Luo Keming, Zhang Guofang, Deng Wei, Luo Fengtao, Qiu Kun, Pei Yan
Biotechnology Research Center, Southwest University, Beibei, Chongqing, 400715, China.
Plant Cell Rep. 2008 Apr;27(4):707-17. doi: 10.1007/s00299-007-0482-9. Epub 2007 Dec 8.
Previous studies have shown that mRNA and protein encoded by late embryogenesis-abundant (LEA) gene D113 from Gossypium hirsutum L. accumulate at high levels in mature seeds and also in response to abscisic acid (ABA) in young embryo. In this study, we studied the expression of four promoter 5' deletion constructs (-1383, -974, -578 and -158) of the LEA D113 gene fused to beta-glucuronidase (GUS). GUS activity analysis revealed that the -578 promoter fragment was necessary to direct seed-specific GUS expression in transgenic tobacco plants (Nicotiana tabacum L.). To further investigate the expression pattern of LEA D113 promoter under environmental stresses, 2-week-old transgenic tobacco seedlings were exposed to ABA, dehydration, high salinity and cold treatments. GUS activity in the seedlings was quantified fluorimetrically, and expression was also observed by histochemical staining. An apparent increase in GUS activity was found in plants harboring constructs -1383, -974 and -578 after 24 h of ABA or high-salinity treatments, as well as after 10 days of dehydration. By contrast, only a slight increase was observed in all the three lines after cold treatment. Virtually no change in expression was found in construct -158 in response to dehydration, salinity and cold, but there was a moderate response to ABA, suggesting that the region between -574 and -158 was necessary for dehydration- and salinity-dependent expression, whereas ABA-responsive cis-acting elements might be located in the -158 region of the promoter.
先前的研究表明,来自陆地棉的晚期胚胎丰富(LEA)基因D113编码的mRNA和蛋白质在成熟种子中大量积累,并且在幼胚中也会响应脱落酸(ABA)而积累。在本研究中,我们研究了与β-葡萄糖醛酸酶(GUS)融合的LEA D113基因的四个启动子5'缺失构建体(-1383、-974、-578和-158)的表达。GUS活性分析表明,-578启动子片段对于在转基因烟草植株(烟草)中指导种子特异性GUS表达是必需的。为了进一步研究LEA D113启动子在环境胁迫下的表达模式,将2周龄的转基因烟草幼苗进行ABA、脱水、高盐和冷处理。通过荧光法对幼苗中的GUS活性进行定量,并且还通过组织化学染色观察表达情况。在ABA或高盐处理24小时后以及脱水10天后,发现含有构建体-1383、-974和-578的植株中GUS活性明显增加。相比之下,冷处理后在所有三个株系中仅观察到轻微增加。构建体-158在响应脱水、盐度和冷处理时表达几乎没有变化,但对ABA有适度响应,这表明-574至-158之间的区域对于依赖脱水和盐度的表达是必需的,而ABA响应顺式作用元件可能位于启动子的-158区域。