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Characterization of increased cuticular wax mutant and analysis of genes involved in wax biosynthesis in Dianthus spiculifolius

机译:石竹中增加的表皮蜡突变体的表征和涉及蜡生物合成的基因分析

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摘要

Cuticular wax formation on the surface of plant leaves is associated with drought-stress tolerance. The identification of wax biosynthesis-related genes will contribute to the genetic improvement of drought resistance in plants. In this study, we characterize a novel Dianthus spiculifolius mutant with increased cuticular wax. The mutant exhibited stronger drought resistance as indicated by less leaf wilting and death, higher leaf relative water content and water retention capacity, and slower water loss and chlorophyll extraction than did the wild type during drought treatment. In the mutant leaves, 2 730 upregulated and 2 151 downregulated differentially expressed genes (DEGs) were identified by transcriptome sequencing. A wax biosynthesis pathway of the identified DEGs was significantly enriched. Finally, three key genes (DsCER1, DsMAH1, and DsWSD1) involved in wax biosynthesis were identified and verified by qPCR. These results suggest that differential expression of DEGs involved in wax biosynthesis may be associated with the increase in cuticular wax in the mutant. Taken together, our results help elucidate wax formation patterns in D. spiculifolius. Furthermore, the DEGs involved in wax biosynthesis identified here may be valuable genetic resources for improving plant stress tolerance through increased accumulation of cuticular wax.
机译:植物叶片表面上的表皮蜡形成与耐旱性有关。蜡生物合成相关基因的鉴定将有助于植物抗旱性的遗传改良。在这项研究中,我们表征增加石蜡的新型石竹spiculifolius突变体。与干旱处理相比,该突变体表现出更强的抗旱性,表现为与野生型相比,枯萎和死亡少,叶片相对含水量和保水能力更高,水分损失和叶绿素提取速度较慢。在突变叶片中,通过转录组测序鉴定了2 730个上调和2 151个下调的差异表达基因(DEG)。所鉴定的DEG的蜡生物合成途径显着富集。最后,通过qPCR鉴定并验证了蜡生物合成中涉及的三个关键基因(DsCER1,DsMAH1和DsWSD1)。这些结果表明,参与蜡生物合成的DEGs的差异表达可能与突变体中表皮蜡的增加有关。两者合计,我们的结果有助于阐明D. spiculifolius中的蜡形成模式。此外,此处确定的参与蜡生物合成的DEGs可能是宝贵的遗传资源,可通过增加表皮蜡的积累来提高植物的抗逆性。

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