Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 園藝暨景觀學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80393
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor葉德銘(Der-Ming Yeh)
dc.contributor.authorYa Zhaoen
dc.contributor.author趙雅zh_TW
dc.date.accessioned2022-11-24T03:05:43Z-
dc.date.available2021-07-20
dc.date.available2022-11-24T03:05:43Z-
dc.date.copyright2021-07-20
dc.date.issued2021
dc.date.submitted2021-07-19
dc.identifier.citation林樵. 2012. 火鶴花盆花貯後品質之改善. 國立臺灣大學園藝學系碩士論文. 臺北. 林侖葳、葉德銘. 2011. 栽培溫度對火鶴花切花形態、顏色、碳水化合物含量及瓶插壽命之影響. 臺灣園藝57:107-118. 林樵、葉德銘. 2016. 貯運期間之乙烯影響火鶴花盆花貯後品質及1-MCP與BA之保護效果. 臺灣園藝62:49-64. 胡發韜. 1995. 火鶴花光合作用與消蕾之研究. 國立臺灣大學園藝學系碩士論文. 臺北. 姚銘輝、盧虎生、朱鈞. 2002. 葉綠素螢光與作物生理反應. 科學農業50:31-41. 范舒婷. 2007. 儲運天數、溫度、乙烯及1-MCP對天南星科觀葉植物儲後生長及光合作用第二系統之影響. 國立臺灣大學園藝學系碩士論文. 臺北. 范舒婷. 2012. 儲運時乙烯及儲運前1-MCP對粗肋草儲後之品質、光合作用、葉綠體及抗氧化反應之影響. 國立臺灣大學園藝學系博士論文. 臺北. 張嘉滿. 2004. 乙烯誘導芥藍葉片老化過程中之抗氧化反應. 國立臺灣大學園藝學系碩士論文. 臺北. 張綺恂、李哖、張天鴻. 2003. 乙烯與黑暗引起蝴蝶蘭盆花花朵及花苞的萎凋. 中國園藝49:173-182. 黃肇家、黃惠穗、蔡金玉. 2003. 觀賞鳳梨盆花海運溫度及對品質之影響. 台灣花卉園藝月刊194:52-56. 葉宗仁、劉黃碧圓、蔡智賢、李堂察. 2004. 火鶴花採後光合作用速率對瓶插壽命之影響. 臺灣園藝50:479-486. Abele, F.B. 1973. Ethylene in plant biology. Academic Press, New York. Azevedo, H., C.G.G. Pinto, and C. Santos. 2005. Cadmium effects in sunflower: Membrane permeability and changes in catalase and peroxidase activity in leaves and callus. J. Plant Nutr. 28:2233-2241. Bailey, L.H. and E.Z. Bailey. 1976. Hortus Third: A concise dictionary of plants cultivated in the United States and Canada. Macmilan, New York. Balibrea Lara, M.E., M.C. Gonzalez Garcia, T. Fatima, R. Ehneβ, T.K. Lee, R. Proels, W. Tanner, and T. Roitsch. 2004. Extracellular invertase is an essential component of cytokinin-mediated delay of senescence. Plant Cell 16:1276-1287. Ben-Jaacov, J., R.T. Poole, and C.A. Conover. 1982. Effect of nutrition, soil water content, and duration of storage on quality of Dieffenbachia maculata (Lodd.) G. Don ‘Rudloph Roehrs’. HortScience 17:611-612. Ben-Jaacov, J., R.T. Poole, and C.A. Conover. 1985. Long-term dark storage of Dieffenbachia sprayed with cytokinin. Foliage Dig. 50:19-22. Beyer E.M. Jr. 1976. Silver ion: a potent antiethylene agent in cucumber and tomato. HortScience 11:195-196. Blankenship, S.M. and J.M. Dole. 2003. 1-Methylcyclopropene: A review. Postharvest Biol. Technol. 28: 1-25. Cary, A.J., W. Lui, and S.H. Howell. 1995. Cytokinin action is coupled to ethylene in its effects on the inhibition of root and hypocotyls elongation in Arabidopsis thaliana seedlings. Plant Physiol. 107:1075-1082. Chang, H., M.L. Jones, G.M. Banowetz, and D.G. Clark. 2003. Overproduction of cytokinins in petunia flowers transformed with PSAG12-IPT dalays corolla senescence and decreases sensitivity to ethylene. Plant Physiol. 132:2174-2183. Chen, J., R.J. Henny, C.A. Robinson, T. Mellich, and R.D. Caldwell. 1999. Potted Anthurium: an interior-flowering foliage plant. Proc. Fla. State Soc. 112:280-281. Collins, P. C. and T. M. Blessington. 1983. Postharvest effects of shipping temperature and subsequent interior keeping quality of Ficus benjamina. HortScience 18:757-758. Conover C.A. and R.T. Poole. 1987. Factors influencing shipping of acclimatized foliage plants. Biology 10:15-16. Cools, K., G.A. Chope, J.P. Hammond, A.J. Thompson, and L.A. Terry. 2011. Ethylene and 1-methylcyclopropene differentially regulate gene expression during onion sprout suppression. Plant Physiol. 156:1639-1652. Croat, T.B. 1980. Flowering behavior of the neotropical genus Anthurium (Araceae). Amer. J. Bot. 67:888-904. Croat, T.B. 1990. The ecology and life forms of Araceae. Aroideana 11:4-56. Cushman, L.C., H.B. Pemberton, J.C. Miller Jr., and J.W. Kelly. 1998. Interaction of flower stage, cultivar, and shipping temperature and duration affect pot rose performance. HortScicence 33:736-740. Cunningham, J.L. and G.L. Staby. 1975. Ethylene and defoliation of ornamental lime plants in transit. HortScience 10:174-175. DeEll, J.R., D.P. Murr, M.D. Porteous, and H.P.V. Rupasinghe. 2002. Influence of temperature and duration of 1-methylcyclopropene (1-MCP) treatment on apple quality. Postharvest Biol. Technol. 24:349-353. DeEll, J.R., O. van Kooten, R.K. Prange, and D.P. Murr. 1999. Application of chlorophyll fluorescence techniques in postharvest physiology. Hort. Rev. 23:69-197. De Munk, W.J. 1973. Flower-bud blasting in tulips caused by ethylene. Neth. J. Plant Pathol. 79:41-53. Ding, M., B. Bei, W. Jiang, Q. Duan, H. Du, and D. Huang. 2011. Physiological advantages of grafted watermelon (Citrullus lanatus) seedlings under low-temperature storage in darkness. HortScience 46:993-996. Djanaguiraman, M., P.V.V. Prasad, and K. Al-Khatib. 2011. Ethylene perception inhibitor 1-MCP decreases oxidative damage of leaves through enhanced antioxidant defense mechanisms in soybean plants grown under high temperature stress. Environ. Expt. Bot. 71:215-223. Dufour, L. and V. Guérin. 2003. Growth, developmental features, and flower production of Anthurium andreanum Lind. in tropical condition. Scientia Hort. 98:25-35. Durieux, A.J.B., G.A. Kamerbeek, and U. van Meeteren. 1982. The existence of a critical period for the abscission and a non-critical period for blasting of flower-buds of Lilium ‘Enchantment’; Influence of light and ethylene. Scientia Hort. 18:287-297. Establés-Ortiz B., P. Romero, A.R. Ballester, L. González-Candelas, and M. T. Lafuente. 2016. Inhibiting ethylene perception with 1-methylcyclopropene triggers molecular responses aimed to cope with cell toxicity and increased respiration in citrus fruits. Plant Physiol. Biochem. 103:154-166 Ella, L., A. Zion, A. Nehemia, and L. Amnon. 2003. Effect of the ethylene action inhibitor 1-methylcyclopropene on parsley leaf senescence and ethylene biosynthesis. Postharvest Biol. Technol. 30:67-74. Elibox, W. and P. Umaharan. 2008. Morphophysiological chararcteristics associated with vase life of cut flowers of anthurium. HortScience 43:825-831. Fan, L., S. Zheng, and X. Wang. 1997. Antisense suppression of phospholipase Dɑ retards abscisic acid- and ethylene-promoted senescence of postharvest Arabidopsis leaves. Plant Cell 9:2183-2196. Fan, L., J. Song, C.F. Forney, and M.A. Jordan. 2005. Ethanol production and chlorophyll fluorescence predict breakdown of heat-stressed apple fruit during cold storage. J. Amer. Soc. Hort. Sci. 130:237-243. Fan, S.T., D.M. Yeh, and T.T. Wang. 2009. Cultivar sensitivity to ethylene during storage and 1-methylcyclopropene protection of Aglaonema. HortScience 44:202-205. Fukui, R., S. Kikuchi, Y. Ichida, and H. Honjo. 2005. Vase life of imported Anthurium flowers evaluated in Japan in relation to the effects of postimportation benzyladenine treatment. HortScience 40:1439-1443. Gan, S. and R.M. Amisino. 1995. Inhibition of leaf senescence by autoregulated production of cytokinin. Science 270:1986-1988. Gapper, N.E., S.A. Coupe, M.J. McKenzie, B.K. Sinclair, R.E. Lill, and P.E. Jameson. 2005. Regulation of harvest-induced senescence in broccoli (Brassica oleracea var. italica) by cytokinin, ethylene, and sucrose. J. Plant Growth Regulat. 24:153-165. Gong, Y. and J.P. Mattheis. 2003. Effect of ethylene and 1-methylcyclopropene on chlorophyll catabolism of broccoli florets. J. Plant Growth Regulat. 40:33-38. Grbić, V. and A.B. Bleecker. 1995. Ethylene regulates the timing of leaf senescence in Arabidopsis. Plant J. 8:595-602. Han, S.S. and T.H. Boyle. 1996. Ethylene affects postproduction quality of easter cactus. J. Amer. Soc. Sci. 121:1174-1178. Han, S.S. and J.A. Miller. 2003. Role of ethylene in postharvest quality of cut oriental lily ‘Stargazer’. Plant Growth Regulat. 40:213-222. Hayden, D.M. and D.A. Christopher. 2004. Characterization of senescence-associated gene expression and senescence-dependent and -independent cysteine proteases differing in microsomal processing in Anthurium. Plant Sci. 166:779-790. Hensel, L.L., V. Grbić, D.A. Baumgarten, and A.B. Bleeker. 1993. Developmental and age-related processes that influence the longevity and senescence of photosynthetic tissues in Arabidopsis. Plant Cell 5:553-564. Higaki, T., H.P. Rasmusan, and W.J. Carpenter. 1984. A study of some morphological and anatomical aspects of Anthurium andraeanum Lind. University of Hawaii, HITAHR Res. Ext. Ser. 030:1-12. Higaki, T., J.S. Lichty, and D. Moniz. 1995. Anthurium culture in Hawaii. University of Hawaii, HITAHR Res. Ext. Ser. 152. Hodges, D.M. and C.F. Forney. 2000. The effects of ethylene, depressed oxygen and elevated carbon dioxide on antioxidant profiles of senescing spinach leaves. J. Expt. Bot. 51:645-655. Høyer, L. 1995. Investigation of the ethylene build-up during transport of pot plants in controlled temperature trucks. Postharvest Biol. Technol. 5:101-108. Høyer, L. 1996. Critical ethylene exposure for Hibiscus rosa-sinensis is dependent on an interaction beween ethylene concentration and duration. Postharvest Biol. Technol. 9:87-95. Huxley, A., M. Griffiths, and M. Levy. 1992. The new royal horticultural society dictionary of gardening, Vol. 1. Stockton Press, New York. Huber, D.J., Hurr, B.M., Lee, J.S., Lee, J.H., 2010. 1-methylcyclopropene sorption by tissues and cell-free extracts from fruits and vegetables: evidence for enzymic 1-MCP metabolism. Postharvest Biol. Technol. 56:123-130. Iwata, R.Y., C.S. Tang, and H. Kamemoto. 1979. Anthocyanins of Anthurium andraeanum Lind. J. Amer. Soc. Hort. Sci. 104:464-466. Iwata, R.Y., C.S. Tang, and H. Kamemoto. 1985. Concentration of anthocyanins affecting spathe color in anthuriums. J. Amer. Soc. Hort. Sci. 110:383-385. Jing, H.C., J.H.M. Schippers. J. Hille, and P.P. Dijkwel. 2005. Ethylene-induced leaf senescence depends on age-related changes and OLD genes in Arabidopsis. J. Expt. Bot. 56:2915-2923. Jones, M.L., E.S. Kim, and S.E. Newman. 2001. Role of ethylene and 1-MCP in flower development and petal abscission in zonal geraniums. HortScience 36:1305-1309. Joyce, D.C. and A.J. Shorter. 1994. High-temperature conditioning reduces hot water treatment injury of ‘Kensington Pride’ mango fruit. HortScience 29:1047-1051. Kautsky, H. and A. Hirsch. 1931. Neue versuche zur kohlenstoffassimilation. Naturwissenschaften 19:964. Kader, A.A. 2002. Postharvest biology and technology: an overview, p. 39-47. In: A.A. Kader (de.). Postharvest technology of horticultural crops (3rd ed.). University of California Agriculture and Natural Resources Publication, California. Kim, H.J., R. Craig, and K.M. Brown. 2006. Genetic variation in ethylene responsiveness of regal pelargonium. J. Amer. Soc. Hort. Sci. 131:122-126 Klapwijk, D. and H.J.H. van der Spek. 1988. Development rate, flower growth and production of anthurium. Neth. J. Agr. Sci. 36:219-224. Kubatsch, A. and H. Grüneberg. 2007. The effect of low light intensity and temperature on growth of Schefflera arboricola in interior landscapes. HortScience 42:65-67. Kumar N., G.C. Srivastava, and K. Dixit. 2008. Flower bud opening and senescence in roses (Rosa hybrida L.). Plant Growth Regulat. 55:81-99. Kura-Hotta, M., Satoh, and A. Katoh. 1987. Relationship between photosynthesis and chlorophyll content during leaf senescence of rice seedlings. Plant Cell Physiol. 28:1321-1329. Lafuente, M.T. and J.M. Sala. 2002. Abscisic acid levels and the influence of ethylene, humidity and storage temperature on the incidence of postharvest rindstaning of 'Navelina' orange (Citrus sinensis L. Osbeck) fruit. Postharvest Biol. Technol. 25: 49-57. Leonard, R.T. and T.A. Nell. 2000. Effects of production and postproduction factors on longevity and quality of kalanchoe. Acta Hort. 518:121-124. Lim, P.O., H.R. Woo., and H.G. Nam. 2003. Molecular genetics of leaf senescence in Arabidopsis. Trends Plant Sci. 8:272-278. Macnish A.J., D.E. Irving, D.C. Joyce, V. Vithanage, A.H. Wearing, and A.T. Lisle. 2004. Variation in ethylene-induced postharvest flower abscission responses among Chamelaucium Desf. (Myrtaceae) genotypes. Scientia Hort. 102:415-432. Macnish, A.J., R.T. Leonard, and T.A. Nell. 2011. Sensitivity of potted foliage plant genotypes to ethylene and 1-methylcyclopropene. HortScience 46:1127-1131. Marousky, F.J. and B.K. Harbaugh. 1979. Interactions of ethylene, temperature, light, and CO2 on leaf and stipule abscission and chlorosis in Philodendron scandens subsp. oxycardium. J. Amer. Soc. Hort. Sci. 104:876-880. Marousky, F.J. 1979. Effects of ethylene in combination with light, temperature and carbon dioxide on leaf abscission in Fittonia verschaffeltii (Lem.) coem. var. Argyroneura (coem.) Nichols. Proc. Fla. State Hort. Soc. 92:320-321. Marousky, F.J. and B.K. Harbaugh. 1981. Influence of temperature, light, and ethylene on seedlings of geranium (Pelargonium ×hortorum Bailey) during simulated shipping conditions. J. Amer. Soc. Hort. Sci. 106:527-530. Martyn A.J., A.W.D. Larkum, R. McConchie, and C.A. Offord. 2008. Photoinhibition and changes in pigments associated with bract browning in waratahs (Telopea spp., Proteaceae). J. Hort. Sci. Biotechnol. 83:367-373. Mayak, S. and H. Halevy. 1970. Cytokinin activity in rose petals and its relation to senescence. Plant Physiol. 46:497-499. Mena-Petite A., A. Robredo, S. Alcalde, M. K. Duñabeitia, M. B. González-Moro, M. Lacuest, A. Muñoz-Rueda. 2003. Gas exchange and chlorophyll fluorescence responses of Pinus radiate D. Don seedlings during and after several storage regimes and their effects on post-planting survival. Trees 17:133-143. Michelle, L.J. 2002. Ethylene responsiveness in carnation styles is associated with stigma receptivity. Sex Plant Reprod. 15:107-112. Miller, S. H. and R. D. Heins. 1986. Factors influencing premature cyathia abscission in poinsettia ‘Sandrosa’. Physiol. Plant 88:420-426. Mohan R., H.Y. and I.V.R. Rao. 1984. Physiology of flower bud growth and opening. Proc. Indian Acad. Sci. 93:253-274. Mor, Y., H. Spiegelstein, and A.H. Halevy. 1983. Inhibition of ethylene biosynthesis in carnation petals by cytokinin. Plant Physiol. 71:541-546. Müller, R., A.S. Andersen, and S. Margrethe. 1998. Differences in display life of miniature potted roses (Rosa hybrida L.). Scientia Hort. 76:59-71. Müller, R., B.M. Stummann, and M. Serek. 2000a. Characterization of an ethylene receptor family with differential expression in rose (Rosa hybrida L.) flowers. Plant Cell Rpt. 19:1232-1239. Müller, R., S. Lind-Iversen, B.M. Stummann, and M. Serek. 2000b. Expression of genes for ethylene biosynthetic enzymes and an ethylene receptor in senescing flowers of miniature potted roses. J. Hort. Sci. Biotechnol. 75:12-18. Mutui, T.M., H. Mibus, and M. Serek. 2007. Influence of thidiazuron, ethylene, abscisic acid and dark storage on the expression levels of ethylene receptors (ETR) and ACC synthase (ACS) genes in Pelargonium. Plant Growth Regulat. 53:87-96. Nell, T.A. 1993. Flowering potted plants: prolonging shelf performance: postproduction care handling. Ball Publishing, Batavia, NY. USA Nowak, J. and R. M. Rudnicki. 1990. Postharvest handling and storage of cut flowers, florist greens, and potted plants. Timber Press, Portland, OR. USA. Paull, R.E. 1982. Anthurium (Anthurium andreaenum André) vase life evaluation criteria. HortScience 17:606-607. Paull, R.E. 1987. Effect of storage duration and temperature on cut anthurium flowers. HortScience 22:459-460. Paull, R.E. and T. Goo. 1985. Ethylene and water stress in the senescence of cut anthurium flowers. J. Amer. Soc. Hort. Sci. 110:84-88. Paull, R.E., N.J. Chen, and J. Deputy. 1985. Physiological changes associated with senescence of cut anthurium flowers. J. Amer. Soc. Hort. Sci. 110:156-162. Park, S.A., Y.J. Kwon, M.M. Oh, and K.C. Son. 2011. Effects of STS and 1-MCP on flower opening and lifespan of potted Kalanchoe blossfeldiana exported to Japan. Kor. J. Hort. Sci. Technol. 29:43-47. Prange, R., B. Daniels-Lake, J.C. Jeong, and M. Binns. 2005. Effects of ethylene and 1-methylcyclopropene on potato tuber sprout control and fry color. Am. J. Potato Res. 82:123-128. Promyou, S., S. Ketsa, and W.G. van Doorn. 2012. Salicylic acid alleviates injury in anthurium (Anthurium andraeanum L.) flowers. Postharvest Biol. Technol. 64:104-110. Prince, T. A., M. S. Cunningham, and J. S. Peary. 1987. Floral and foliar quality of potted easter lilies after STS or Phenidone application, refrigerated storage, and simulated shipment. J. Amer. Soc. Hort. Sci. 112:469-619. Ranwala A.P. and W.B. Miller. 1998. Gibberellin 4+7, benzyladenine, and supplemental light improve postharvest leaf and flower quality of cold-stored ‘Stargazer’ hybrid lilies. J. Amer. Soc. Hort. Sci. 123:563-568. Rapaka, V.K., J.E. Faust, J.M. Dole, and E.S. Runkle. 2008. Endogenous carbohydrate status affects postharvest ethylene sensitivity in relation to leaf senescence and adventitious root formation in Pelargonium cuttings. Postharvest Biol. Technol. 48:272-282. Reyes-Arribas, T., J.E. Barrett, D.J. Huber, T.A. Nell, and D.G. Clark. 2001. Leaf senescence in non-yellowing cultivar of chrysanthemum (Dendranthema grandiflora). Physiol. Plant. 111:540-544. Roitsch, T. and R. Ehneβ. 2000. Regulation of source/sink relations by cytokinins. Plant Growth Regulat. 32:359-367. Roitsch, T., R. Ehneβ, M. Goetz, B. Hause, M. Hofmann, and A.K. Sinha. 2000. Regulation and function of extracellular invertase from higher plants in relation to assimilate partitioning, stress responses and sugar signalling. J. Plant Physiol. 27:815-825. Salunkhe, D. K., N. R. Bhat, and B. B. Desai. 1990. Postharvest biotechnology of flowers and ornamental plants. Springrt-Verlag, Berlin Heidelberg, Germany. Sankat, C.K. and S. Mujaffar. 1994. Water balance in cut anthurium flowers in storage and its effect on quality. Acta Hort. 368:723-732. Schenk, R.D. and W. Brundert. 1981. Temperature influss bei Anthurium andreanum hybride. Dtsch. Gartbau. 35:2064-2065. Schotsmans, W.C., R.K. Prange, and B.M. Binder. 2009. 1-Methylcyclopropene: mode of action and relevance in postharvest horticulture research. Hort. Rev. 35:263-313. Serek, M. and M.S. Reid. 2000. Ethylene and postharvest performance of potted kalanchoë. Postharvest Biol. Technol. 18:43-48. Serek, M., E.C. Sisler, and M.S. Reid. 1994a. A volatile ethylene inhibitor improves the postharvest life of potted roses. J. Amer. Soc. Hort. Sci. 119:572-577. Serek, M., E.C. Sisler, and M.S. Reid. 1994b. Novel gaseous ethylene binding inhibitor prevents ethylene effects in potted flowering plants. J. Amer. Soc. Hort. Sci. 119:1230-1233. Serek, M., E.C. Sisler, and M.S. Reid. 1995. Effects of 1-MCP on the vase life and ethylene responses of cut flowers. Plant Growth Regulat. 16:93-97. Serek, M., E.J. Woltering, E.C. Sisler, S. Frello, and S. Sriskandarajah. 2006. Controling ethylene responses in flowers at receptor level. Biotechnol. Adv. 24:368-381. Shirakawa, T., R.R. Dedolph, and D.P. Watson. 1964. N-6-Benzyladenine effects on chilling injury, respiration, and keeping quality of Anthurium andraeanum. Proc. Amer. Soc. Hort. Sci. 85:642-646. Sisler, E.C., and M. Serek. 1997. Inhibitors of ethylene responses in plants at the receptor level: Recent developments. Physiol. Plant. 100:577-582. Sisler, E.C., M. Serek, E. Dupille, and R. Goren. 1999. Inhibition of ethylene responses by 1-methylcyclopropene and 3-methylcyclopropene. Plant Growth Regulat. 27:105-111. Sisler, E.C., T. Alwan, R. Goren, M. Serek, and A. Apelbaum. 2003. 1-substituted cyclopropenes: Effective blocking agents for ethylene action in plants. Plant Growth Regulat. 40:233-228. Skog, L.J., T. Blom, B. Schaefer, B. Digweed, H. Fraser, and W. Brown. 2001. A survey of ethylene contamination in Ontario’s floriculture industry and the evaluation of 1-methylcyclopropene and an ethylene absorber as potential solutions. Acta Hort. 543:55-62. Song, J., L. Fan, C.F. Forney, and M.A. Jorden. 2001. Using volatile emission and chlorophyll fluorescence as indicators of heat injury in apples. J. Amer. Soc. Hort. Sci. 126:771-777. Sterling, B. and P. Molenaar. 1986. The influence of time and temperature during simulated shipment on quality of pot plants. Acta Hort. 181:429-434. Su, W. and S.H. Howell. 1992. A single genetic locus, ckr1, defines Arabidopsis mutants in which root growth is resistant to low concentrations of cytokinins. Plant Physiol. 99:1569-1574. Sun, B., H. Yan, L. Liu, J. Wei, and Q. Wang. 2012. Effect of 1-MCP treatment on postharvest quality characters, antioxidants and glucosinolates of Chinese kale. Food Chem. 131:519-526. Szendel, A.J and E. Weryszko. 1973. Investgation on structure of flowers and inflorescences of the Anthurium andraeanum Hort., non Linden. Acta Agrobot. 16:251-256. Tetley, R.M. and K.V. Thimann. 1974. The metabolism of oat leaves during senescence. Plant Physiol. 54:294-303. Thaxton, D.R., J.W. Kelly, and J.J. Prett. 1988. Control of Hibiscus rosa-sinensis L. bud abscission during shipping. Scientia Hort. 34:131-137. Thomas, H. 1997. Chlorophyll: A symptom and regulator of plastid development. New Phytol. 136:163-181. Tian, S. P., B.Q. Li, and Y. Xu. 2005. Effects of O2 and CO2 concentrations on physiology and quality of litchi fruit in storage. Food Chemistry. 91:659-663. Tijskens, L.M.M., E.C. Otma, and O. van Kooten. 1994. Photosystem II quantum yield as measure of radical scavengers in chilling injury in cucumber fruits and bell peppers. A static, dynamic and stastical model. Planta 194:478-486. Tijskens, L.M.M, M. Sloof, E.C. Wilkinson, and W.G. van Doorn. 1996. A model of the effects of temperature and time on the acceptability of potted plants stored in darkness. Postharvest Biol. Technol. 8:283-305. Tshwenyane, S.O and C.F.H. Bishop. 2009. The effect of uniform and fluctuating temperature on the respiration and vase life of ‘Akito’ roses. Acta Hort. 847:265-268. van Doorn, W.G. 2004. Is petal senescence due to sugar starvation? Plant Physiol. 134:35-52. van Herk, M., M. van Koppen, S. Smeding, C.J. van der Elzen, N. van Rosmalen, J. van Dijk, A. Lont, and J. van Spingelen. 1998. Cultivation guide anthurium. Anthura B.V., Bleiswijk, Netherlands. van Kooten, O., M. Mensink, E. Otma, and W. van Doorn. 1991. Determination of the physiological state of potted plants and cut flowers by modulated chlorophyll fluorescence. Acta Hort. 298:83-91 Waithaka, K., L.L. Dodge, and M.S. Reid. 2001. Carbohydrate traffic during opening of gladiolus florets. Acta Hort. 543:217-226. Walker, P.N. and M.R. Smith. 1978. Machine logic requirements of an anthurium harvester. Trans. Amer. Soc. Agri. Eng. 21:1040-1044. Wang, Y.T. 2007. Temperature, duration in simulated shipping, and termal acclimatization on the development of chilling injury and subsequent flowering of Phalaenopsis. J. Amer. Soc. Hort. Sci. 132:202-207. Watson, D.P. and T. Shirakawa. 1967. Gross morphology related to shelf-life of anthurium flowers. Hawaii Farm Sci. 16:1-3. Watkins, C.B., 2006. The use of 1-methylcyclopropene (1-MCP) on fruits and vegetables. Biotechnol. Adv. 24:389-409. Woltering, E.J. 1987. Effects of ethylene on ornamental pot plants: A classification. Scientia Hort. 31:283-294. Woltering E.J. and H. Harkema. 1987. Effect of exposure time and temperature on response of carnation cut flowers to ethylene. Acta Hort. 216:255-262. Wu. M.J., W.G. van Doorn and M.S. Reid. 1991. Variation in the senescence of carnation (Dianthus caryophyllus L.) cultivars. I. Comparison of sensitivity to exogeneous ethylene and of ethylene binding. Scientia Hort. 48:99-107. Wullschleger, S.D., P.J. Hanson, and C.A. Gunderson. 1992. Assesing the influence of exogenous ethylene on electron transport and fluorescence quenching in leaves of Glycine max. Environ. Expt. Bot. 32:449-455. Yamauchi N., S. Iida, T. Minamide, and T. Iwada. 1986. Polar lipids content and their fatty acid composition with reference to yellowing of stored spinach leaves. J. Jpn. Soc. Hort. Sci. 55:355-362. Yamauchi N., S. Iida, T. Minamide, and T. Iwada. 1987. Localization of lipolytic acyl hydrolase in chloroplast of stored spinach leaves. Engei Gakkai Zasshi 55:510-515. Yang, S. 1985. Biosynthesis and action of ethylene. Hortscience 20:41-45. Yoshida, S. and C. Matsuura-Endo. 1991. Comparison of temperature dependency of tonoplast proton translocation between plants sensitive and insensitive to chilling. Plant Physiol. 89:634-642. Yuan, G., B. Sun, J. Yuan, and Q. Wang. 2010. Effect of 1-methylcyclopropene on shelf life, visual quality, antioxidant enzymes and health-promoting compounds in broccoli florets. Food Chem. 118:774-781.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80393-
dc.description.abstract"火鶴花為天南星科花燭屬(Anthurium)的多年生草本花卉。臺灣氣候溫暖濕潤,地理位置優越,毗鄰日韓等國,且冬季生產成本較低,具有外銷火鶴花盆花之潛力。而貯運時乙烯可能降低某些盆花作物的貯後品質。本研究探討貯運時間及環境中乙烯對火鶴花盆花貯後品質之影響,並利用1-methylcyclopropene (1-MCP)前處理期能維護其外銷之貯後品質。 貯運時不同品種火鶴花盆花對貯運期間及乙烯反應不同。取四個品種火鶴花盆花於15℃的環境中模擬黑暗貯運5或10天,期間處理0或5 µL·L-1乙烯,結果顯示與未貯運相比,貯後第14天之‘Million Flowers Red’及‘Red Winner’葉片黃化率較高、‘Red Explosion’及‘Fancy Fever’肉穗花序褐化率顯著增加,‘Red Explosion’具觀賞價值花朵顯著下降。於5 µL·L-1乙烯處理下進行貯運5天,僅火鶴花盆花‘Red Winner’貯後第14天不具商品價值,耐貯性差,對乙烯較敏感。品種間乙烯之耐受性由高至低依序為‘Fancy Fever’ > ‘Million Flowers Red’ ≥ ‘Red Explosion’ > ‘Red Winner’,耐貯性依序為‘Million Flowers Red’ > ‘Fancy Fever’ > ‘Red Winner’ > ‘Red Explosion’。 將乙烯敏感之火鶴花‘Red Winner’與市場接受度較高之‘Success Red’於15℃的環境中黑暗貯運10天,期間處理0、1、3或5 µL·L-1乙烯進行比較。結果顯示‘Success Red’貯後品質不受1-5 µL·L-1乙烯影響。隨乙烯濃度從1到5 µL·L-1,使‘Red Winner’佛焰苞藍化率、壞疽萎凋率增加,肉穗花序褐化率增加,進而貯後品質下降。處理5 µL·L-1乙烯會使火鶴花‘Red Winner’佛焰苞貯後葉綠素螢光參數Fv/Fm值顯著下降,並於第14天無觀賞品質。 貯運前處理乙烯作用抑制劑1-MCP或許可保護植株免於乙烯造成的危害。前處理6小時0, 300, 600, 900 和1200 nL·L-1之1-MCP後,於15℃黑暗貯運10天期間處理1 μL·L-1乙烯,結果顯示300-1200 nL·L-1之1-MCP可保護火鶴花‘Red Winner’免於受到1 μL·L-1乙烯逆境之危害,並維持佛焰苞於乙烯處理後之Fv/Fm值。進一步將黑暗貯運期間之乙烯濃度從1 μL·L-1增至3或5 μL·L-1,前處理6小時0, 300, 600 和900 nL·L-1之1-MCP。結果顯示,處理300 nL·L-1之1-MCP無法有效維持火鶴花盆花貯後品質,而600-900 nL·L-1 之1-MCP濃度可減輕外觀品質下降情形。儘管如此,處理300 nL·L-1之1-MCP火鶴花盆花觀賞品質仍較僅黑暗貯運者佳。貯運期間1 μL·L-1之乙烯濃度下,燻蒸6小時1-MCP之有效濃度為300 nL·L-1。而隨著乙烯濃度增至3或5 μL·L-1時,1-MCP之有效濃度為增至600 nL·L-1。 延長低濃度1-MCP處理的時間,或許可達到和高濃度1-MCP處理短時間相同之效果。試驗於15℃黑暗貯運14天期間處理3 μL·L-1乙烯,並於貯運前不處理或分別處理2、4及6小時之500、1500和2500 nL.L-1之1-MCP。當處理4小時1500 nL.L-1之1-MCP (6000 nL.L-1.h)時,顯著維持火鶴花‘Red Winner’貯後第14天之觀賞品質,保護效果即達到飽和。但當1-MCP與時間之濃度處理低於4小時500 nL.L-1(2000 nL.L-1.h)或高於6小時1500 nL.L-1(9000 nL.L-1.h)之最適濃度時,保護效果不理想,與對照組無顯著差異。 由本研究可知,火鶴花盆花之耐貯性及乙烯耐受性依品種而異,其中火鶴花‘Red Winner’為乙烯最敏感之品種。貯運期間乙烯濃度為0-5 μL·L-1的環境下,貯運前處理4小時600 nL·L-1 之1-MCP可有效維持不耐貯且乙烯敏感之火鶴花盆花‘Red Winner’之貯後品質。"zh_TW
dc.description.provenanceMade available in DSpace on 2022-11-24T03:05:43Z (GMT). No. of bitstreams: 1
U0001-2502202101494800.pdf: 8154935 bytes, checksum: 011f59c3dadc4cf97c15e373e22f35a4 (MD5)
Previous issue date: 2021
en
dc.description.tableofcontents致謝(Acknowledgement) i 摘要 ii Abstarct iv 目錄 vii 表目錄 ix 圖目錄 x 前言(Introduction) 1 前人研究(Literature Review) 3 一、火鶴花之形態特徵 3 二、貯運天數及溫度對盆花貯後品質之影響 4 三、貯運時乙烯對盆花貯後品質之影響 6 (一) 不同種/品種盆花之乙烯敏感度 6 (二) 乙烯危害之徵狀 8 (三) 影響乙烯危害程度之因子 10 (四) 乙烯對葉綠素螢光之影響 14 四、1-Methylcyclopropene (1-MCP)對盆花及觀葉作物之影響 16 (一) 1-MCP簡介 16 (二) 影響1-MCP處理效果之因子 16 材料與方法(Materials and Methods) 19 一、試驗設計 19 試驗一、貯運時間及貯運時乙烯濃度對四個品種火鶴花盆花貯後品質之影響 19 試驗二、貯運時乙烯濃度對火鶴花‘Red Winner’及‘Success Red’盆花貯後品質的影響 21 試驗三、貯運前處理1-MCP對火鶴花‘Red Winner’貯後品質之影響 23 試驗四、1-MCP前處理及貯運時乙烯對火鶴花‘Red Winner’貯後品質之影響 24 試驗五、貯運時乙烯與貯運前1-MCP濃度及時間對火鶴花盆花‘Red Winner’貯後品質之影響 26 二、統計分析 27 結果(Results) 28 試驗一、貯運時間及貯運時乙烯濃度對四個品種火鶴花盆花貯後品質之影響 28 試驗二、貯運時乙烯濃度對火鶴花‘Red Winner’及‘Success Red’盆花貯後品質的影響 30 試驗三、貯運前處理1-MCP對火鶴花‘Red Winner’貯後品質之影響 32 試驗四、1-MCP前處理及貯運時乙烯對火鶴花‘Red Winner’貯後品質之影響 34 試驗五、貯運時乙烯與貯運前1-MCP濃度及時間對火鶴花盆花‘Red Winner’貯後品質之影響 36 討論(Discussion) 84 試驗一、貯運時間及貯運時乙烯濃度對四個品種火鶴花盆花貯後品質之影響 84 試驗二、貯運時乙烯濃度對火鶴花‘Red Winner’及‘Success Red’盆花貯後品質的影響 87 試驗三、貯運前處理1-MCP對火鶴花‘Red Winner’貯後品質之影響 89 試驗四、1-MCP前處理及貯運時乙烯對火鶴花‘Red Winner’貯後品質之影響 90 試驗五、貯運時乙烯與貯運前1-MCP濃度及時間對火鶴花盆花‘Red Winner’貯後品質之影響 93 綜合討論及結論(General Discussion and Conclusions) 95 參考文獻(References) 97
dc.language.isozh-TW
dc.subject火鶴花zh_TW
dc.subject黑暗貯運zh_TW
dc.subject葉綠素螢光zh_TW
dc.subject乙烯zh_TW
dc.subject1-甲基環丙烯zh_TW
dc.subjectchlorophyll fluorescenceen
dc.subjectethyleneen
dc.subjectAnthuriumen
dc.subjectdark storageen
dc.subject1-methylcyclopropeneen
dc.title1-MCP前處理對火鶴花盆花貯後品質之影響zh_TW
dc.titleEffect of 1-Methylcyclopropene Pretreatment on Poststorage Quality in Potted Anthuriumsen
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee張耀乾(Hsin-Tsai Liu),許富鈞(Chih-Yang Tseng),沈榮壽
dc.subject.keyword1-甲基環丙烯,葉綠素螢光,黑暗貯運,火鶴花,乙烯,zh_TW
dc.subject.keyword1-methylcyclopropene,chlorophyll fluorescence,dark storage,Anthurium,ethylene,en
dc.relation.page108
dc.identifier.doi10.6342/NTU202100755
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2021-07-19
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept園藝暨景觀學系zh_TW
顯示於系所單位:園藝暨景觀學系

文件中的檔案:
檔案 大小格式 
U0001-2502202101494800.pdf
授權僅限NTU校內IP使用(校園外請利用VPN校外連線服務)
7.96 MBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved