صفحه اصلی عمومی و آزاد تاثير اتيلن بر دوام عمر و كيفيت گياهان زينتي

تاثير اتيلن بر دوام عمر و كيفيت گياهان زينتي

48,000 تومان
  • دانلود پروژه تاثير اتيلن بر دوام عمر و كيفيت گياهان زينتي

  • گارانتی سلامت محصول
  • تضمین کیفیت محصول
  • ضمانت قیمت محصول


فهرست مطالب

چکیده.........................................................................................................................................................1

مقدمه..........................................................................................................................................................2

فعالیتهای اتیلن.........................................................................................................................................3

مکانهای سنتز اتیلن.................................................................................................................................3

تولید اتوکاتالیتیک اتیلن........................................................................................................................3

گیرنده های اتیلن.....................................................................................................................................3

سنتز اتیلن................................................................................................................................................4

اثرات اتیلن در گیاهان زینتی.................................................................................................................4

گلهای فرازگرا و نافرازگرا.......................................................................................................................5

ریزش در تک‌لپه‌ای‌ها و دولپه‌ای‌ها.......................................................................................................6

تاثیر اتیلن روی بافتهای رویشی..........................................................................................................7

تاثیر اتیلن روی بافتهای زایشی...........................................................................................................7

پیری...........................................................................................................................................................7

تغيرات فيزيولوژيكي و بيوشيميائي پيري........................................................................................8

پیری گلبرگ‏ها..........................................................................................................................................8

میخک..........................................................................................................................................................9

سنتز اتیلن در میخک...............................................................................................................................9

تاثیر سن گل شاخه بریده در تیمار حساسیت به اتیلن.................................................................10

گرده‏افشانی در میخک..........................................................................................................................10

موتانت‏های مقاوم به اتیلن.................................................................................................................10

نقش تیمار دما در بیوسنتز اتیلن.......................................................................................................10

افزایش ماندگاری میخک......................................................................................................................11

بازدارنده‏های شیمیائی دریافت اتیلن............................................................................................12

فریزیاFressia))................................................................................................................................13

گلایول(Gladiolus)..........................................................................................................................13

رز(Rosa)............................................................................................................................................13

بازدارنده‏های اتیلن در رز................................................................................................................14

ارکیده(Orchidae)...........................................................................................................................14

گل مریم (Tuberosa Polianthus)............................................................................................14

آلسترومریا(Alestromeria).........................................................................................................15

نتيجه‏گيري.......................................................................................................................................16

منابع.................................................................................................................................................17

 

 

به همراه صفحه بسم الله...

صفحه عنوان

فهرست مطالب

منابع

Ahmadi, N., H. Mibus, and M. Serek. 2009. Characterization of ethylene-induced organ abscission in F1 breeding line of miniature roses (Rosa hybrida L.). Postharvest Biol. Technol. 52: 260-266.

 

Bartoli, C., G. Guiamet, and S. Montaidi. 1996. Ethylene production and response to exogenous ethylene in senescing petals of (chrysanthemum morifolium). Plant Science, 124: 15-21.

 

Blankenship, S. M. and J.M. Dole. 2003. 1-Methylcyclopropene: a review. Postharvest Biol. and Technol . 28:1-25.

 

Blankenship. S.M and Sisler. E.C. 1993. Use of diazocyclopentadiene to blockethylene action in fruits and flowers. Acta Hortic.343:215–226.

 

Berger, H., L.Galleti and M. Villasaca. 2007. Effect of exogenous ethylene on alstromeria flower sticks. Springer. 315-316

 

Brown .R and Mayak .S. 1981. Aminooxyacetic acid as an inhibitor of ethylenesynthesis and senescence in carnation flowers. Sci Hortic.15:277–282.

 

Chikasubbanha, V and R. Sharada. 2002. Effect of floral preservatives on the longevity of cut carnations.crop Research. 23:357-361.

 

Garibaldi A. E. and R. Jonu. 1989. Parameters influence Gerbera cut flower longevity. Acta Hort. Abst. 261.

 

Heyes .J.A and  Johnson .J.W. 1998. 1-Methylcyclopropene extends Cymbidium orchid vase life and prevents damaged pollinia from accelerating senescence. NZ J Crop Hortic Sci. 26:319–324.

Ichimura, K., H. Shimizu, T. Hiraya and T. Hisamatsu. 2002. Effect of 1-methylcyclopropene (1-MCP) on vase life of cut carnation and Delphinium. Bull. Nation. Inst. Floricult. Sci. 2:1-8.

 

Kende H. 1993. Ethylene biosynthesis. Annu Rev Plant Physiol Mol Biol. 44:283–307.

 

Kamerbeek .G.A and  De Munk .W.J.1976.  A review of ethylene effects in bulbous plants. Sci Hortic.4:101–115.

 

Kofranek .A.M and Paul .J.L.2004. The value of impregnating cut stems with high concentrations of silver nitrate. Acta Hortic;41:199–206.

 

Lü, P., J. Cao, S. He, J. Liu, H. Li, G. Cheng, Y. Ding and D.C. Joyce. 2010. Nano-silver pulse treatments improve water relations of cut rose cv. Movie Star flowers. Postharvest Biol. and Technol. 57: 196-202. 

 

Mayak .S, Vaadia Y and D. R. Dilley. 1977. Regulation of senescence in carnation (Dianrhus caryophyllus) by ethylene. Plant Physio.159: 591-593.

 

Nowak, J. and R.M. Rudnicki, 1990. Postharvest handling and storage of cut-flowers. Florist Greens and Potted Plants. Timber Press, Porthand, Oregan. p: 210

 

Reid. M.S, Evans .R.Y and  Dodge .L.L. 1989. Ethylene and silver thiosulfate influence opening of cut rose flowers. J Am Soc Hortic Sci.114:436–40.

 

Satoh, Sh., K. Shibuya, T. Yoshioka and T. Hashiba. 2000. Role of the gynoecium in natural senescence of carnation (Dianthus caryophyllus L.). J. Exp. Bot. 51(353): 2067-2073.

 

Serek, M., Jones, R.B. and Reid. M. S.1994. Role of Ethylene in Opening and Senescence of Gladiolus sp. Flowers. Hort. Sci. 119:1014–1019.

Serek. M and Sisler. E.C. 2005. Impact of 1-MCP on postharvest quality of ornamentals. APEC Symposium on Quality Management of Postharvest Systems Proceedings.p. 121–128.

 

Sisler .E.C,  Blankenship .S.M, Fearn. J.C and  Haynes .R. 1993.  Effect of diazocyclopentadiene (DACP) on cut carnations. In: Pech JC, Balague Latche A, editors. Cellular and molecular aspects of biosynthesis and action of the plant hormone ethylene. Dordrecht, The Netherlands: Kluwer Academic Publishers. p. 182–187.

 

Sisler .E.C, Dupille E and Serek M. 1996. Effect of 1-methylcyclopene and    methylcyclopropane on ethylene binding and ethylene action oncut carnations. Plant Growth Regul .18:79–86.

 

Sisler .E.C and  Serek M. 2003. Compounds interacting with the ethylene receptor in plants. Plant Biol.5:473–480.

 

Serek, M., Woltering, E.J., Sisler, E.C., Frello, S. and Sriskandarajah, S. 2006.  Controlling ethylene responses in flowers at the receptor level. Review.  Biotechnology Advances. 24: 368-381.

 

van Doorn. W.G. 2001. Categories of petal senescence and abscission: a reevaluation. Ann Bot. 87:447–56.

 

Veen , H. 1983. Silver thiosulphate: an experimental tool in plant science. Sci Hort. 20:211–24.

 

Veen, H. 1985. Antagonistic effect of silver thiosulphate or 2,5-norbornadiene on 1-aminocyclopropane-1-carboxylic acid-stimulated growth of pistils in carnation buds. Physiol Plant. 65:2–8.

 

Zencikiran, M. 2010. Effect of 1-MCP on vase life on cut fressia flowers.physiol plant. 32:14-18.

 

فرمت فایل:
حجم فایل:
تعداد فایل: