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CtWD40-6通过调节类黄酮积累增强红花对UV-B的耐受性。

CtWD40-6 enhances the UV-B tolerance of safflower by regulating flavonoid accumulation.

作者信息

Hong Yingqi, Zhou Shiwen, Zhang Jianyi, Lv Yanxi, Yao Na, Liu Xiuming

机构信息

College of Horticulture, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China; Institute for Safflower Industry Research / Pharmacy School of Shihezi University, Shihezi, 832003, China.

College of Horticulture, Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

出版信息

Plant Physiol Biochem. 2025 Mar;220:109476. doi: 10.1016/j.plaphy.2025.109476. Epub 2025 Jan 3.

Abstract

Moderate UV-B promotes plant growth, but excessive UV-B inhibits plant development. The induction mechanism of how CtWD40-6 responds to UV-B is still unclear in safflower. Our results showed that CtWD40-6 is expressed at the top of safflower leaves and is strongly induced by UV-B. To further understand the function of the CtWD40-6 gene, we overexpressed the CtWD40-6 gene in safflower or Arabidopsis. First, different transgenic materials were treated with UV-B, and we found that the survival rate of plants overexpressing CtWD40-6 was significantly higher than that of the WT type. In contrast, the survival rate of wd40-6 mutant plants was significantly decreased compared with WT type. Then DAB, NBT and Trypan Blue staining were performed on different transgenic plants before and after UV-B treatment and the results showed that the staining of mutant and WT was significantly higher than that of overexpressing CtWD40-6. By comparing the data before and after UV-B stress, we found that the flavonoid content, antioxidant enzyme activity, chlorophyll content and photosynthetic rate of transgenic plants overexpressing CtWD40-6 were higher than those of WT and mutants, thereby obtaining better UV-B tolerance. Finally, we used yeast two-hybrid and luciferase complementation experiments to prove that CtWD40-6 increases the content of safflower flavonoids by interacting with CtANS1/CtCHS1/Ct4CL1/CtFLS1, thereby enhancing the plant's UV-B tolerance. The above results provide a theoretical basis for preliminary analysis of how safflower responds to UV-B stress through the transcriptional regulation of CtWD40-6.

摘要

适度的UV-B促进植物生长,但过量的UV-B会抑制植物发育。在红花中,CtWD40-6如何响应UV-B的诱导机制仍不清楚。我们的结果表明,CtWD40-6在红花叶片顶端表达,并受到UV-B的强烈诱导。为了进一步了解CtWD40-6基因的功能,我们在红花或拟南芥中过表达了CtWD40-6基因。首先,用UV-B处理不同的转基因材料,我们发现过表达CtWD40-6的植物存活率显著高于野生型。相反,wd40-6突变体植物的存活率与野生型相比显著降低。然后对不同转基因植物在UV-B处理前后进行DAB、NBT和台盼蓝染色,结果表明突变体和野生型的染色显著高于过表达CtWD40-6的植株。通过比较UV-B胁迫前后的数据,我们发现过表达CtWD40-6的转基因植物的类黄酮含量、抗氧化酶活性、叶绿素含量和光合速率均高于野生型和突变体,从而获得了更好的UV-B耐受性。最后,我们通过酵母双杂交和荧光素酶互补实验证明,CtWD40-6通过与CtANS1/CtCHS1/Ct4CL1/CtFLS1相互作用增加红花类黄酮含量,从而增强植物对UV-B的耐受性。上述结果为初步分析红花如何通过CtWD40-6的转录调控响应UV-B胁迫提供了理论依据。

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