Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature

碩士 === 國立清華大學 === 生命科學系 === 89 === Phalaenopsis frequently suffer from chilling injury under low temperature. The chilling injury may cause leaf chlorosis and growth retardation. Chilling may also result in plant death and economic loss. To gain more insights of molecular mechanisms of...

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Main Author: 陳雪芬
Other Authors: 林彩雲
Format: Others
Language:zh-TW
Published: 2001
Online Access:http://ndltd.ncl.edu.tw/handle/90521240680024312876
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spelling ndltd-TW-089NTHU01050432016-01-29T04:33:41Z http://ndltd.ncl.edu.tw/handle/90521240680024312876 Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature 探討低溫下耐寒及不耐寒蝴蝶蘭基因表現的差異 陳雪芬 碩士 國立清華大學 生命科學系 89 Phalaenopsis frequently suffer from chilling injury under low temperature. The chilling injury may cause leaf chlorosis and growth retardation. Chilling may also result in plant death and economic loss. To gain more insights of molecular mechanisms of chilling tolerance, genes possibly associate with low temperature condition in Phalaenopsis were isolated using the cDNA subtraction method. Chilling-resistant TS97 and chilling-sensitive TS365 plants were treated with either 4℃/dark (TS97-4℃ & TS365-4℃) or 25℃/dark (TS97-25℃ & TS365-25℃), but control plants were in normal condition (TS97-L & TS365-L). After two days, total RNA was isolated from leaves and used for cDNA subtraction. Partial cDNA fragments of catalase、polyubiquitin glyceraldehyde-3-phosphate dehydrogenase and ATP/ADP translocator genes were obtained. It was reported that some antioxidant enzymes were induced at low temperature. So we focused on the expression of catalase in different conditions. The catalase mRNA levels were analyzed with Northern blots. We found that the expression of TS365 catalase mRNA was significant reduced at 4℃ in the dark. At 4℃ in the dark TS365 catalase mRNA level was also less than that of TS97. Moreover, the catalase activity in TS365 was lower than that in TS97 at 4℃ in the dark. Although catalase was not induced by low temperaure, a significant reduction was found in the expression of TS365 at 4℃. The reduction of catalase gene expression in TS365 maybe related to chilling injury. Abstract-----------------------------------------ii 謝誌--------------------------------------------iii 名詞縮寫-----------------------------------------iv 前言----------------------------------------------1 材料與方法---------------------------------------10 結果---------------------------------------------20 討論---------------------------------------------25 參考文獻-----------------------------------------31 表-----------------------------------------------40 圖-----------------------------------------------45 附錄---------------------------------------------56 林彩雲 2001 學位論文 ; thesis 65 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 國立清華大學 === 生命科學系 === 89 === Phalaenopsis frequently suffer from chilling injury under low temperature. The chilling injury may cause leaf chlorosis and growth retardation. Chilling may also result in plant death and economic loss. To gain more insights of molecular mechanisms of chilling tolerance, genes possibly associate with low temperature condition in Phalaenopsis were isolated using the cDNA subtraction method. Chilling-resistant TS97 and chilling-sensitive TS365 plants were treated with either 4℃/dark (TS97-4℃ & TS365-4℃) or 25℃/dark (TS97-25℃ & TS365-25℃), but control plants were in normal condition (TS97-L & TS365-L). After two days, total RNA was isolated from leaves and used for cDNA subtraction. Partial cDNA fragments of catalase、polyubiquitin glyceraldehyde-3-phosphate dehydrogenase and ATP/ADP translocator genes were obtained. It was reported that some antioxidant enzymes were induced at low temperature. So we focused on the expression of catalase in different conditions. The catalase mRNA levels were analyzed with Northern blots. We found that the expression of TS365 catalase mRNA was significant reduced at 4℃ in the dark. At 4℃ in the dark TS365 catalase mRNA level was also less than that of TS97. Moreover, the catalase activity in TS365 was lower than that in TS97 at 4℃ in the dark. Although catalase was not induced by low temperaure, a significant reduction was found in the expression of TS365 at 4℃. The reduction of catalase gene expression in TS365 maybe related to chilling injury. Abstract-----------------------------------------ii 謝誌--------------------------------------------iii 名詞縮寫-----------------------------------------iv 前言----------------------------------------------1 材料與方法---------------------------------------10 結果---------------------------------------------20 討論---------------------------------------------25 參考文獻-----------------------------------------31 表-----------------------------------------------40 圖-----------------------------------------------45 附錄---------------------------------------------56
author2 林彩雲
author_facet 林彩雲
陳雪芬
author 陳雪芬
spellingShingle 陳雪芬
Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
author_sort 陳雪芬
title Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
title_short Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
title_full Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
title_fullStr Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
title_full_unstemmed Studies on the differences of gene expression in chilling-resistant and chilling-sensitive Phalaenopsis plants at low temperature
title_sort studies on the differences of gene expression in chilling-resistant and chilling-sensitive phalaenopsis plants at low temperature
publishDate 2001
url http://ndltd.ncl.edu.tw/handle/90521240680024312876
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