Tang Xuedong, An Baiyi, Cao Dongmo, Xu Ru, Wang Siyu, Zhang Zhidong, Liu Xiaojia, Sun Xiaogang
College of Horticulture, Jilin Agricultural University, Changchun, China.
Front Plant Sci. 2020 Feb 28;11:108. doi: 10.3389/fpls.2020.00108. eCollection 2020.
In this study, we investigated the mechanism of photosynthesis and physiological function of blueberry leaves under low temperature stress (4-6°C) by exogenous hydrogen sulfide (HS) by spraying leaves with 0.5 mmol·L NaHS (HS donor) and 200 μmol·L hypotaurine (Hypotaurine, HS scavenger). The results showed that chlorophyll and carotenoid content in blueberry leaves decreased under low temperature stress, and the photochemical activities of photosystem II (PSII) and photosystem I (PSI) were also inhibited. Low temperature stress can reduce photosynthetic carbon assimilation capacity by inhibiting stomatal conductance ( ) of blueberry leaves, and non-stomatal factors also play a limiting role at the 5 day of low temperature stress. Low temperature stress leads to the accumulation of Pro and HO in blueberry leaves and increases membrane peroxidation. Spraying leaves with NaHS, a donor of exogenous HS, could alleviate the degradation of chlorophyll and carotenoids in blueberry leaves caused by low temperature and reduce the photoinhibition of PSII and PSI. The main reason for the enhancement of photochemical activity of PSII was that exogenous HS promoted the electron transfer from to on PSII acceptor side under low temperature stress. In addition, it promoted the accumulation of osmotic regulator proline under low temperature stress and significantly alleviated membrane peroxidation. HS scavengers (Hypotaurine) aggravated photoinhibition and the degree of oxidative damage under low temperature stress. Improving photosynthetic capacity as well as alleviating photosynthetic inhibition and oxidative stress with exogenous HS is possible in blueberry seedlings under low temperature stress.
在本研究中,我们通过向叶片喷施0.5 mmol·L的NaHS(硫化氢供体)和200 μmol·L的次牛磺酸(次牛磺酸,硫化氢清除剂),研究了外源硫化氢(HS)对低温胁迫(4-6°C)下蓝莓叶片光合作用机制和生理功能的影响。结果表明,低温胁迫下蓝莓叶片中叶绿素和类胡萝卜素含量降低,光系统II(PSII)和光系统I(PSI)的光化学活性也受到抑制。低温胁迫可通过抑制蓝莓叶片气孔导度( )降低光合碳同化能力,在低温胁迫第5天非气孔因素也起限制作用。低温胁迫导致蓝莓叶片中脯氨酸和过氧化氢积累,增加膜脂过氧化作用。喷施外源硫化氢供体NaHS可缓解低温引起的蓝莓叶片叶绿素和类胡萝卜素降解,减轻PSII和PSI的光抑制。PSII光化学活性增强的主要原因是外源硫化氢在低温胁迫下促进了PSII受体侧从 到 的电子传递。此外,它促进了低温胁迫下渗透调节物质脯氨酸的积累,并显著减轻了膜脂过氧化作用。硫化氢清除剂(次牛磺酸)加重了低温胁迫下的光抑制和氧化损伤程度。在低温胁迫下,外源硫化氢提高蓝莓幼苗光合能力以及缓解光合抑制和氧化胁迫是可能的。