花改場--不同光譜補光處理對紅葉萵苣育苗品質之影響--09
參考文獻
1. 王芳、高芳雲、呂順、夏玲、劉建平、鄭漢文、莊華才、李洪波、陳麗娜2015不同比例紅藍LED燈對蔬菜育苗的補光效應熱帶作物學報36(8):1,398-1,402。
2. 方怡丹、張武男2007‘銘星’甜椒壯苗指數與苗株性狀之相關性分析植物種苗9:29-46。
3. 洪明谷、宋妤2013光強度對‘瑞喜’結球白菜種苗生長之影響興大園藝38:27-38。
4. 徐天佑、曾鴻陽2007臺灣地區有關太陽能日照量之環境時空因素研究探討環境教育學刊6:21-32。
5. 張歡、徐志剛、崔瑾、郭銀生、谷艾素2009不同光質對蘿蔔芽菜生長和營養品質的影響中國蔬菜10:28-32。
6. 許謙信2013LED照明對植物生長及發育之影響臺中區農業改良場特刊116:243-246。
7. 童輝、彭瑩、殷武平、袁祖華2018LED燈補光對早春苦瓜幼苗生長的影響上海蔬菜4:4,142。
8. 戴振洋、蔡宜峰、張隆仁、邱建中2002不同介質與育苗盤對紫錐花幼苗品質之影響臺中區農業改良場研究彙報77:1-9。
9. Azad, M.O.K., I.J. Chun, J.H. Jeong, S.T. Kwon and J.M. Hwang. 2011. Response of the growth characteristics and phytochemical contents of pepper (Capsicum annuum L.) seedling with supplemental LED light in glass house. J. Bio-Environ. Con. 23:182-188.
10. Akbarian, B., M. Matloobi and M. Nasser. 2016. Effects of LED light on seed emergence and seedling quality of four bedding flowers. J. Ornamental Plants. 6:115-125.
11. Ballaré, C.L. and R, Pierik. 2017. The shade‐avoidance syndrome: multiple signals and ecological consequences. Plant Cell Environ. 40:2,530-2,543.
12. Caldwell, C.R. 2003. Alkylperoxyl radical scavenging activity of red leaf lettuce (Lactuca Sativa L.) phenolics. J. Agric. Food. Chem. 51:4,589-4,595.
13. Cammarisano, T.L., I.S. Donnison, and P.R.H. Robson. 2021. The effect of red & blue rich LEDs vs fluorescent light on lollo rosso lettuce morphology and physiology. Front. Plant Sci. 12:603,411.
14. Chen, C.C., M.Y. Huang, K.H. Lin, S.L. Wong, W.D. Huang, and C.M. Yang. 2014. Effects of light quality on the growth, development and metabolism of rice seedlings (Oryza sativa L.). Res. J. Biotech. 9:15-24.
15. Chen, X.L., Y.L. Li, L.C. Wang, and W.Z. Guo. 2021. Red and blue wavelengths affect the morphology, energy use efficiency and nutritional content of lettuce (Lactuca sativa L.). Sci. Rep. 11:8,374.
16. Courbier, S. and R. Pierik. 2019. Canopy light quality modulates stress responses in plants. iScience 22:441-452.
17. Fittinghoff, K. 2008. Functional analysis of the SPA gene family in Arabidopsis thaliana. PhD Thesis. Universität zu Köln. Germany.
18. Formisano, L., B. Miras-Moreno, M. Ciriello, L. Zhang, S.D. Pascale, L. Lucini and Y. Rouphael. 2022. Between light and shading: morphological, biochemical, and metabolomics insights into the influence of blue photoselective shading on vegetable seedlings. Frontiers Plant Sci. 13:890,830.
19. Fra˛szczak, B. and M. Kula-Maximenko. 2021. The preferences of different cultivars of lettuce seedlings (Lactuca sativa L.) for the spectral composition of light. Agronomy. 11:1,211.
20. Hernández, R. and C. Kubota. 2014. Growth and morphological response of cucumber seedlings to supplemental red and blue photon flux ratios under varied solar daily light integrals. Sci. Hortic. 173:92-99.
21. Hernández-Adasme, C., H. Silva, and V. Escalona. 2022. In-door germination and seedling growth of green and red lettuce under LED-light spectrum and subsequent effect on baby leaf lettuce. Ital. J. Agron. 17:1,982.
22. Jeong, H.W., H.R. Lee, H.M. Kim, H.M.K, H.S. Hwang, and S.J. Hwang. 2020. Using light quality for growth control of cucumber seedlings in closed-type plant production system. Plants 9:639.
23. Johkan, M., K. Shoji, F. Goto, S. Hashida, and T. Yoshihara. 2010. Blue light-emitting diode light irradiation of seedlings improves seedling quality and growth after transplanting in red leaf lettuce. Hortscience 45:1,809-1,814.
24. Kim, D.E., X. Shang, A.D. Assefa, Y.S. Keum, and R.K. Saini. 2018. Metabolite profiling of green, green/red, and red lettuce cultivars: Variation in health beneficial compounds and antioxidant potential. Food Res. Int. 105:361-370.
25. Kim, E.Y., S.A. Park, B.J. Park, Y. Lee, and M. M. Oh. 2014. Growth and antioxidant phenolic compounds in cherry tomato seedlings grown under monochromatic light-emitting diodes. Hort. Environ. Biotechnol. 55:506-513.
26. Lee, J.H., Y.B. Kwon, Y.H. Roh, I.L. Choi, J. Kim, Y. Kim, H.S. Yoon, and H.M. Kang. 2023. Effect of various LED light qualities, including wide red spectrum-LED, on the growth and quality of mini red romaine lettuce (cv. breen). Plants 12:2,056-2,072.
27. Li, H.M., C.M. Tang, Z.G. Xu, X.Y. Liu, and X.L. Han. 2012. Effects of different light sources on the growth of non-heading chinese cabbage (Brassica campestris L.). J. Agr. Sci. 4:262-273.
28. Li, J., T. Wu, K. Hu, Y. Liu, M. Liu, and J. Wang. 2021a. Effect of LED spectrum on the quality and nitrogen metabolism of lettuce under recycled hydroponics. Front. Plant Sci. 12:678,197.
29. Li, Y., L. Wu, H. Jiang, R. He, S. Song, W. Su, and H. Liu. 2021b. Supplementary far-red and blue lights influence the biomass and phytochemical profiles of two lettuce cultivars in plant factory. Molecules 26:7,405.
30. Lin, C. 2002. Blue light receptors and signal transduction. Plant Cell 14:207-225.
31. Liu, N., F. Ji, L. Xu, and D. He. 2022. Effects of LED light quality on the growth of pepper (Capsicum spp.) seedlings and the development after transplanting. Int. J. Agric. Biol. Eng. 12:44-50.
32. Liu, X., S. Guo, T. Chang, Z. Xu, and T. Takafumi. 2012. Regulation of the growth and photosynthesis of cherry tomato seedlings by different light irradiations of light emitting diodes (LED). African J. Biotechnol. 11:6,169-6,177.
33. Liu, Y., F. Jafari, and H. Wang. 2021. Integration of light and hormone signaling pathways in the regulation of plant shade avoidance syndrome. aBIOTECH 2:131-145.
34. Meng, L., W. Song, S. Liu, J. Dong, Y. Zhang, C. Wang, Y. Xu, and S. Wang. 2015. Light quality regulates lateral root development in tobacco seedlings by shifting auxin distributions. J. Plant Growth Regul. 34:574-583.
35. Morelli, G. and I. Ruberti. 2000. Shade avoidance responses. Driving auxin along lateral routes. Plant Physiol. 122:621-626.
36. Shafiq, I., S. Hussain, B. Hassan, A. Raza, I. Ahmad, M.A. Asghar, Z. Wang, T. Tan, S. Li, X. Tan, A. Ghafoor, A. Manaf, A. Ansar, F. Yang, and W. Yang. 2021. Crop responses and management strategies under shade and drought stress. Photosynthetica. 59(4):664-682.
37. Silva, E.M., G.G. S. Costa, A.F. Andrade, H.C.P. Ferreira, and F. Steiner. 2016. Light spectral quality on production of lettuce, cucumber and sweet pepper seedlings. Sci. Agrar. Parana. 15:446-452.
38. Son, K.H. and M.M. Oh. 2013. Leaf shape, growth, and antioxidant phenolic compounds of two lettuce cultivars grown under various combinations of blue and red light-emitting diodes. Hortscience 48:988-995.
39. Song, J.L., K. Cao, Y.W. Hao, S.W. Song, W. Su, and H.C. Liu. 2019. Hypocotyl elongation is regulated by supplemental blue and red light in cucumber seedling. Gene 707:117-125.
40. Su, N., Q. Wu, Z. Shen, K. Xia, and J. Cui. 2014. Effects of light quality on the chloroplastic ultrastructure and photosynthetic characteristics of cucumber seedlings. Plant Growth Regul. 73:227-235.
知識樹分類
消費者知識庫 > 園藝類 > 葉菜類 > 葉菜類栽培
消費者知識庫 > 園藝類 > 葉菜類 > 葉菜類-其他
消費者知識庫 > 農業工程類 > 農業機電 > 農業機電-其他
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--08115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--06115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--05115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--04115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--03115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--02115/06/04
- 花改場--宜蘭地區冬季補光對大果番茄‘優美’生育與產量之影響--01115/06/04
- 花改場--不同光譜補光處理對紅葉萵苣育苗品質之影響--08115/06/04
- 花改場--不同光譜補光處理對紅葉萵苣育苗品質之影響--07115/06/04
- 花改場--不同光譜補光處理對紅葉萵苣育苗品質之影響--06115/06/04





