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一种脂质转移蛋白基因BG - 14在无芒雀麦(Bromus inermis)中受非生物胁迫、脱落酸、茴香霉素和鞘氨醇的差异调控。

A lipid transfer protein gene BG-14 is differentially regulated by abiotic stress, ABA, anisomycin, and sphingosine in bromegrass (Bromus inermis).

作者信息

Wu Guohai, Robertson Albert J, Liu Xunjia, Zheng Ping, Wilen Ronald W, Nesbitt Nicole T, Gusta Lawrence V

机构信息

Plant Science Department, University of Saskatchewan, 51 Campus Drive, Saskatoon, Saskatchewan, S7N 5A8, Canada.

出版信息

J Plant Physiol. 2004 Apr;161(4):449-58. doi: 10.1078/0176-1617-01259.

Abstract

The objective was to investigate the expression of a lipid transfer protein gene (LTP) both in bromegrass (Bromus inermis) cells and seedlings after exposure to abiotic stresses, abscisic acid (ABA), anisomycin, and sphingosine. A full-length cDNA clone BG-14 isolated from bromegrass suspension cell culture encodes a polypeptide of 124 amino acids with typical LTP characteristics, such as a conserved arrangement of cysteine residues. During active stages of cold acclimation LTP expression was up-regulated, whereas at the final stage of cold acclimation LTP transcript level declined to pre-acclimation level. A severe drought stress induced the LTP gene; yet, LTP expression doubled 3 d after re-hydration. Both temperature and heat shock duration influence LTP induction; however temperature is the primary factor. Treatment with NaCl stimulated accumulation of LTP mRNA within 15 min and the transcripts remained at elevated levels for the duration of the salinity stress. Most interestingly, Northern blots showed LTP was rapidly induced not only by ABA, but also by anisomycin and sphingosine in suspension cell cultures. Of the three chemicals, ABA induced the most rapid and highest response in LTP expression as well as highest freezing tolerance, whereas sphingosine was the least active for both LTP expression and freezing tolerance.

摘要

目的是研究脂质转移蛋白基因(LTP)在无芒雀麦(Bromus inermis)细胞和幼苗暴露于非生物胁迫、脱落酸(ABA)、茴香霉素和鞘氨醇后的表达情况。从无芒雀麦悬浮细胞培养物中分离出的全长cDNA克隆BG-14编码一个由124个氨基酸组成的多肽,具有典型的LTP特征,如半胱氨酸残基的保守排列。在冷驯化的活跃阶段,LTP表达上调,而在冷驯化的最后阶段,LTP转录水平下降至驯化前水平。严重干旱胁迫诱导LTP基因表达;然而,复水3天后LTP表达增加了一倍。温度和热激持续时间均影响LTP的诱导;然而,温度是主要因素。用NaCl处理在15分钟内刺激了LTP mRNA的积累,并且在盐胁迫期间转录本水平保持升高。最有趣的是,Northern杂交显示LTP不仅在悬浮细胞培养物中被ABA快速诱导,还被茴香霉素和鞘氨醇快速诱导。在这三种化学物质中,ABA在LTP表达中诱导的反应最快、最高,同时冷冻耐受性也最高,而鞘氨醇在LTP表达和冷冻耐受性方面活性最低。

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