Zhongzhi International Institute of Agricultural Biosciences, Shunde Graduate School, Research Center of Biology and Agriculture, University of Science and Technology Beijing (USTB), Beijing, 100024, China.
Beijing International Science and Technology Cooperation Base of Bio-Tech Breeding, Beijing Engineering Laboratory of Main Crop Bio-Tech Breeding, Beijing Solidwill Sci-Tech Co. Ltd., Beijing, 100192, China.
Planta. 2022 Jan 29;255(2):52. doi: 10.1007/s00425-022-03836-z.
ALDH7B4 promoter analysis in A. thaliana and E. salsugineum reveals that both genetic background and promoter architecture contribute to gene expression in response to stress in different species. Many genes are differentially regulated in a comparison of salinity-sensitive and salinity-tolerant plant species. The aldehyde dehydrogenase 7B4 (ALDH7B4) gene is turgor-responsive in A. thaliana and encodes a highly conserved detoxification enzyme in plants. This study compared the ALDH7B4 gene in A. thaliana (salinity-sensitive) and in the salinity-tolerant close relative Eutrema salsugineum. EsALDH7B4 in E. salsugineum is the ortholog of AtALDH7B4 and the expression is also salinity, drought, and wound responsive. However, E. salsugineum requires higher salinity stress to induce the EsALDH7B4 transcriptional response. The GUS expression driven either by the promoter AtALDH7B4 or EsALDH7B4 was induced under 300 mM NaCl treatment in A. thaliana while 600 mM NaCl treatment was required in E. salsugineum, suggesting that the genetic background plays a crucial role in regulation of gene expression. Promoter sequences of ALDH7B4 are less conserved than the protein coding region. A series of EsALDH7B4 promoter deletion fragments were fused to the GUS reporter gene and promoter activity was determined in A. thaliana. The promoter region that contains two conserved ACGT-containing motifs was identified to be essential for stress induction. Furthermore, a 38 bp "TC" rich motif in the EsALDH7B4 promoter, absent from the AtALDH7B4 promoter, negatively affects EsALDH7B4 expression. A MYB-like transcription factor was identified to bind the "TC" motif and to repress the EsALDH7B4 promoter activity. This study reveals that genetic background and cis-acting elements coordinately regulate gene expression.
在拟南芥和盐穗木中分析 ALDH7B4 启动子揭示了遗传背景和启动子结构都有助于不同物种中应激条件下的基因表达。在盐敏感和耐盐植物物种的比较中,许多基因的表达受到差异调控。醛脱氢酶 7B4(ALDH7B4)基因在拟南芥中对膨压有反应,在植物中编码一种高度保守的解毒酶。本研究比较了拟南芥(盐敏感)和耐盐近缘种盐穗木中 ALDH7B4 基因。盐穗木中的 EsALDH7B4 是 AtALDH7B4 的同源物,表达也对盐度、干旱和创伤有反应。然而,盐穗木需要更高的盐度胁迫来诱导 EsALDH7B4 的转录反应。AtALDH7B4 或 EsALDH7B4 启动子驱动的 GUS 表达在拟南芥中 300mM NaCl 处理下被诱导,而在盐穗木中则需要 600mM NaCl 处理,这表明遗传背景在基因表达调控中起着关键作用。ALDH7B4 的启动子序列不如蛋白质编码区保守。一系列 EsALDH7B4 启动子缺失片段与 GUS 报告基因融合,并在拟南芥中测定启动子活性。确定包含两个保守的 ACGT 基序的启动子区域对于应激诱导是必需的。此外,盐穗木 EsALDH7B4 启动子中存在一个 38bp 的“TC”富含基序,而在 AtALDH7B4 启动子中不存在,该基序会负调控 EsALDH7B4 的表达。鉴定出一个 MYB 样转录因子结合“TC”基序并抑制 EsALDH7B4 启动子活性。本研究揭示了遗传背景和顺式作用元件协同调节基因表达。