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:: دوره 8، شماره 2 - ( پاییز و زمستان 1402 ) ::
جلد 8 شماره 2 صفحات 254-241 برگشت به فهرست نسخه ها
اثر پاکلوبوترازول و سایکوسل بر ویژگی‌های رشدی و گلدهی شمعدانی (Pelargonium hortorum)
سید مصطفی صادقی ، الهام دانائی*
دانشگاه آزاد
چکیده:   (1456 مشاهده)
در گیاهان زینتی به ویژه شمعدانی کنترل رشد رویشی، کاهش ارتفاع گیاهان و افزایش تراکم گیاه از اهمیت بالایی برخوردار است و سایکوسل و پاکلوبوترازول از مواد شیمیایی هستند که به‌‌طور وسیع در کاهش رشد تعداد زیادی از گیاهان به کار می‌‌روند. همچنین، به دلیل این­که این ترکیب­ها جذب‌‌کننده رادیکال‌های آزاد نیز هستند، پیری گل‌‌ها را به تاخیر می‌اندازند و تنش اکسیداتیو را در گیاه کاهش می‌دهند؛ در نتیجه بر ماندگاری گل نیز تاثیر مثبتی دارند. برای بررسی اثر محلول‌پاشی پاکلوبوترازول و سایکوسل بر شاخص‌های رشد رویشی و گلدهی شمعدانی (Pelargonium hortorum) آزمایشی در قالب طرح کاملا تصادفی با سه تکرار در گلخانه انجام شد. تیمار‌ها شامل محلول‌پاشی سایکوسل (صفر، 500، 1000 و 1500 میلی‌گرم در لیتر) و پاکلوبوترازول (50، 75 و 100 میلی‌گرم در لیتر) بود که در مرحله 6 تا 8 برگی به­کار رفت. نتایج نشان داد که تمام تیمارها بر متغیرهای اندازه‌گیری شده اثر معنی‌دار داشتند. بیشترین وزن تر و خشک اندام هوایی (87/66 گرم)، فعالیت آنزیم کاتالاز (77/2 واحد آنزیم بر گرم وزن تر گل) و پراکسیداز (34/14 واحد آنزیم بر گرم وزن تر گل) در تیمار محلول‌پاشی سایکوسل 1500 میلی‌گرم در لیتر و بیشترین محتوای کلروفیل کل (71/12 میلی گرم در گرم وزن تر برگ)، میزان آنتوسیانین (91/2 میلی‌‌گرم در لیتر وزن تر گلبرگ)، پروتئین (12/51 میکروگرم در گرم وزن تر گلبرگ)، فعالیت آنزیم سوپراکسید دیسموتاز (75/2 واحد آنزیم بر گرم وزن تر گل) و ماندگاری گل روی بوته (92/20 روز) در تیمار محلول‌پاشی 1000 میلی‌گرم در لیتر سایکوسل دیده شد، بیشترین شاخص ثبات غشاء یاخته‌ای (17/78%) نیز در تیمار محلول‌پاشی سایکوسل 500 میلی‌گرم در لیتر بود، همچنین بیشترین طول ریشه (85/43 سانتی‌متر) و کمترین ارتفاع گیاه (59/20 سانتی‌متر) نیز در تیمار محلول‌پاشی پاکلوبوترازول 100 میلی‌گرم در لیتر به‌‌دست آمد. در حالی­که بیشترین ارتفاع گیاه (78/26 سانتی‌متر) در شاهد دیده شد. به‌طور کلی، محلول‌پاشی شمعدانی توسط کندکننده‌های رشد به­ویژه سایکوسل با غلظت‌ 1000 میلی‌گرم در لیتر برای بهبود ویژگی‌های رشدی، گلدهی و افزایش بازار پسندی گیاه، توصیه می‌شود.
 
واژه‌های کلیدی: آنزیم، پروتئین، شمعدانی، ماندگاری گل روی بوته
متن کامل [PDF 943 kb]   (290 دریافت)    
نوع مطالعه: پژوهشي | موضوع مقاله: تخصصي
دریافت: 1402/1/5 | پذیرش: 1402/3/3 | انتشار: 1402/12/6
فهرست منابع
1. Abdul Jaleel, C., Ragupathi, G., Manivannan, P., Panneerselvam, R. (2007). Responses of antioxidant defense system of Catharanthus roseus (L.) G. Don. to paclobutrazol treatment under salinity. Acta Physiologiae Plantarum, 29(3), 205-209. [DOI:10.1007/s11738-007-0025-6]
2. Aghlmand, S., Esmaielpour, B., Jalilvand, P., Hiedari, H R., Tavakoli-hassankelo, N. (2018). Effect of salicylic acid and paclobutrazol on growth and physiological traits of basil under water deficit stress conditions. Journal of Plant Production and Function, 6(19), 35-46. (In Persian).
3. Ahmadizadeh, M., Valizadeh, M., Zaefizadeh, M., Shahbazi, H. (2011). Antioxidative protection and electrolyte leakage in durum wheat under drought stress condition. Journal of Applied Sciences Research, 7(3), 236-246
4. Akbari, V., Jalili Marandi, R. (2014). Effect of cycocel on growth and photosynthetic pigments of two olive cultivars under different irrigation intervals. Journal of Horticultural Science, 27(4), 460-469. (In Persian).
5. Akbari, V., Jalili Marandi, R., Farokhzad, A. (2015). Effect of Cycocel on Antioxidative activity and malondialdehyde content of Mary and Mission Olive (Olea europaea L.) cultivars under drought stress, 7(2), 121-135. (In Persian).
6. Alami, E., Karimi, M. (2020). Effect of cycocel and uniconazole on some morphological and biochemical properties of Zinnia. International Journal of Horticultural Science and Technology, 7(1), 81-91.
7. Amooaghaie, R., Shariat, E. (2014). Effect of cultivar, cold and paclobutrazol on growth, chlorophyll content and cell membrane injury in Phaseolus vulgaris plantlet. Iranian Journal of Plant Biology, 6(22), 77-90. (In Persian).
8. Bayat, H., Karimi, M., Babaei, S. (2021). First report of Pelargonium flower break virus (PFBV) in Iran and determining some of its molecular properties. Flower and Ornamental Plants; 6 (2), 85-94. (In Persian). [DOI:10.52547/flowerjournal.6.2.85]
9. Bayer, W. F., Fridovich, I. (1987). Assaying for superoxide dismutase activity: some large consequences of minor changes in condition. Analytical Biochemistry, 161, 559-566. [DOI:10.1016/0003-2697(87)90489-1]
10. Bradford, M. M. (1976). A rapid and sensitive method for quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Journal of Analytical Biochemistry, 72, 248- 254. [DOI:10.1016/0003-2697(76)90527-3]
11. Carvalho-Zanão, M., Zanão Júnior, L., Saraiva Grossi, J., Pereira, N. (2018). Potted rose cultivars with paclobutrazol drench applications. Ciência Rural, 48(8), 1-7. [DOI:10.1590/0103-8478cr20161002]
12. Danaee, E., Abdossi, V. (2018). Effect of different concentration and application methods of polyamines (Putrescine, Spermine, Spermidine) on some morphological, physiological, and enzymatic characteristics and vase life of Rosa hybrida cv. 'Dolce Vita' cut flower. Journal of Ornamental Plants, 8(3), 171-182.
13. Danaee, M., Abdossi, V. (2016). Evaluation of the effect of plant growth substances on longevity of gerbera cut flowers cv. Sorbet. Iranian Journal of Plant Physiology, 7(1), 1943- 1947.
14. Ebrahimzadeh, M. A., Nabavi, S. M., Nabavi, S. F., Eslami, B., Ehsanifar, S. (2009). Antioxidant activity of Hyoscyamus squarrosus fruits. Pharmacology Online, 2, 644-650.
15. Fletcher, R.A., Gilley, A., Sankhla, N., Davis, T. D. (2000). Triazoles as plant growth regulators and stress protectants. Horticultural Plant Journal, 24, 55-138. [DOI:10.1002/9780470650776.ch3]
16. Gerailoo, S., Ghasemnezhad, M., Shiri, M. (2014). Effect of short time treatment of salicylic acid in delaying flowers senescence in cut rose (Rosa hybrida) cv. Yellow Island. Journal of Plant Research. 27(2), 309-299. (In Persian).
17. Ghatas, Y. A. A. (2016). Influence of paclobutrazol and cycocel sprays on the growth, flowering and chemical composition of potted (Chrysanthemum frutescens) plant. Annals of Agriculture Science, 54(2), 355-364. [DOI:10.21608/assjm.2016.104125]
18. Hadipour, M. (2021). Effect of some plant growth retardants on growth and development parameters of Dahlia spp. Plant and Biotechnology of Iran, 16(3), 43-5.1 (In Persian).
19. Hamrahi, S., Habibi, D., Madani, H., Mashhadi Akbar Boojar, M. (2008). Effect of cycocel and micronutrients on antioxidants rates as indices of drought resistance of rapeseed. New Finding in Agriculture, 2(3), 316-329. (In Persian).
20. Hojjati, M., Etemadi, N., Baninasab, B. (2011). Effect of Paclobutrazol and Cycocel on vegetative growth and flowering of Zinnia (Zinnia elegans). Journal of Horticultural Science, 24(2), 122-127. (In Persian).
21. Holy, MC. (1972). Indole acetic acid oxidase: a dual catalytic enzyme. Plant Physiology, 50, 15-18 [DOI:10.1104/pp.50.1.15]
22. Jamali Moghadam, H., Hassanpour Asil, M. (2021). Improving morpho-physiological characteristics and extending vase life of Lily (Lilium LA hybrid) cv. Original Love using gibberellic acid and humic acid. Flower and Ornamental Plants; 6(1), 49-70. [DOI:10.52547/flowerjournal.6.1.49]
23. Karimi, M., Ahmadi, M. (2019). The effect of inhibitory growth of cycocel and uniconazole on morphological and biochemical characteristics of petunia (Petunia hybrida L.). Journal of Plant Production and Function, 8(32), 365-376. (In Persian).
24. Karimi, M., Salimi, F., Pakdin, A. (2022). The effect of different concentrations of uniconazole and cycocel and their application method on vegetative growth and biochemical properties of Lilium hybrids (Longiflorum × Asiatic cv. Eyeliner), Journal of Horticultural Science, 36(4), 937-948. (In Persian).
25. Lesani, H., Mojtahedi, M. (2005). Fundamentals of Plant Physiology. University of Tehran Publication. pp 604.
26. Mortazavi, S., Khodabandelu, F., Azimi, M. H. (2017). Effect of cycocel and salicylic acid on morphologic traits of Brassica Oleracea, Pink Type. Journal of Horticultural Science, 30(4), 590-596. (In Persian).
27. Moshrefi Araghi, A., Naderi, R., Babalar, M., Taheri, M R. (2014). Effect of different spraying levels of cycocel on vegetative growth and flowering of poinsettia pot plant (Euphorbia pulcherrima Willd.). Journal of Soil and Plant Interactions; 5(1), 73-84. (In Persian).
28. Nazarudin, A. (2012). Plant growth retardants effect on growth and flowering of potted Hibiscus rosa-sinensis. Journal of Tropical Plant Physiology, 4, 29-40.
29. Rapisarda, P., Fanella, F., Maccarone, E. (2000). Reliability of analytical methods for determining anthocyanins in blood orange juices. Journal of Agriculture and Food Chemistry, 48, 2249 - 52. [DOI:10.1021/jf991157h]
30. Rossini pinto, A.C., Deleo Rodrigues, T. D.J., Leite, I.C., Barbosa, J. C. (2005). Growth retardants on development and ornamental quality of potted Liliput Zinnia elegans Jacq. Scientia Agricola, 62, 337-345. [DOI:10.1590/S0103-90162005000400006]
31. Salehi Sardoei, A., Azad Ghojehbiglou, H., Fattahi Siah Kamri, S., Khazaei, I. (2021). Evaluation effect of Cycocel foliar application on active substance and some physicochemical characteristics of Cannabis sativa. Eco-phytochemical Journal of Medicinal Plants, 9(3), 29-39. (In Persian).
32. Sawan, M.Z. (2008). Effect of nitrogen fertilization and foliar application of plant growth retardants and zinc on cottonseed, protein and oil yields and oil properties of cotton. Journal of Agriculture Crop and Science, 186, 183-191. [DOI:10.1046/j.1439-037X.2001.00473.x]
33. Shiu, CT., Lee, TM. (2005). Ultraviolet induced oxidative stress and responses of the ascorbate- glutathione cycle in a marine macroalga Ulva fasciata. Journal of Experimental Botany, 56, 2851-2865. [DOI:10.1093/jxb/eri277]
34. Shoa Kazemi, Sh., Hashem Abadi., D., Mohammadi Torkashvand, A., Kaviani, B. (2014). Effect of cycocel and daminozide on vegetative growth, flowering and the content of essence of pot marigold (Calendula officinalis). Journal of Ornamental Plants, 4(2), 107-114.
35. Singh, B., Usha, K. (2003). Salicylic acid induced physiological and biochemical changes in wheat seedling under water stress. Plant Growth Regulation, 39, 137-14. [DOI:10.1023/A:1022556103536]
36. Soroori, S., Danaee, E., Hemmati, K., Ladanmoghadam, A. (2022). Effect of spermidine foliar application on some morphophysiological traits and secondary metabolites of marigold (Calendula officinalis L.) under drought stress. Journal of Iranian Plant Ecophysiological Research, 17(66), 108-125. (In Persian).
37. Taghipur Jirdehi, S., Hassanpour Asil, M. (2022). The effect of cycocel consumption method on the growth and flowering of azalea ‎‎(Rhododendron simsii cv. Japonica Red)‎. Iranian Journal of Horticultural Science, 53(1): 239-255. (In Persian).
38. Tehranchi, M., Moradi, P. (2014). The effect of different levels of cycocel on vegetative growth and flowering of Rana Ziba. National Conference on New Topics in Agriculture, 362-365. (In Persian).
39. Abdul Jaleel, C., Ragupathi, G., Manivannan, P., Panneerselvam, R. (2007). Responses of antioxidant defense system of Catharanthus roseus (L.) G. Don. to paclobutrazol treatment under salinity. Acta Physiologiae Plantarum, 29(3), 205-209. [DOI:10.1007/s11738-007-0025-6]
40. Aghlmand, S., Esmaielpour, B., Jalilvand, P., Hiedari, H R., Tavakoli-hassankelo, N. (2018). Effect of salicylic acid and paclobutrazol on growth and physiological traits of basil under water deficit stress conditions. Journal of Plant Production and Function, 6(19), 35-46. (In Persian).
41. Ahmadizadeh, M., Valizadeh, M., Zaefizadeh, M., Shahbazi, H. (2011). Antioxidative protection and electrolyte leakage in durum wheat under drought stress condition. Journal of Applied Sciences Research, 7(3), 236-246
42. Akbari, V., Jalili Marandi, R. (2014). Effect of cycocel on growth and photosynthetic pigments of two olive cultivars under different irrigation intervals. Journal of Horticultural Science, 27(4), 460-469. (In Persian).
43. Akbari, V., Jalili Marandi, R., Farokhzad, A. (2015). Effect of Cycocel on Antioxidative activity and malondialdehyde content of Mary and Mission Olive (Olea europaea L.) cultivars under drought stress, 7(2), 121-135. (In Persian).
44. Alami, E., Karimi, M. (2020). Effect of cycocel and uniconazole on some morphological and biochemical properties of Zinnia. International Journal of Horticultural Science and Technology, 7(1), 81-91.
45. Amooaghaie, R., Shariat, E. (2014). Effect of cultivar, cold and paclobutrazol on growth, chlorophyll content and cell membrane injury in Phaseolus vulgaris plantlet. Iranian Journal of Plant Biology, 6(22), 77-90. (In Persian).
46. Bayat, H., Karimi, M., Babaei, S. (2021). First report of Pelargonium flower break virus (PFBV) in Iran and determining some of its molecular properties. Flower and Ornamental Plants; 6 (2), 85-94. (In Persian). [DOI:10.52547/flowerjournal.6.2.85]
47. Bayer, W. F., Fridovich, I. (1987). Assaying for superoxide dismutase activity: some large consequences of minor changes in condition. Analytical Biochemistry, 161, 559-566. [DOI:10.1016/0003-2697(87)90489-1]
48. Bradford, M. M. (1976). A rapid and sensitive method for quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Journal of Analytical Biochemistry, 72, 248- 254. [DOI:10.1016/0003-2697(76)90527-3]
49. Carvalho-Zanão, M., Zanão Júnior, L., Saraiva Grossi, J., Pereira, N. (2018). Potted rose cultivars with paclobutrazol drench applications. Ciência Rural, 48(8), 1-7. [DOI:10.1590/0103-8478cr20161002]
50. Danaee, E., Abdossi, V. (2018). Effect of different concentration and application methods of polyamines (Putrescine, Spermine, Spermidine) on some morphological, physiological, and enzymatic characteristics and vase life of Rosa hybrida cv. 'Dolce Vita' cut flower. Journal of Ornamental Plants, 8(3), 171-182.
51. Danaee, M., Abdossi, V. (2016). Evaluation of the effect of plant growth substances on longevity of gerbera cut flowers cv. Sorbet. Iranian Journal of Plant Physiology, 7(1), 1943- 1947.
52. Ebrahimzadeh, M. A., Nabavi, S. M., Nabavi, S. F., Eslami, B., Ehsanifar, S. (2009). Antioxidant activity of Hyoscyamus squarrosus fruits. Pharmacology Online, 2, 644-650.
53. Fletcher, R.A., Gilley, A., Sankhla, N., Davis, T. D. (2000). Triazoles as plant growth regulators and stress protectants. Horticultural Plant Journal, 24, 55-138. [DOI:10.1002/9780470650776.ch3]
54. Gerailoo, S., Ghasemnezhad, M., Shiri, M. (2014). Effect of short time treatment of salicylic acid in delaying flowers senescence in cut rose (Rosa hybrida) cv. Yellow Island. Journal of Plant Research. 27(2), 309-299. (In Persian).
55. Ghatas, Y. A. A. (2016). Influence of paclobutrazol and cycocel sprays on the growth, flowering and chemical composition of potted (Chrysanthemum frutescens) plant. Annals of Agriculture Science, 54(2), 355-364. [DOI:10.21608/assjm.2016.104125]
56. Hadipour, M. (2021). Effect of some plant growth retardants on growth and development parameters of Dahlia spp. Plant and Biotechnology of Iran, 16(3), 43-5.1 (In Persian).
57. Hamrahi, S., Habibi, D., Madani, H., Mashhadi Akbar Boojar, M. (2008). Effect of cycocel and micronutrients on antioxidants rates as indices of drought resistance of rapeseed. New Finding in Agriculture, 2(3), 316-329. (In Persian).
58. Hojjati, M., Etemadi, N., Baninasab, B. (2011). Effect of Paclobutrazol and Cycocel on vegetative growth and flowering of Zinnia (Zinnia elegans). Journal of Horticultural Science, 24(2), 122-127. (In Persian).
59. Holy, MC. (1972). Indole acetic acid oxidase: a dual catalytic enzyme. Plant Physiology, 50, 15-18 [DOI:10.1104/pp.50.1.15]
60. Jamali Moghadam, H., Hassanpour Asil, M. (2021). Improving morpho-physiological characteristics and extending vase life of Lily (Lilium LA hybrid) cv. Original Love using gibberellic acid and humic acid. Flower and Ornamental Plants; 6(1), 49-70. [DOI:10.52547/flowerjournal.6.1.49]
61. Karimi, M., Ahmadi, M. (2019). The effect of inhibitory growth of cycocel and uniconazole on morphological and biochemical characteristics of petunia (Petunia hybrida L.). Journal of Plant Production and Function, 8(32), 365-376. (In Persian).
62. Karimi, M., Salimi, F., Pakdin, A. (2022). The effect of different concentrations of uniconazole and cycocel and their application method on vegetative growth and biochemical properties of Lilium hybrids (Longiflorum × Asiatic cv. Eyeliner), Journal of Horticultural Science, 36(4), 937-948. (In Persian).
63. Lesani, H., Mojtahedi, M. (2005). Fundamentals of Plant Physiology. University of Tehran Publication. pp 604.
64. Mortazavi, S., Khodabandelu, F., Azimi, M. H. (2017). Effect of cycocel and salicylic acid on morphologic traits of Brassica Oleracea, Pink Type. Journal of Horticultural Science, 30(4), 590-596. (In Persian).
65. Moshrefi Araghi, A., Naderi, R., Babalar, M., Taheri, M R. (2014). Effect of different spraying levels of cycocel on vegetative growth and flowering of poinsettia pot plant (Euphorbia pulcherrima Willd.). Journal of Soil and Plant Interactions; 5(1), 73-84. (In Persian).
66. Nazarudin, A. (2012). Plant growth retardants effect on growth and flowering of potted Hibiscus rosa-sinensis. Journal of Tropical Plant Physiology, 4, 29-40.
67. Rapisarda, P., Fanella, F., Maccarone, E. (2000). Reliability of analytical methods for determining anthocyanins in blood orange juices. Journal of Agriculture and Food Chemistry, 48, 2249 - 52. [DOI:10.1021/jf991157h]
68. Rossini pinto, A.C., Deleo Rodrigues, T. D.J., Leite, I.C., Barbosa, J. C. (2005). Growth retardants on development and ornamental quality of potted Liliput Zinnia elegans Jacq. Scientia Agricola, 62, 337-345. [DOI:10.1590/S0103-90162005000400006]
69. Salehi Sardoei, A., Azad Ghojehbiglou, H., Fattahi Siah Kamri, S., Khazaei, I. (2021). Evaluation effect of Cycocel foliar application on active substance and some physicochemical characteristics of Cannabis sativa. Eco-phytochemical Journal of Medicinal Plants, 9(3), 29-39. (In Persian).
70. Sawan, M.Z. (2008). Effect of nitrogen fertilization and foliar application of plant growth retardants and zinc on cottonseed, protein and oil yields and oil properties of cotton. Journal of Agriculture Crop and Science, 186, 183-191. [DOI:10.1046/j.1439-037X.2001.00473.x]
71. Shiu, CT., Lee, TM. (2005). Ultraviolet induced oxidative stress and responses of the ascorbate- glutathione cycle in a marine macroalga Ulva fasciata. Journal of Experimental Botany, 56, 2851-2865. [DOI:10.1093/jxb/eri277]
72. Shoa Kazemi, Sh., Hashem Abadi., D., Mohammadi Torkashvand, A., Kaviani, B. (2014). Effect of cycocel and daminozide on vegetative growth, flowering and the content of essence of pot marigold (Calendula officinalis). Journal of Ornamental Plants, 4(2), 107-114.
73. Singh, B., Usha, K. (2003). Salicylic acid induced physiological and biochemical changes in wheat seedling under water stress. Plant Growth Regulation, 39, 137-14. [DOI:10.1023/A:1022556103536]
74. Soroori, S., Danaee, E., Hemmati, K., Ladanmoghadam, A. (2022). Effect of spermidine foliar application on some morphophysiological traits and secondary metabolites of marigold (Calendula officinalis L.) under drought stress. Journal of Iranian Plant Ecophysiological Research, 17(66), 108-125. (In Persian).
75. Taghipur Jirdehi, S., Hassanpour Asil, M. (2022). The effect of cycocel consumption method on the growth and flowering of azalea ‎‎(Rhododendron simsii cv. Japonica Red)‎. Iranian Journal of Horticultural Science, 53(1): 239-255. (In Persian).
76. Tehranchi, M., Moradi, P. (2014). The effect of different levels of cycocel on vegetative growth and flowering of Rana Ziba. National Conference on New Topics in Agriculture, 362-365. (In Persian).
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Sadeghi S M, Danaee E. The effect of paclobutrazol and cycocel on growth and flowering characteristics of geranium (Pelargonium hortorum). FOP 2023; 8 (2) :241-254
URL: http://flowerjournal.ir/article-1-271-fa.html

صادقی سید مصطفی، دانائی الهام. اثر پاکلوبوترازول و سایکوسل بر ویژگی‌های رشدی و گلدهی شمعدانی (Pelargonium hortorum). گل و گیاهان زینتی. 1402; 8 (2) :241-254

URL: http://flowerjournal.ir/article-1-271-fa.html



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دوره 8، شماره 2 - ( پاییز و زمستان 1402 ) برگشت به فهرست نسخه ها
گل و گیاهان زینتی Flower and Ornamental Plants
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