学通报), 23, 96-100. (in Chinese with English abstract) |
[1] | LI Wei-Bin, ZHANG Hong-Xia, ZHANG Yu-Shu, CHEN Ni-Na. Influence of diurnal asymmetric warming on carbon sink capacity in a broadleaf Korean pine forest in Changbai Mountains, China [J]. Chin J Plant Ecol, 2023, 47(9): 1225-1233. |
[2] | LI An-Yan, HUANG Xian-Fei, TIAN Yuan-Bin, DONG Ji-Xing, ZHENG Fei-Fei, XIA Pin-Hua. Chlorophyll a variation and its driving factors during phase shift from macrophyte- to phytoplankton-dominated states in Caohai Lake, Guizhou, China [J]. Chin J Plant Ecol, 2023, 47(8): 1171-1181. |
[3] | JIANG Hai-Gang, ZENG Yun-Hong, TANG Hua-Xin, LIU Wei, LI Jie-Lin, HE Guo-Hua, QIN Hai-Yan, WANG Li-Chao, Victor RESCO de DIOS, YAO Yin-An. Rhythmic regulation of carbon fixation and water dissipation in three mosses [J]. Chin J Plant Ecol, 2023, 47(7): 988-997. |
[4] | ZHANG Jin-Yan, CUN Zhu, SHUANG Sheng-Pu, HONG Jie, MENG Zhen-Gui, CHEN Jun-Wen. Steady-state and dynamic photosynthetic characteristics of shade-tolerant species Panax notoginseng in response to nitrogen levels [J]. Chin J Plant Ecol, 2023, 47(3): 331-347. |
[5] | REN Pei-Xin, LI Peng, PENG Chang-Hui, ZHOU Xiao-Lu, YANG Ming-Xia. Temporal and spatial variation of vegetation photosynthetic phenology in Dongting Lake basin and its response to climate change [J]. Chin J Plant Ecol, 2023, 47(3): 319-330. |
[6] | SHI Sheng-Bo, ZHOU Dang-Wei, LI Tian-Cai, DE Ke-Jia, GAO Xiu-Zhen, MA Jia-Lin, SUN Tao, WANG Fang-Lin. Responses of photosynthetic function of Kobresia pygmaea to simulated nocturnal low temperature on the Qingzang Plateau [J]. Chin J Plant Ecol, 2023, 47(3): 361-373. |
[7] | LIU Hai-Yan, ZANG Sha-Sha, ZHANG Chun-Xia, ZUO Jin-Cheng, RUAN Zuo-Xi, WU Hong-Yan. Photochemical reaction of photosystem II in diatoms under phosphorus starvation and its response to high light intensity [J]. Chin J Plant Ecol, 2023, 47(12): 1718-1727. |
[8] | YU Yu-Rong, WU Hao, GAO Ya-Fei, ZHAO Yuan-Bo, LI Xiao-Ling, BU Gui-Jun, XUE Dan, LIU Zheng-Xiang, WU Hai-Wen, WU Lin. Effects of simulated nitrogen deposition on physiological and morphological characteristics of Sphagnum in wetland, southwestern Hubei Province, China [J]. Chin J Plant Ecol, 2023, 47(11): 1493-1506. |
[9] | SHI Sheng-Bo, SHI Rui, ZHOU Dang-Wei, ZHANG Wen. Effects of low temperature on photochemical and non-photochemical energy dissipation of Kobresia pygmaea leaves [J]. Chin J Plant Ecol, 2023, 47(10): 1441-1452. |
[10] | ZHENG Ning, LI Su-Ying, WANG Xin-Ting, LÜ Shi-Hai, ZHAO Peng-Cheng, ZANG Chen, XU Yu-Long, HE Jing, QIN Wen-Hao, GAO Heng-Rui. Dominance of different plant life forms in the typical steppe evidenced from impacts of environmental factors on chlorophyll [J]. Chin J Plant Ecol, 2022, 46(8): 951-960. |
[11] | ZHAI Jiang-Wei, LIN Xin-Hui, WU Rui-Zhe, XU Yi-Xin, JIN Hao-Hao, JIN Guang-Ze, LIU Zhi-Li. Trade-offs between petiole and lamina of different functional plants in Xiao Hinggan Mountains, China [J]. Chin J Plant Ecol, 2022, 46(6): 700-711. |
[12] | PENG Xin, JIN Guang-Ze. Effects of plant characteristics and environmental factors on the dark diversity in a broadleaved Korean pine forest [J]. Chin J Plant Ecol, 2022, 46(6): 656-666. |
[13] | YUAN Yuan, MU Yan-Mei, DENG Yu-Jie, LI Xin-Hao, JIANG Xiao-Yan, GAO Sheng-Jie, ZHA Tian- Shan, JIA Xin. Effects of land cover and phenology changes on the gross primary productivity in an Artemisia ordosica shrubland [J]. Chin J Plant Ecol, 2022, 46(2): 162-175. |
[14] | WU Lin-Sheng, ZHANG Yong-Guang, ZHANG Zhao-Ying, ZHANG Xiao-Kang, WU Yun-Fei. Remote sensing of solar-induced chlorophyll fluorescence and its applications in terrestrial ecosystem monitoring [J]. Chin J Plant Ecol, 2022, 46(10): 1167-1199. |
[15] | XUE Jin-Ru, LÜ Xiao-Liang. Assessment of vegetation productivity under the implementation of ecological programs in the Loess Plateau based on solar-induced chlorophyll fluorescence [J]. Chin J Plant Ecol, 2022, 46(10): 1289-1304. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2022 Chinese Journal of Plant Ecology
Tel: 010-62836134, 62836138, E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn