首页> 外文期刊>Functional Plant Biology >Expression of maize heat shock transcription factor gene ZmHsf06 enhances the thermotolerance and drought-stress tolerance of transgenic Arabidopsis
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Expression of maize heat shock transcription factor gene ZmHsf06 enhances the thermotolerance and drought-stress tolerance of transgenic Arabidopsis

机译:玉米热激转录因子基因ZmHsf06的表达增强了转基因拟南芥的耐热性和干旱胁迫耐受性

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摘要

Based on the information of 25 heat shock transcription factor (Hsf) homologues in maize according to a genome-wide analysis, ZmHsf06 was cloned from maize leaves and transformed into Arabidopsis thaliana (L. Heynh.) (ecotype, Col-0). Three transgenic positive lines were selected to assess the basic and acquired thermotolerance and drought-stress tolerance under stresses and for some physiological assays. The sequence analysis indicates that ZmHsf06 contained the characteristic domains of class A type plant Hsfs. The results of qRT-PCR showed that the expression levels of ZmHsf06 were elevated by heat shock and drought stress to different extents in three transgenic lines. Phenotypic observation shows that compared with the Wt (wild-type) controls, the overexpressing ZmHsf06 of Arabidopsis plants have enhanced basal and acquired thermotolerance, stronger drought-stress tolerance and growth advantages under mild heat stress conditions. These results are further confirmed by physiological and biochemical evidence that transgenic Arabidopsis plants exhibit higher seed germination rate, longer axial-root length, higher activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT), higher leaf chlorophyll content, but lower relative electrical conductivity (REC), malondialdehyde (MDA) and osmotic potential (OP) than the Wt controls after heat shock and drought treatments. ZmHsf06 may be a central representative of maize Hsfs and could be useful in molecular breeding of maize or other crops for enhanced tolerances, particularly during terminal heat and drought stresses.
机译:根据全基因组分析,基于玉米中25种热激转录因子(Hsf)同源物的信息,从玉米叶片克隆ZmHsf06,并将其转化为拟南芥(L. Heynh。)(生态型,Col-0)。选择三个转基因阳性品系,以评估在压力下的基本耐受性和获得性耐热性以及干旱胁迫耐受性,并进行一些生理测定。序列分析表明ZmHsf06含有A类植物Hsfs的特征域。 qRT-PCR的结果表明,在三种转基因株系中,热激和干旱胁迫使ZmHsf06的表达水平不同程度地升高。表型观察表明,与Wt(野生型)对照相比,拟南芥植物的过表达ZmHsf06具有增强的基础和获得的耐热性,较强的干旱胁迫耐受性以及在温和的高温胁迫条件下的生长优势。生理和生化证据进一步证实了这些结果,即转基因拟南芥植物显示出更高的种子发芽率,更长的根轴长度,更高的超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)活性,更高的叶片叶绿素含量,但经过热冲击和干旱处理后,相对电导率(REC),丙二醛(MDA)和渗透势(OP)低于Wt对照。 ZmHsf06可能是玉米Hsfs的主要代表,可用于玉米或其他农作物的分子育种,以增强耐受性,尤其是在高温和干旱胁迫下。

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