Department of Ornamental Horticulture, Sichuan Agricultural University, 211 Huimin Road, Wenjiang District, Chengdu, Sichuan, 611130, China.
Plant Physiol Biochem. 2024 Feb;207:108405. doi: 10.1016/j.plaphy.2024.108405. Epub 2024 Feb 9.
Low temperatures can severely affect plant growth and reduce their ornamental value. A family of plant histone deacetylases allows plants to cope with both biotic and abiotic stresses. In this study, we screened and cloned the cDNA of DgSRT2 obtained from transcriptome sequencing of chrysanthemum leaves under low-temperature stress. Sequence analysis showed that DgSRT2 belongs to the sirtuin family of histone deacetylases. We obtained the stable transgenic chrysanthemum lines OE-2 and OE-12. DgSRT2 showed tissue specificity in wild-type chrysanthemum and was most highly expressed in leaves. Under low-temperature stress, the OE lines showed higher survival rates, proline content, solute content, and antioxidant enzyme activities, and lower relative electrolyte leakage, malondialdehyde, hydrogen peroxide, and superoxide ion accumulation than the wild-type lines. This work suggests that DgSRT2 can serve as an essential gene for enhancing cold resistance in plants. In addition, a series of cold-responsive genes in the OE line were compared with WT. The results showed that DgSRT2 exerted a positive regulatory effect by up-regulating the transcript levels of cold-responsive genes. The above genes help to increase antioxidant activity, maintain membrane stability and improve osmoregulation, thereby enhancing survival under cold stress. It can be concluded from the above work that DgSRT2 enhances chrysanthemum tolerance to low temperatures by scavenging the ROS system.
低温会严重影响植物的生长,降低其观赏价值。植物组蛋白去乙酰化酶家族使植物能够应对生物和非生物胁迫。在这项研究中,我们从低温胁迫下菊花叶片的转录组测序中筛选和克隆了 DgSRT2 的 cDNA。序列分析表明,DgSRT2 属于组蛋白去乙酰化酶的 Sirtuin 家族。我们获得了稳定的转基因菊花株系 OE-2 和 OE-12。DgSRT2 在野生型菊花中具有组织特异性,在叶片中表达量最高。在低温胁迫下,OE 系的存活率、脯氨酸含量、溶质含量和抗氧化酶活性较高,而相对电解质泄漏率、丙二醛、过氧化氢和超氧阴离子积累较低。这项工作表明,DgSRT2 可以作为增强植物抗寒性的必需基因。此外,我们比较了 OE 系和 WT 系中一系列冷响应基因。结果表明,DgSRT2 通过上调冷响应基因的转录水平发挥正向调节作用。上述基因有助于提高抗氧化活性、维持膜稳定性和改善渗透调节,从而增强在低温胁迫下的生存能力。综上所述,DgSRT2 通过清除 ROS 系统增强了菊花对低温的耐受性。