摘要
为了解厚藤(Ipomoea pes-caprae)脱水素基因IpDHN (GenBank登录号:KX426069)启动子的转录活性和对非生物胁迫和植物激素ABA的响应,通过染色体步移法克隆了IpDHN的上游启动子序列IpDHN-Pro,长度为974 bp。构建IpDHN-Pro调控下GUS转基因载体,转化拟南芥(Arabidopsis thaliana)植株获得IpDHN-Pro::GUS转基因植株并进行GUS染色,验证IpDHN-Pro启动转录活性以及在氯化钠、甘露醇、ABA处理后拟南芥GUS基因表达变化。结果表明,扩增获得的IpDHN-Pro序列包含多个顺式作用元件,包括1个ABRE、3个Myb转录因子结合位点、富含TC的重复序列以及Skn-1基序等。转基因拟南芥GUS染色及qRT-PCR表明该序列可驱动GUS基因在拟南芥稳定表达,且表达受高盐、渗透压及ABA的诱导。这表明IpDHN-Pro是一个盐旱、ABA诱导的启动子序列,可应用于相关的植物抗逆遗传工程研究。
Based on the previous research about Ipomoea pes-caprae cDNA library screening, a full length cDNA encoding dehydrin was characterized and named as IpDHN(GenBank accession: No. KX426069). In order to explore the transcriptional activity of the Ip DHN promoter and the characteristics of this promoter region responding to abiotic stresses and ABA, the 5' upstream sequence of Ip DHN(974 bp), named as IpDHN-Pro was cloned by genomic walking method, and then was subcloned into plant expression vector, in which GUS is under control of Ip DHN-Pro. The transgenic Arabidopsis plants harboring Ip DHN-Pro::GUS were checked by GUS staining assay, then the expression of GUS was further detected by qRT-PCR after the transgenic plants were challenged by NaCl, mannitol and ABA. The results showed that the Ip DHN-Pro contained several cis-acting elements, including an ABRE, three Myb transcription factor binding sites, a TC-rich repeat, and a Skn-1 motif.The GUS staining and q RT-PCR showed that Ip DHN-Pro could drive the stable expression of GUS gene in transgenic Arabidopsis, and this promoter was up-regulated by high salinity, osmotic stress and ABA treatment.Therefore, it was indicated that IpDHN-Pro was a salt/dehydration and ABA induced promoter sequence, and can be applied in plant genetic engineering research aiming at abiotic stress tolerance.
作者
苏华香
郑洁旋
张会
何金实
简曙光
夏快飞
陈建通
张美
SU Hua-xiang;ZHENG Jie-xuan;ZHANG Hui;HE Jin-shi;JIAN Shu-guang;XIA Kuai-fei;CHEN Jian-tong;ZHANG Mei(Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Guangzhou 510650, China;University of Chinese Academy of Sciences, Beijing 100049, China;Institute ofTropical Agriculture and Forestry, Hainan University, Haikou 570228, China)
出处
《热带亚热带植物学报》
CAS
CSCD
北大核心
2019年第4期415-422,共8页
Journal of Tropical and Subtropical Botany
基金
中国科学院A类战略性先导科技专项(XDA13020500)
2018年中国科学院华南植物园大学生创新计划项目(67)资助~~
关键词
启动子
盐旱诱导
ABA诱导
脫水素
厚藤
Promoter
Salt/osmotic stress induced
ABA induced
Dehydrin
Ipomoeapes-caprae