植物生态学报 ›› 2012, Vol. 36 ›› Issue (3): 243-252.DOI: 10.3724/SP.J.1258.2012.00243
毛立彦1(), 慕小倩1,**(
), 董改改1, 崔宏安1, 冉俊祥2
收稿日期:
2011-08-30
接受日期:
2011-12-07
出版日期:
2012-08-30
发布日期:
2012-02-28
通讯作者:
慕小倩
作者简介:
**E-mail: muxiaoqian@126.com* E-mail: maoliyan2006@yahoo.com.cn
MAO Li-Yan1(), MU Xiao-Qian1,**(
), DONG Gai-Gai1, CUI Hong-An1, RAN Jun-Xiang2
Received:
2011-08-30
Accepted:
2011-12-07
Online:
2012-08-30
Published:
2012-02-28
Contact:
MU Xiao-Qian
摘要:
以曼陀罗(Datura stramonium)及其变种紫花曼陀罗(Datura stramonium var. tatual)为研究材料, 采用光照培养箱对盆栽苗进行5个光照强度的处理, 研究其生长发育、叶片解剖结构、叶片及茎色素含量对不同光照强度的响应。结果表明: (1)在试验设置的光照强度范围内, 增强光照强度有利于曼陀罗和紫花曼陀罗的发育及茎、叶生物量的积累; 13 000和18 000 lx两个光照强度下两供试曼陀罗长势最好; 同等光照强度下紫花曼陀罗的株高、基茎粗、叶片数目、茎叶生物量大于曼陀罗, 但差异性不显著。(2)两供试曼陀罗叶片厚度、栅栏组织厚度、海绵组织厚度及气孔密度、气孔指数均随着试验光照强度的增强而增加; 紫花曼陀罗气孔密度及气孔指数明显高于曼陀罗。(3)两供试曼陀罗叶片中叶绿素含量均随试验设置光照强度的增强呈先升后降的趋势; 随试验设置光照强度的增强, 两供试曼陀罗茎中叶绿素a、b及类胡萝卜素含量变化趋势不一致; 茎中花色素苷、类黄酮及总酚含量的变化情况是: 两供试曼陀罗均与光照强度呈正相关, 但紫花曼陀罗比曼陀罗含量高, 这也是紫花曼陀罗花、茎等器官呈紫色的物质基础, 加上气孔密度和气孔指数较大等特性, 使紫花曼陀罗较曼陀罗适应性更强。
毛立彦, 慕小倩, 董改改, 崔宏安, 冉俊祥. 光照强度对曼陀罗和紫花曼陀罗生长发育的影响. 植物生态学报, 2012, 36(3): 243-252. DOI: 10.3724/SP.J.1258.2012.00243
MAO Li-Yan, MU Xiao-Qian, DONG Gai-Gai, CUI Hong-An, RAN Jun-Xiang. Influence of light intensity on growth of Datura stramonium and D. stramonium var. tatual. Chinese Journal of Plant Ecology, 2012, 36(3): 243-252. DOI: 10.3724/SP.J.1258.2012.00243
光照强度 Light intensity (lx) | 株高 Stem length (cm) | 基茎粗 Basal stem diameter (mm) | 叶片数目Number of blade | 花蕾长 Bud length (cm) | 茎生物量 Stem biomass (g·plant-1) | 叶生物量 Leaf biomass (g·plant-1) | 比叶面积Specific leaf area (m2·kg-1) | |
---|---|---|---|---|---|---|---|---|
曼陀罗 D. stramonium | 5 000 | 5.92 ± 0.42a | 1.49 ± 0.13a | 3.9 ± 0.6a | - | 0.002 4 ± 0.001 6a | 0.005 8 ± 0.001 0a | 88.69 ± 1.81d |
9 000 | 7.45 ± 0.89b | 2.29 ± 0.06b | 4.6 ± 0.5c | 0.50 ± 0.17a | 0.004 4 ± 0.001 3a | 0.010 6 ± 0.001 1a | 77.90 ± 1.59c | |
13 000 | 10.35 ± 0.77c | 2.47 ± 0.18c | 4.6 ± 0.5c | 2.28 ± 0.31b | 0.017 5 ± 0.004 0b | 0.022 3 ± 0.004 2b | 76.99 ± 1.94c | |
18 000 | 11.55 ± 0.97d | 2.37 ± 0.18bc | 4.4 ± 0.5bc | 2.58 ± 0.28c | 0.019 9 ± 0.054 3b | 0.023 7 ± 0.003 3b | 74.76 ± 1.87b | |
22 000 | 10.35 ± 0.32c | 2.36 ± 0.14bc | 4.1 ± 0.6ab | 3.55 ± 0.32d | 0.027 2 ± 0.002 6c | 0.032 5 ± 0.003 2c | 20.11 ± 1.74a | |
紫花曼陀罗 D. stramonium var. tatual | 5 000 | 6.77 ± 0.44a | 1.65 ± 0.11a | 4.1 ± 0.3a | - | 0.003 8 ± 0.001 8a | 0.007 6 ± 0.001 4a | 81.66 ± 1.58d |
9 000 | 6.89 ± 0.58a | 2.26 ± 0.21b | 5.4 ± 0.5c | - | 0.005 2 ± 0.001 6a | 0.013 2 ± 0.003 0b | 79.43 ± 1.79d | |
13 000 | 11.30 ± 0.43b | 2.48 ± 0.14c | 5.4 ± 0.5c | 1.88 ± 0.40a | 0.022 6 ± 0.006 0b | 0.023 7 ± 0.003 2c | 76.40 ± 1.10c | |
18 000 | 12.48 ± 0.93d | 2.38 ± 0.28bc | 5.0 ± 0.0b | 2.37 ± 0.25b | 0.023 4 ± 0.006 1b | 0.024 2 ± 0.004 4c | 72.48 ± 1.78b | |
22 000 | 12.15 ± 0.91c | 2.24 ± 0.14c | 4.0 ± 0.5a | 3.44 ± 0.54c | 0.031 9 ± 0.003 6c | 0.033 6 ± 0.003 6d | 33.12 ± 1.78a |
表1 不同光照强度条件下曼陀罗和紫花曼陀罗形态特征(平均值±标准误差)
Table 1 Morphologic characteristics of Datura stramonium and D. stramonium var. tatual under different light intensities (mean ± SE)
光照强度 Light intensity (lx) | 株高 Stem length (cm) | 基茎粗 Basal stem diameter (mm) | 叶片数目Number of blade | 花蕾长 Bud length (cm) | 茎生物量 Stem biomass (g·plant-1) | 叶生物量 Leaf biomass (g·plant-1) | 比叶面积Specific leaf area (m2·kg-1) | |
---|---|---|---|---|---|---|---|---|
曼陀罗 D. stramonium | 5 000 | 5.92 ± 0.42a | 1.49 ± 0.13a | 3.9 ± 0.6a | - | 0.002 4 ± 0.001 6a | 0.005 8 ± 0.001 0a | 88.69 ± 1.81d |
9 000 | 7.45 ± 0.89b | 2.29 ± 0.06b | 4.6 ± 0.5c | 0.50 ± 0.17a | 0.004 4 ± 0.001 3a | 0.010 6 ± 0.001 1a | 77.90 ± 1.59c | |
13 000 | 10.35 ± 0.77c | 2.47 ± 0.18c | 4.6 ± 0.5c | 2.28 ± 0.31b | 0.017 5 ± 0.004 0b | 0.022 3 ± 0.004 2b | 76.99 ± 1.94c | |
18 000 | 11.55 ± 0.97d | 2.37 ± 0.18bc | 4.4 ± 0.5bc | 2.58 ± 0.28c | 0.019 9 ± 0.054 3b | 0.023 7 ± 0.003 3b | 74.76 ± 1.87b | |
22 000 | 10.35 ± 0.32c | 2.36 ± 0.14bc | 4.1 ± 0.6ab | 3.55 ± 0.32d | 0.027 2 ± 0.002 6c | 0.032 5 ± 0.003 2c | 20.11 ± 1.74a | |
紫花曼陀罗 D. stramonium var. tatual | 5 000 | 6.77 ± 0.44a | 1.65 ± 0.11a | 4.1 ± 0.3a | - | 0.003 8 ± 0.001 8a | 0.007 6 ± 0.001 4a | 81.66 ± 1.58d |
9 000 | 6.89 ± 0.58a | 2.26 ± 0.21b | 5.4 ± 0.5c | - | 0.005 2 ± 0.001 6a | 0.013 2 ± 0.003 0b | 79.43 ± 1.79d | |
13 000 | 11.30 ± 0.43b | 2.48 ± 0.14c | 5.4 ± 0.5c | 1.88 ± 0.40a | 0.022 6 ± 0.006 0b | 0.023 7 ± 0.003 2c | 76.40 ± 1.10c | |
18 000 | 12.48 ± 0.93d | 2.38 ± 0.28bc | 5.0 ± 0.0b | 2.37 ± 0.25b | 0.023 4 ± 0.006 1b | 0.024 2 ± 0.004 4c | 72.48 ± 1.78b | |
22 000 | 12.15 ± 0.91c | 2.24 ± 0.14c | 4.0 ± 0.5a | 3.44 ± 0.54c | 0.031 9 ± 0.003 6c | 0.033 6 ± 0.003 6d | 33.12 ± 1.78a |
光照强度 Light intensity (lx) | 5 000 | 9 000 | 13 000 | 18 000 | 2 2000 | ||
---|---|---|---|---|---|---|---|
曼陀罗 D. stramonium | 叶片厚度 Thickness of leaf (μm) | 105.44 ± 2.28a | 121.94 ± 4.57b | 134.99 ± 2.54c | 147.50 ± 3.08d | 159.51 ± 4.56e | |
栅栏组织厚度 Thickness of palisade (P) (μm) | 37.28 ± 3.22a | 42.31 ± 2.77a | 46.74 ± 2.62b | 56.02 ± 4.63c | 58.39 ± 2.43c | ||
海绵组织厚度 Thickness of spongy (S) (μm) | 51.86 ± 5.57a | 53.96 ± 4.46a | 60.43 ± 3.44b | 69.660 ± 3.142c | 70.92 ± 4.58c | ||
栅栏组织厚度/海绵组织厚度 P/S | 0.719 ± 0.035a | 0.784 ± 0.023b | 0.773 ± 0.042b | 0.804 ± 0.064bc | 0.823 ± 0.027c | ||
气孔密度 Stomatic density (ind.·mm-2) | 上表皮 Upper surface | 55.91 ± 5.81a | 58.53 ± 7.50a | 100.25 ± 3.53b | 143.72 ± 10.21c | 194.32 ± 7.00d | |
下表皮 Lower surface | 102.31 ± 9.37a | 107.43 ± 6.66a | 152.12 ± 6.99b | 202.32 ± 10.37c | 285.89 ± 8.59d | ||
气孔指数 Stomatal index (%) | 上表皮 Upper surface | 19.44 ± 2.69a | 23.11 ± 3.87a | 38.32 ± 2.22b | 47.95 ± 1.64c | 56.61 ± 3.33d | |
下表皮 Lower surface | 37.90 ± 1.98a | 38.43 ± 1.39a | 49.42 ± 4.42b | 64.30 ± 2.98c | 65.51 ± 2.42c | ||
紫花曼陀罗 D. stramonium var. tatual | 叶片厚度 Thickness of leaf (μm) | 109.26 ± 2.53a | 113.34 ± 2.51a | 130.67 ± 3.94b | 150.13 ± 4.57c | 156.47 ± 3.50c | |
栅栏组织厚度 Thickness of palisade (P) (μm) | 38.69 ± 2.30a | 41.30 ± 2.46a | 47.30 ± 1.41b | 57.40 ± 2.76c | 64.65 ± 3.31d | ||
海绵组织厚度 Thickness of spongy (S) (μm) | 51.88 ± 2.87a | 52.87 ± 2.97a | 60.75 ± 3.93b | 68.47 ± 3.37c | 70.80 ± 4.81c | ||
栅栏组织厚度/海绵组织厚度 P/S | 0.746 ± 0.027a | 0.781 ± 0.012ab | 0.779 ± 0.021ab | 0.840 ± 0.084bc | 0.918 ± 0.029c | ||
气孔密度 Stomatic density (ind.·mm-2) | 上表皮 Upper surface | 52.83 ± 7.54a | 69.02 ± 7.19b | 112.314 ± 13.910c | 121.01 ± 7.63c | 191.83 ± 16.02d | |
下表皮 Lower surface | 104.68 ± 10.92a | 126.51 ± 8.23b | 175.33 ± 10.21c | 197.76 ± 15.25d | 314.56 ± 14.07e | ||
气孔指数 Stomatal index (%) | 上表皮 Upper surface | 18.33 ± 1.34a | 21.57 ± 2.23b | 29.33 ± 1.47c | 30.63 ± 0.84c | 33.72 ± 1.27d | |
下表皮 Lower surface | 28.85 ± 0.78a | 33.26 ± 1.50b | 40.34 ± 1.94c | 41.12 ± 0.76c | 43.41 ± 0.75d |
表2 不同光照强度条件下曼陀罗和紫花曼陀罗叶片形态解剖特征(平均值±标准误差)
Table 2 Anatomical structure of Datura stramonium and D. stramonium var. tatual leaves under different light intensities (mean ± SE)
光照强度 Light intensity (lx) | 5 000 | 9 000 | 13 000 | 18 000 | 2 2000 | ||
---|---|---|---|---|---|---|---|
曼陀罗 D. stramonium | 叶片厚度 Thickness of leaf (μm) | 105.44 ± 2.28a | 121.94 ± 4.57b | 134.99 ± 2.54c | 147.50 ± 3.08d | 159.51 ± 4.56e | |
栅栏组织厚度 Thickness of palisade (P) (μm) | 37.28 ± 3.22a | 42.31 ± 2.77a | 46.74 ± 2.62b | 56.02 ± 4.63c | 58.39 ± 2.43c | ||
海绵组织厚度 Thickness of spongy (S) (μm) | 51.86 ± 5.57a | 53.96 ± 4.46a | 60.43 ± 3.44b | 69.660 ± 3.142c | 70.92 ± 4.58c | ||
栅栏组织厚度/海绵组织厚度 P/S | 0.719 ± 0.035a | 0.784 ± 0.023b | 0.773 ± 0.042b | 0.804 ± 0.064bc | 0.823 ± 0.027c | ||
气孔密度 Stomatic density (ind.·mm-2) | 上表皮 Upper surface | 55.91 ± 5.81a | 58.53 ± 7.50a | 100.25 ± 3.53b | 143.72 ± 10.21c | 194.32 ± 7.00d | |
下表皮 Lower surface | 102.31 ± 9.37a | 107.43 ± 6.66a | 152.12 ± 6.99b | 202.32 ± 10.37c | 285.89 ± 8.59d | ||
气孔指数 Stomatal index (%) | 上表皮 Upper surface | 19.44 ± 2.69a | 23.11 ± 3.87a | 38.32 ± 2.22b | 47.95 ± 1.64c | 56.61 ± 3.33d | |
下表皮 Lower surface | 37.90 ± 1.98a | 38.43 ± 1.39a | 49.42 ± 4.42b | 64.30 ± 2.98c | 65.51 ± 2.42c | ||
紫花曼陀罗 D. stramonium var. tatual | 叶片厚度 Thickness of leaf (μm) | 109.26 ± 2.53a | 113.34 ± 2.51a | 130.67 ± 3.94b | 150.13 ± 4.57c | 156.47 ± 3.50c | |
栅栏组织厚度 Thickness of palisade (P) (μm) | 38.69 ± 2.30a | 41.30 ± 2.46a | 47.30 ± 1.41b | 57.40 ± 2.76c | 64.65 ± 3.31d | ||
海绵组织厚度 Thickness of spongy (S) (μm) | 51.88 ± 2.87a | 52.87 ± 2.97a | 60.75 ± 3.93b | 68.47 ± 3.37c | 70.80 ± 4.81c | ||
栅栏组织厚度/海绵组织厚度 P/S | 0.746 ± 0.027a | 0.781 ± 0.012ab | 0.779 ± 0.021ab | 0.840 ± 0.084bc | 0.918 ± 0.029c | ||
气孔密度 Stomatic density (ind.·mm-2) | 上表皮 Upper surface | 52.83 ± 7.54a | 69.02 ± 7.19b | 112.314 ± 13.910c | 121.01 ± 7.63c | 191.83 ± 16.02d | |
下表皮 Lower surface | 104.68 ± 10.92a | 126.51 ± 8.23b | 175.33 ± 10.21c | 197.76 ± 15.25d | 314.56 ± 14.07e | ||
气孔指数 Stomatal index (%) | 上表皮 Upper surface | 18.33 ± 1.34a | 21.57 ± 2.23b | 29.33 ± 1.47c | 30.63 ± 0.84c | 33.72 ± 1.27d | |
下表皮 Lower surface | 28.85 ± 0.78a | 33.26 ± 1.50b | 40.34 ± 1.94c | 41.12 ± 0.76c | 43.41 ± 0.75d |
图1 不同光照强度下曼陀罗(A)和紫花曼陀罗(B)叶片的叶绿素a、b及类胡萝卜素含量(平均值±标准误差)。图中不同小写字母表示处理间差异显著(p < 0.05)。
Fig. 1 The chlorophyll a, b, carotenoid content of Datura stramonium (A), D. stramonium var. tatual (B) leaves under different light intensities (mean ± SE). Different small letters in the same graph indicate significant difference among treatments at p < 0.05 level.
图2 不同光照强度下曼陀罗(A、B)和紫花曼陀罗(C、D)茎中的花色素苷、类黄酮、总酚, 及叶绿素a、b及类胡萝卜素含量(平均值±标准误差)。图中不同小写字母表示处理间差异显著(p < 0.05)。
Fig. 2 The anthocyanin, flavonoids, total phenols and chlorophyll a, b, carotenoid content of Datura (A, B) and D. stramonium var. tatual (C, D) stems under different light intensities (mean ± SE). Different small letters in the same graph indicate significant difference among treatments at p < 0.05 level.
[1] | Aliasgharpour M, Shoar HH, Hosseyni MS (2000). Stigma of Datura stramonium L. (Solanaceae): histogenesis, morphology and developmental anatomy. Journal of Sciences, Islamic Republic of Iran, 11, 267-276. |
[2] | An H (安慧), Shangguan ZP (上官周平) (2009). Effects of light intensity and nitrogen application on the growth and photosynthetic characteristics of Trifolium repens L. Acta Ecologica Sinica (生态学报), 29, 6017-6024. (in Chinese with English abstract) |
[3] |
Berkov S, Zayed R, Doncheva T (2006). Alkaloid patterns in some varieties of Datura stramonium. Fitoterapia, 77, 179-182.
DOI URL PMID |
[4] | Boardman NK (1977). Comparative photosynthesis of sun and shade plants. Annual Review of Plant Physiology, 28, 355-377. |
[5] | Cavazos ML, Bye R, Jiao MJ (2009). The origin of Datura metel (Solanaceae): genetic and phylogenetic evidence. Genetic Resources and Crop Evolution, 56, 263-275. |
[6] | Cavazos ML, Jiao MJ, Bye R (2000). Phenetic analysis of Datura section Dutra (Solanaceae) in Mexico. Botanical Journal of the Linnean Society, 133, 493-507. |
[7] | Chalker-Scott L (1999). Environmental significance of anthocyanins in plant stress responses. Photochemistry and Photobiology, 70, 1-9. |
[8] | Fang JY (方精云), Fei SL (费松林), Fan YJ (樊拥军), Cui KM (崔克明) (1999). Ecological patterns in anatomic characters of leaves and woods of Fagus lucida and their climatic control in Mountain Fanjingshan, Guizhou, China. Acta Botanica Sinica (植物学报), 42, 636-642. (in Chinese with English abstract) |
[9] | Flora of China Editorial Committee of Chinese Academy of Sciences (中国科学院中国植物志编委会) (2004). Flora of China (中国植物志). Science Press, Beijing, 67. 143-146. (in Chinese) |
[10] | He XL (贺学礼) (2005). Botany (植物学). Higher Education Press, 156. (in Chinese) |
[11] | Jiang HB (姜宏波), Tian XL (田相利), Dong SL (董双林), Bao J (包杰) (2009). Effects of temperature and light intensity on the growth and biochemical composition of Sargassum thunbergii Chinese Journal of Applied Ecology (应用生态学报), 20, 185-189. (in Chinese with English abstract) |
[12] | Jiang WB (姜卫兵), Xu LL (徐莉莉), Weng ML (翁忙玲), Han J (韩健) (2009). Effects of environmental factors and exogenous chemicals on anthocyanins in plants: a review. Ecology and Environment (生态环境学报), 18, 1546-1552. (in Chinese with English abstract) |
[13] | Jiang WB (姜卫兵), Zhuang M (庄猛), Han HZ (韩浩章), Dai MS (戴美松), Hua GP (花国平) (2005). Progress on color emerging mechanism and photosynthetic characteristics of colored-leaf plants. Acta Horticulturae Sinica (园艺学报), 32, 352-358. (in Chinese with English abstract) |
[14] | Li HP (李和平) (2009). Microscopy of Plant (植物显微技术) 2nd edn. Science Press, Beijing. 420-426. (in Chinese) |
[15] | Li HS (李合生) (2000). Plant Physiological and Biochemical Testing Principles and Techniques (植物生理生化试验原理和技术). Higher Education Press, Beijing. 134. (in Chinese) |
[16] | Liao FY, Li HM, He P (2004). Effect of high irradiance and high temperature on chloroplast composition and structure of Dioscorea zingiberensis. Photosynthetica, 42, 487-492. |
[17] | Liu GS (刘国顺), Qiao XR (乔新荣), Wang F (王芳), Yang C (杨超), Guo QY (郭桥燕), Yun F (云菲) (2007). Effects of light intensity on photosynthetic capabilities, growth and quality of flue-cured tobacco. Acta Botanica Boreali-Occidentalia Sinica (西北植物学报), 27, 1833-1837. (in Chinese with English abstract) |
[18] |
Nguyen P, Cin VD (2009). The role of light on foliage colour development in coleus ( Solenostemon scutellarioides (L.) Codd). Plant Physiology and Biochemistry, 47, 934-945.
URL PMID |
[19] | Paiva ÉAS, dos Santos Isaias RM, Vale FHA, de Senna Queiroz CG (2003). The influence of light intensity on anatomical structure and pigment contents of Tradescantia pallida (Rose) Hunt. cv. purpurea Boom (Commelinaceae) leaves. Brazilian Archives of Biology and Technology, 46, 617-624. |
[20] |
Pire A, Micael GM (1976). Changes in anthocyanin and phenolics content of grapevine leaf and fruit tissues treated with sucrose, nitrate, and abscisic acid. Plant Physiology, 58, 468-472.
DOI URL PMID |
[21] | Shi BS (史宝胜), Zhuo LH (卓丽环), Yang JM (杨建明) (2007). Effects of light on leaf color of redleaf cherry plum. Journal of Northeast Forestry University (东北林业大学学报), 35(4), 16-18. (in Chinese with English abstract) |
[22] | Srithongkul J, Kanlayanarat S, Srilaong V, Uthairatanakij A, Chalermglin P (2011). Effects of light intensity on growth and accumulation of triterpenoids in three accessions of Asiatic pennywort ( Centella asiatica (L.) Urb.). Food, Agriculture and Environment, 9, 360-363. |
[23] | Sun J (孙晶), Liu XY (刘向云), Zhang J (张晶) (2011). Preliminary studies on the influence of light intensity on growth and saponin contents of Dioscorea zingiberensis. Acta Botanica Boreali-Occidentalia Sinica (西北植物学报), 31, 536-542. (in Chinese with English abstract) |
[24] | Sun MX (孙明霞), Wang BZ (王宝增), Fan H (范海), Zhao KF (赵可夫) (2003). Anthocyanins of leaves and their environmental significance in plant stress responses. Plant Physiology Communications (植物生理学通讯), 39, 688-694. (in Chinese with English abstract) |
[25] | Ticha I (1982). Photosynthetic characteristics during ontogenesis of leaves VII. Stomata density and sizes. Photosynthetica, 16, 375-381. |
[26] | Wang JF (王俊峰), Feng YL (冯玉龙) (2004). The effect of light intensity on biomass allocation, leaf morphology and relative growth rate of two invasive plants. Acta Phytoecologica Sinica (植物生态学报), 28, 781-786. (in Chinese with English abstract) |
[27] | Wang Y (王艺), Wei XL (韦小丽) (2010). Advance on the effects of different light environments on growth, physiological biochemistry and morphostructure of plant. Journal of Mountain Agriculture and Biology (山地农业生物学报), 29, 353-359. (in Chinese with English abstract) |
[28] | Wu GL (武高林), Chen M (陈敏), Du GZ (杜国祯) (2010). Response of biomass allocation and morphological characteristics to light and nutrient resources for seedlings of three alpine species. Acta Ecologica Sinica (生态学报), 30, 60-66. (in Chinese with English abstract) |
[29] | Wu NB (吴能表), Tan F (谈峰), Xiao WJ (肖文娟), Wang XJ (王小佳) (2005). Effects of light intensity on morphologic and physiological indexes and safrol content of Cinnamomum pauciflorum seedlings. Acta Ecologica Sinica (生态学报), 25, 1159-1164. (in Chinese with English abstract) |
[30] | Zhang HL (张宏利), Han CX (韩崇选), Wang MC (王明春), Yang QE (杨清娥) (2008). Fatty acid components in the oil from seeds of Datura stramonium L. Acta Botanica Boreali-Occidentalia Sinica (西北植物学报), 28, 2538-2542. (in Chinese with English abstract) |
[31] | Zhang MS (张美淑), Jin DY (金大勇) (2005). Status and perspectives in the field of plant protection of Datura stramonium L. Forest By-Product and Speciality in China (中国林副特产), ( 3), 80. (in Chinese with English abstract) |
[32] | Zhou JY (周俊英) (2003). Studies on the pollen submicroscopic morphology structure of Datura of traditional Chinese medicine. Shandong Science (山东科学), 16(2), 26-29, 70. (in Chinese with English abstract) |
[33] | Zhou L (周琳), Sun SJ (孙淑君), Wu ZL (吴中良) (2009). Study on the herbicidal activity of Datura stramonium L. Journal of Henan Agricultural Sciences (河南农业科学), ( 10), 91-93. (in Chinese with English abstract) |
[34] | Zhu DT (朱丹婷), Li MH (李铭红), Qiao NN (乔宁宁) (2010). Effects of environmental factors and their interaction on Vallisneria natans by orthogonal test. Acta Ecologica Sinica (生态学报), 30, 6451-6459. (in Chinese with English abstract) |
[1] | 萨其拉, 张霞, 朱琳, 康萨如拉. 长期不同放牧强度下荒漠草原优势种无芒隐子草叶片解剖结构变化[J]. 植物生态学报, 2024, 48(3): 331-340. |
[2] | 吴建波, 王小丹. 高寒草原优势种紫花针茅叶片解剖结构对青藏高原高寒干旱环境适应性分析[J]. 植物生态学报, 2021, 45(3): 265-273. |
[3] | 熊慧, 马承恩, 李乐, 曾辉, 郭大立. 不同生境条件下蕨类和被子植物的气孔形态特征及其对光强变化的响应[J]. 植物生态学报, 2014, 38(8): 868-877. |
[4] | 邱权,潘昕,李吉跃,王军辉,马建伟,杜坤. 青藏高原20种灌木抗旱形态和生理特征[J]. 植物生态学报, 2014, 38(6): 562-575. |
[5] | 孙善文, 章永江, 曹坤芳. 热带季雨林不同小生境大戟科植物幼树的叶片结构、耐旱性和光合能力之间的相关性[J]. 植物生态学报, 2014, 38(4): 311-324. |
[6] | 覃凤飞,李强,崔棹茗,李洪萍,杨智然. 越冬期遮阴条件下3个不同秋眠型紫花苜蓿品种叶片解剖结构与其光生态适应性[J]. 植物生态学报, 2012, 36(4): 333-345. |
[7] | 罗学刚, 董鸣. 蛇莓克隆构型对光照强度的可塑反应[J]. 植物生态学报, 2001, 25(4): 494-497. |
[8] | 李美茹, 王以柔, 刘鸿先, 林植芳. 光照强度调控4种亚热带森林植物叶片的抗氧化能力[J]. 植物生态学报, 2001, 25(4): 460-464. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||
Copyright © 2022 版权所有 《植物生态学报》编辑部
地址: 北京香山南辛村20号, 邮编: 100093
Tel.: 010-62836134, 62836138; Fax: 010-82599431; E-mail: apes@ibcas.ac.cn, cjpe@ibcas.ac.cn
备案号: 京ICP备16067583号-19