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研究生:廖于瑄
研究生(外文):Yu-Hsuan Liao
論文名稱:不同水稻品種之穗上發芽與種子休眠性的調查
論文名稱(外文):Characterization of Pre-harvest Sprouting and Seed Dormancy in Different Rice Varieties
指導教授:陳凱儀
口試委員:董致韡蔡育彰
口試日期:2019-07-23
學位類別:碩士
校院名稱:國立臺灣大學
系所名稱:農藝學研究所
學門:農業科學學門
學類:一般農業學類
論文種類:學術論文
論文出版年:2019
畢業學年度:107
語文別:中文
論文頁數:41
中文關鍵詞:水稻穗上發芽種子休眠α-澱粉酶活性澱粉酶SD法
DOI:10.6342/NTU201903845
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種子休眠性和穗上發芽特性為兩個相關的水稻性狀,多數品種具有易穗上發芽則種子休眠性低、或不易穗上發芽而種子休眠性高之特性。本研究的目標為篩選不易穗上發芽且無種子休眠性之水稻品種,以因應一期作收穫時期異常豪大雨發生頻度加劇的情境、且能於後續二期作保持秧苗生產所需之高發芽率。本研究首先選用 196 個稉稻品種,於民國 107 年一期作時期種植於臺大農場,調查各品種的種子休眠性及穗上發芽之外表型,以期找尋休眠性低且不易穗上發芽之水稻品種。而進行種子休眠以及穗上發芽特性的調查通常需要大量費工的種子計數,故我們對於能找到替代發芽種子計數之方法具有高度的興趣。本研究另以 60 個水稻品種檢測不同泡水天數下種子之發芽率及發芽勢,並挑選 32 個稉稻品種進行 α-澱粉酶的活性測定,並計算種子發芽率與α-澱粉酶活性兩者之間的相關係數,藉以評估利用 α-amylase 活性取代計數種子發芽顆數的可行性,試驗結果可應用在未來種子休眠相關性狀上的研究及後續相關育種選拔工作。
Seed dormancy and pre-harvest sprouting (PHS) are two closely related traits in rice. Varieties prone to PHS usually possess low seed dormancy, and varieties with PHS tolerance tend to have high seed dormancy. The objective of this project is to screen rice cultivars with PHS tolerance but low seed dormancy, in order to find rice genotypes that can reduce yield damage due to more frequently occurred heavy rains around harvesting time of the first cropping season but keep high germination rate of seedling propagation in the subsequently second cropping season for rice. In this study, 196 japonica rice varieties were grown and investigated in the NTU Farm in the first cropping season 2018, in order to find rice varieties with low seed dormancy and high PHS tolerance. Investigation of seed dormancy and PHS traits usually requires a laboriously large number of seed counts. Therefore, we are very interested in finding a method to replace the direct investigation of germination rate. In this study, 60 different rice varieties were tested in different soaking days. The germination rate and germination index were obtained in 60 varieties and the activity of α-amylase was measured in 32 selected japonica rice varieties. The correlation coefficient between the activity of α-amylase and germination rate was calculated to evaluate the feasibility of using α-amylase activity instead of counting the number of germinated seeds. The results can be applied to the research for seed dormancy-related traits and breeding program in the future.
口試委員審定書(i)
誌謝(ii)
中文摘要(iii)
Abstract(iv)
目錄(v)
圖目錄(vi)
表目錄(vii)
第一章 前言(1)
第一節 臺灣水稻品種之休眠相關性狀(1)
第二節 α-amylase與種子發育(2)
第二章 研究目的(4)
第三章 材料與方法(5)
第一節 外表型調查(5)
第二節 種子發芽與α-amylase活性檢定(6)
第四章 結果(9)
第一節 種子休眠相關性狀之外表型調查(9)
第二節 種子發芽與α-amylase活性檢定(10)
第五章 討論(11)
第一節 種子休眠與穗上發芽之相關性(11)
第二節 種子發芽與α-amylase活性之探討(12)
第六章 結論與未來展望(13)
參考文獻(14)
表一、190個水稻品種穗上發芽與種子休眠性之外表型資料(16)
表二、60個水稻品種於一年以上的長期儲存後,泡水七日內每日的發芽率與發芽勢(23)
表三、32 稉稻品種在不同泡水處理天數下的 α-amylase 活性(30)
圖一、不同水稻品種之穗上發芽與種子休眠性的外表型變異分布(31)
圖二、抽穗後第35天收穫種子穗上發芽率及量測種子休眠性發芽率之散佈圖(32)
圖三、抽穗後第42天收穫種子穗上發芽率及量測種子休眠性發芽率之散佈圖(33)
圖四、32稉稻品種在不同天數處理下發芽率 (Gem) 與 α-amylase 活性 (Amy) 之相關性比較(34)
附錄(35)
陳隆澤,張萬來,邱鳳廷。(1980) 水稻品種穗上發芽性及其與休眠性關係之研究。科學發展月刊 8(2):151-161。
葉人豪。(2014) 臺灣水稻種原遺傳歧異度與種子休眠相關外表型之調查。國立臺灣大學農藝學研究所碩士論文。
呂瑋倫。(2017) 兩種水稻種子發芽率替代測量方法的評估。國立臺灣大學農藝學研究所碩士論文。
Akazawa T, Yamaguchi J, Hayashi M (1990) Rice α-amylase and gibberellin action - a personal view. In Gibberellin. Vol. 1. Edited by Takahashi, N., Phinney, B.O. and MacMillan, J. pp. 114-124.
Brown LK, Wiersma AT, Olson EL (2018) Preharvest sprouting and α-amylase activity in soft winter wheat. Journal of cereal science 79: 311-318.
Hagberg S (1960) A rapid method for determining alpha-amylase activity. Cereal Chemistry. 37:218–222.
He D, Yang P (2013) Proteomics of rice seed germination. Front Plant Science.4:246.
Jones RL, Jacobsen JV (1991) Regulation of synthesis and transport of secreted proteins in cereal aleurone. International Review of Cytology. 126: 49-88.
Kang HJ, Hwang IK, Kim KS, and Choi HC. (2006). Comparison of the Physicochemical Properties and Ultrastructure of Japonica and Indica Rice Grains. J. Agric. Food Chem. 2006, 54, 4833−4838 4833
Leopold AC, Glenister R, Cohn MA (1988) Relationship between water content and afterripening in red rice. Physiologia Plantarum 74: 659-662.
Maarten K, Bentsink L, Hilhorst H (2002) Seed dormancy and germination. Current opinion in plant biology 5: 33-36.
McCleary BV, Sheehan H (1987) Measurement of cereal α-amylase: a new assay procedure. Journal of Cereal Science. 6: 237-251.
McKie VA, McCleary BV (2015) A rapid, automated method for measuring α-amylase in pre-harvest sprouted (sprout damaged) wheat. Journal of Cereal Science 64: 70-75.
Ross AS, Walker CE, Booth RI, Orth RA, and Wrigley CW (1987) The Rapid visco-analyzer: a new technique for the estimation of sprout damage. Cereal Foods World 32:827–829.
Seshu DV, Sorrells ME (1986) Genetic studies on seed dormancy in rice. In: Rice genetics. IRRI, Philippines, 369-382.
Veasey EA, Karasawa MG, Santos PP, Rosa MS, Mamani E, Oliveira GCX (2004) Variation in the loss of seed dormancy during after-ripening of wild and cultivated rice species. Annals of Botany 94: 875-882.
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