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1. Differences in the responses of photosystem I and photosystem II o.. [1027]
2. Photosynthesis in relation to reproductive success of Cyptipedium .. [600]
3. Ex Situ Conservation of Orchids in a Warming World [460]
4. Flexible and reversible responses to different irradiance levels d.. [452]
5. 一种调节杏黄兜兰有性繁殖和无性繁殖效率的方法 [443]
6. 温度对铁皮石斛生长及生理特性的影响 [374]
7. Photosynthetic characteristics of two alpine flowers, Meconopsis i.. [339]
8. Photosynthetic performances of Quercus pannosa vary with altitude .. [315]
9. Leaf anatomical structures of Paphiopedilum and Cypripedium and th.. [306]
10. 中甸角蒿光合作用对生长光强的响应 [301]
11. Evolutionary Association of Stomatal Traits with Leaf Vein Density.. [296]
12. Slow photosynthetic induction and low photosynthesis in Paphiopedi.. [279]
13. Photosynthetic performance and acclimation of Incarvillea delavayi.. [266]
14. Micropropagation of Cypripedium flavum through multiple shoots of .. [263]
15. Photosynthetic performance along a light gradient as related to le.. [254]
16. In vitro growth and carbon utilization of the green-leaved orchid .. [232]
17. Variation of photosynthetic capacity with leaf age in an alpine or.. [225]
18. Hybridization and asymmetric introgression between Cypripedium tib.. [223]
19. Gas exchange and resource utilization in two alpine oaks at differ.. [221]
20. Mycorrhizal specificity, preference, and plasticity of six slipper.. [220]
21. 资源植物与生物技术所级重点实验室简介 [219]
22. Photosynthetic adaptation of Meconopsis integrifolia Franch. and M.. [218]
23. Effect of growth temperature on the electron flow for photorespira.. [204]
24. Photosynthetic performances of five Cypridedium species after tran.. [201]
25. 杏黄兜兰的花发育过程及引种栽培 [200]
26. Photosynthetic performances of transplanted Cypripedium flavum pla.. [191]
27. Gas exchanges of three co-occurring species of Cypripedium in a sc.. [188]
28. 菌根真菌促进金钗石斛的生长及氮利用 [180]
29. Ecophysiological significance of leaf traits in Cypripedium and Pa.. [173]
30. Leaf Photosynthetic Rate of Tropical Ferns Is Evolutionarily Linke.. [171]
31. Sustained Diurnal Stimulation of Cyclic Electron Flow in Two Tropi.. [170]
32. 黄花杓兰云南中甸居群遗传结构及克隆多样性的分析 [161]
33. 一种提高含虾青素转基因番茄产量和转基因番茄中虾青素含量的方法 [156]
34. Effects of temperature on leaf hydraulic architecture of tobacco p.. [151]
35. 珍稀濒危植物硬叶兜兰的遗传多样性及遗传结构研究 [136]
36. 一种兜兰瓶苗整体移栽方法 [132]
37. Nitrogen Requirements for Vegetative Growth, Flowering, Seed Produ.. [127]
38. Insusceptibility of oxygen-evolving complex to high light in Betul.. [127]
39. Seasonal variations in photosystem I compared with photosystem II .. [124]
40. Variations in seed micromorphology of Paphiopedilum and Cypripediu.. [112]
41. 一种瘤菌根菌菌株及其应用和菌根真菌接种法 [112]
42. Evidence for the regulation of leaf movement by photosystem II act.. [104]
43. Response of the water-water cycle to the change in photorespiratio.. [99]
44. Evidence for the role of cyclic electron flow in photoprotection f.. [98]
45. Floral Mass per Area and Water Maintenance Traits Are Correlated w.. [97]
46. Different roles of cyclic electron flow around photosystem I under.. [95]
47. Moderate Photoinhibition of Photosystem II Protects Photosystem I .. [95]
48. 生长温度对烟草叶片环式电子传递活性的影响(英文) [90]
49. 环境和遗传对烟草叶片结构的影响 [88]
50. Sun leaves up-regulate the photorespiratory pathway to maintain a .. [88]
51. 黄花杓兰种子无菌繁殖方法 [85]
52. PSI photoinhibition is more related to electron transfer from PSII.. [84]
53. Divergent Adaptive Strategies by Two Co-occurring Epiphytic Orchid.. [82]
54. Superoxide generated in the chloroplast stroma causes photoinhibit.. [81]
55. Photoinhibition of photosystem I under high light in the shade-est.. [80]
56. 紫点杓兰种子无菌繁殖方法 [79]
57. Photosynthesis and Photosynthetic Electron Flow in the Alpine Ever.. [75]
58. 从水力结构的角度解释生长温度对烟草叶片形状和大小的影响(英文) [74]
59. The effects of chilling-light stress on photosystems I and II in t.. [66]
60. Photorespiration plays an important role in the regulation of phot.. [64]
61. 一种商品化生产盆栽茶花的花期调控方法 [59]
62. Responses of Photosystem I Compared with Photosystem II to Fluctua.. [57]
63. Physiological diversity of orchids [39]
64. Physiological diversity of orchids. [37]
65. 盾叶薯蓣无菌克隆系工厂化生产方法 [35]
66. 喀斯特地区不同类型兰科植物的叶片性状 [19]
67. 热胁迫下中甸角蒿叶片SSH文库的构建及初步分析 [19]
68. 内生真菌与两种兜兰共培养过程中的相互作用 [13]
69. Gamma-aminobutyric acid mediates nicotine biosynthesis in tobacco .. [10]
70. physiologicaldiversityoforchids [10]
71. Jasmonate mediates salt-induced nicotine biosynthesis in tobacco (.. [8]
72. 从水力结构的角度解释生长温度对烟草叶片形状和大小的影响 [7]
73. Gamma-aminobutyric acid mediates the nicotine biosynthesis in toba.. [3]

Downloads

1. Differences in the responses of photosystem I and photosystem II o.. [206]
2. Ex Situ Conservation of Orchids in a Warming World [192]
3. Flexible and reversible responses to different irradiance levels d.. [190]
4. 温度对铁皮石斛生长及生理特性的影响 [147]
5. Photosynthetic performances of Quercus pannosa vary with altitude .. [98]
6. Photosynthetic performance and acclimation of Incarvillea delavayi.. [95]
7. Photosynthetic performances of five Cypridedium species after tran.. [89]
8. Photosynthetic performance along a light gradient as related to le.. [77]
9. 杏黄兜兰的花发育过程及引种栽培 [77]
10. 中甸角蒿光合作用对生长光强的响应 [74]
11. Photosynthetic characteristics of two alpine flowers, Meconopsis i.. [67]
12. Leaf anatomical structures of Paphiopedilum and Cypripedium and th.. [62]
13. Photosynthesis in relation to reproductive success of Cyptipedium .. [60]
14. 黄花杓兰云南中甸居群遗传结构及克隆多样性的分析 [60]
15. Variation of photosynthetic capacity with leaf age in an alpine or.. [59]
16. Slow photosynthetic induction and low photosynthesis in Paphiopedi.. [56]
17. Mycorrhizal specificity, preference, and plasticity of six slipper.. [52]
18. Hybridization and asymmetric introgression between Cypripedium tib.. [51]
19. Photosynthetic adaptation of Meconopsis integrifolia Franch. and M.. [50]
20. Gas exchange and resource utilization in two alpine oaks at differ.. [48]
21. Gas exchanges of three co-occurring species of Cypripedium in a sc.. [47]
22. In vitro growth and carbon utilization of the green-leaved orchid .. [44]
23. 菌根真菌促进金钗石斛的生长及氮利用 [41]
24. Ecophysiological significance of leaf traits in Cypripedium and Pa.. [39]
25. Evolutionary Association of Stomatal Traits with Leaf Vein Density.. [39]
26. Photosynthetic performances of transplanted Cypripedium flavum pla.. [38]
27. Micropropagation of Cypripedium flavum through multiple shoots of .. [36]
28. Effects of temperature on leaf hydraulic architecture of tobacco p.. [36]
29. Effect of growth temperature on the electron flow for photorespira.. [32]
30. Variations in seed micromorphology of Paphiopedilum and Cypripediu.. [30]
31. Response of the water-water cycle to the change in photorespiratio.. [28]
32. Different roles of cyclic electron flow around photosystem I under.. [27]
33. Leaf Photosynthetic Rate of Tropical Ferns Is Evolutionarily Linke.. [26]
34. Evidence for the regulation of leaf movement by photosystem II act.. [26]
35. Moderate Photoinhibition of Photosystem II Protects Photosystem I .. [25]
36. Evidence for the role of cyclic electron flow in photoprotection f.. [25]
37. Seasonal variations in photosystem I compared with photosystem II .. [23]
38. Insusceptibility of oxygen-evolving complex to high light in Betul.. [22]
39. Photoinhibition of photosystem I under high light in the shade-est.. [21]
40. Floral Mass per Area and Water Maintenance Traits Are Correlated w.. [21]
41. 资源植物与生物技术所级重点实验室简介 [20]
42. 珍稀濒危植物硬叶兜兰的遗传多样性及遗传结构研究 [20]
43. Photorespiration plays an important role in the regulation of phot.. [20]
44. 从水力结构的角度解释生长温度对烟草叶片形状和大小的影响(英文) [20]
45. PSI photoinhibition is more related to electron transfer from PSII.. [19]
46. Sun leaves up-regulate the photorespiratory pathway to maintain a .. [18]
47. Sustained Diurnal Stimulation of Cyclic Electron Flow in Two Tropi.. [18]
48. 一种提高含虾青素转基因番茄产量和转基因番茄中虾青素含量的方法 [16]
49. 生长温度对烟草叶片环式电子传递活性的影响(英文) [16]
50. 环境和遗传对烟草叶片结构的影响 [15]
51. Divergent Adaptive Strategies by Two Co-occurring Epiphytic Orchid.. [13]
52. 一种瘤菌根菌菌株及其应用和菌根真菌接种法 [12]
53. Photosynthesis and Photosynthetic Electron Flow in the Alpine Ever.. [12]
54. The effects of chilling-light stress on photosystems I and II in t.. [11]
55. Superoxide generated in the chloroplast stroma causes photoinhibit.. [10]
56. 一种兜兰瓶苗整体移栽方法 [9]
57. Responses of Photosystem I Compared with Photosystem II to Fluctua.. [6]
58. 喀斯特地区不同类型兰科植物的叶片性状 [5]
59. 内生真菌与两种兜兰共培养过程中的相互作用 [5]
60. 热胁迫下中甸角蒿叶片SSH文库的构建及初步分析 [4]
61. 一种调节杏黄兜兰有性繁殖和无性繁殖效率的方法 [3]
62. Nitrogen Requirements for Vegetative Growth, Flowering, Seed Produ.. [2]