Acta Agron Sin ›› 2011, Vol. 37 ›› Issue (05): 868-875.doi: 10.3724/SP.J.1006.2011.00868
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
LI Yan-Da1,2, ZHU Xiang-Cheng1,TANG Liang1,CAO Wei-Xing1,ZHU Yan1,*
[1]Maddonni G A, Otegui M E, Cirilo A G. Plant population density, row spacing and hybrid effects on maize canopy architecture and light attenuation. Field Crops Res, 2001, 71: 183–193 [2]Hirose T. Development of the Monsi–Saeki theory on canopy structure and function. Ann Bot, 2005, 95: 483–494 [3]Zheng B Y, Shi L J, Ma Y T, Deng Q Y, Li B G, Guo Y. Comparison of architecture among different cultivars of hybrid rice using a spatial light model based on 3-D digitizing. Funct Plant Biol, 2008, 35: 900–910 [4]Liu J-F(刘建丰), Yuan L-P(袁隆平), Deng Q-Y(邓启云), Chen L-Y(陈立云), Cai Y-D(蔡义东). A study on characteristics of photosynthesis in super high-yield hybrid rice. Sci Agric Sin (中国农业科学), 2005, 38(2): 258–264 (in Chinese with English abstract) [5]Xu Z-J(徐正进), Chen W-F(陈温福), Zhang W-Z(张文忠), Ma D-R(马殿荣), Xu H(徐海). A preliminary analysis on difference of nadir reflectance of canopy and its affecting factors in different rice varieties. Sci Agric Sin (中国农业科学), 2008, 41(9): 2868–2872 (in Chinese with English abstract) [6]Chen S G, Shao B Y, Impens I, Ceulemans R. Effects of plant canopy structure on light interception and photosynthesis. J Quant Spectrosc Radiat Transfer, 1994, 52: 115–123 [7]Reta-Sanchez D G, Fowler J L. Canopy light environment and yield of narrow-row cotton as affected by canopy architecture. Agron J, 2002, 94: 1317–1323 [8]Peng S B, Khush G S, Virk P, Tang Q Y, Zou Y B. Progress in ideotype breeding to increase rice yield potential. Field Crops Res, 2008, 108: 32–38 [9]Lü L-H(吕丽华), Zhao M(赵明), Zhao J-R(赵久然), Tao H-B(陶洪斌), Wang P(王璞). Canopy structure and photosynthesis of summer maize under different nitrogen fertilizer application rates. Sci Agric Sin (中国农业科学), 2008, 41(9): 2624–2632 (in Chinese with English abstract) [10]Yu Q(于强), Wang T-D(王天铎), Sun S-F(孙菽芬), Ren B-H(任保华). A mathematical study on crop architecture and canopy photosynthesis. II. Numerical study. Acta Agron Sin (作物学报), 1998, 24(3): 272–279 (in Chinese with English abstract) [11]Stewart D W, Costa C, Dwyer L M, Smith D L, Hamilton R L, Ma B L. Canopy structure, light interception, and photosynthesis in maize. Agron J, 2003, 95: 1465–1474 [12]Gao L-Z(高亮之), Jin Z-Q(金之庆), Zhang G-S(张更生), Shi C-L(石春林), Ge D-K(葛道阔). A numerical model to simulate the incident radiation and photosynthate for rice canopies with optimum plant type. Jiangsu J Agric Sci (江苏农业学报), 2000, 16(1): 1–9 (in Chinese with English abstract) [13]Hu N(胡凝), L? C-G(吕川根), Yao K-M(姚克敏), Zou J-S(邹江石). Simulation on photosynthetically active radiation distributing in rice canopy with rolled leaves and its optimum leaf rolling index. Chinese J Rice Sci (中国水稻科学), 2008, 22(6): 617–624 (in Chinese with English abstract) [14]Li Y-D(李艳大). Simulation Study on Plant Type and Light Utilization in Rice. PhD Dissertation of Nanjing Agricultural University, 2010 (in Chinese with English abstract) [15]Meng Y-L(孟亚利), Cao W-X(曹卫星), Liu X-W(柳新伟), Zhou Z-G(周治国), Pan J(潘洁). Dynamic simulation on photosynthetic production and dry matter accumulation in rice. J Biomath (生物数学学报), 2004, 19(2): 205–212 (in Chinese with English abstract) [16]Zuo D-K(左大康), Zhou Y-H(周允华), Xiang Y-Q(项月琴). Studies on Radiation in the Epigeosphere (地球表层辐射研究). Beijing: Science Press, 1991. pp 202–208 (in Chinese) [17]Zhang H-X(张厚瑄). Conception and measure method of crop population structure. Chin J Agrometeorol (中国农业气象), 1984, 3: 51–55 (in Chinese) [18]Cao W-X(曹卫星). Digital Farming Technology (数字农作技术). Beijing: Science Press, 2008. pp 185–191 (in Chinese) [19]Goudriaan J. A simple and fast numerical method for the computation of daily totals of crop photosynthesis. Agric For Meteor, 1986, 38: 249–254 [20]Meng Y-L(孟亚利). A Process-Based Simulation Model for Rice Growth. PhD Dissertation of Nanjing Agricultural University, 2002 (in Chinese with English abstract) [21]Zhou Y-H(周允华), Xiang Y-Q(项月琴), Shan F-Z(单福芝). A climatological study on the photosynthetically active radiation. Acta Meteorol Sin (气象学报), 1984, 42(4): 387–397 (in Chinese with English abstract) [22]Yu Q(于强), Wang T-D(王天铎), Liu J-D(刘建栋), Sun S-F(孙菽芬). A mathematical study on crop architecture and canopy photosynthesis. I. Model. Acta Agron Sin (作物学报), 1998, 24(1): 7–15 (in Chinese with English abstract) [23]Zuo D-K(左大康), Zhou Y-H(周允华), Xiang Y-Q(项月琴). Studies on Radiation in the Epigeosphere (地球表层辐射研究). Beijing: Science Press, 1991. pp 350–358 (in Chinese) [24]Yu Q(于强). Simulation Model of Crop Growth and the Numerical Study of Climatic Productivity. Ph.D. Dissertation of Nanjing University, 1994 (in Chinese with English abstract) [25]de Wit C T, Goudriaan J. Simulation of Ecological Processes. Wageningen: Centre for Agricultural Publishing and Documentation, 1978. pp 168–175 [26]Cao W-X(曹卫星). Digital Farming Technology (数字农作技术). Beijing: Science Press, 2008. pp 99-101 (in Chinese) [27]Wang W M, Li Z L, Su H B. Comparison of leaf angle distribution functions: effects on extinction coefficient and fraction of sunlit foliage. Agric For Meteor, 2007, 143: 106–122 [28]Wang X-P(王锡平), Li B-G(李保国), Guo Y(郭炎), Zhai Z-X(翟志席). Measurement and analysis of the 3D spatial distribution of photosynthetically active radiation in maize canopy. Acta Agron Sin (作物学报), 2004, 30(6): 568–576 (in Chinese with English abstract) [29]Zhang Y-M(张艳敏), Li J-S(李晋生), Qian W-P(钱维朴), Huang D-M(黄德明). Canopy structure and light distribution in winter wheat. Acta Agric Boreali-Sin (华北农学报), 1996, 11(1): 54–58 (in Chinese with English abstract) [30]Ruiz R A, Bertero H D. Light interception and radiation use efficiency in temperate quinoa (Chenopodium quinoa Willd.) cultivars. Eur J Agron, 2008, 29: 144–152 [31]Yan J-Y(颜景义) , Zheng Y-F(郑有飞), Zhang H-Z(张海珍), Wan C-J(万长建). Population structure and light utilization analysis in wheat. Chin J Agrometeorol (中国农业气象), 1995, 16(6): 5–9 (in Chinese) |
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