College of Agronomy and Biotechnology, Southwest University, Chongqing, 400715, China.
College of Tobacco Science, Yunnan Agricultural University, Kunming, 650201, China.
Sci Rep. 2021 Nov 11;11(1):22136. doi: 10.1038/s41598-021-01703-7.
Tobacco is be sensitively affected by chilling injury in the vigorous growth period, which can easily lead to tobacco leaf browning during flue-curing and quality loss, however, the physiological response of tobacco in the prosperous period under low temperature stress is unclear. The physiological response parameters of two tobacco varieties to low temperature stress were determined. The main results were as follows: ① For tobacco in the vigorous growing period subjected to low-temperature stress at 4-16 °C, the tissue structure of chloroplast changed and photosynthetic pigments significantly decreased compared with each control with the increase of intensity of low-temperature stress. ② For tobacco in the vigorous growing period at 10-16 °C, antioxidant capacity of the protective enzyme system, osmotic adjustment capacity of the osmotic adjusting system and polyphenol metabolism in plants gradually increased due to induction of low temperature with the increase of intensity of low-temperature stress. ③ Under low-temperature stress at 4 °C, the protective enzyme system, osmotic adjusting system and polyphenol metabolism of the plants played an insignificant role in stress tolerance, which cannot be constantly enhanced based on low-temperature resistance at 10 °C. This study confirmed that under the temperature stress of 10-16 °C, the self-regulation ability of tobacco will be enhanced with the deepening of low temperature stress, but there is a critical temperature between 4 and 10 °C. The self-regulation ability of plants under low temperature stress will be inhibited.
烟草在旺盛生长期对低温冷害非常敏感,容易导致烘烤过程中烟叶褐变和品质损失,然而,低温胁迫下烟草旺盛生长期的生理响应尚不清楚。本研究测定了两个烟草品种对低温胁迫的生理响应参数。主要结果如下:① 低温胁迫(4-16℃)下烟草旺盛生长期的叶绿体组织结构发生变化,光合色素含量显著降低,且随低温胁迫强度的增加而降低。② 10-16℃下烟草旺盛生长期,低温诱导下保护性酶系统的抗氧化能力、渗透调节系统的渗透调节能力和植物中的多酚代谢逐渐增强,随低温胁迫强度的增加而增加。③ 4℃低温胁迫下,植物的保护酶系统、渗透调节系统和多酚代谢在耐胁迫中作用不显著,不能基于 10℃的耐低温性不断增强。本研究证实,在 10-16℃的温度胁迫下,随着低温胁迫的加深,烟草的自我调节能力会增强,但在 4-10℃之间存在一个临界温度,植物在低温胁迫下的自我调节能力会受到抑制。