Department of Biotechnology, Interdisciplinary Program of Bioenergy and Biomaterials, Bioenergy Research Center, Chonnam National University, Gwangju, South Korea.
J Pineal Res. 2014 Mar;56(2):189-95. doi: 10.1111/jpi.12111. Epub 2013 Dec 26.
Temperature and light are important environmental factors for plant growth and development. The final two enzymes in the melatonin synthesis pathway in plants are serotonin N-acetyltransferase (SNAT) and N-acetylserotonin methyltransferase (ASMT), which have thermophilic characteristics. Thus, the effects of temperature and light on melatonin synthesis in rice seedlings were investigated. Here, we demonstrated that melatonin levels increased as temperature increased when rice seedlings were exposed to various temperatures for 1 hr. Moreover, the relative melatonin levels were higher in the dark. For example, exposure of rice seedlings to 1-hr darkness at 55°C resulted in a melatonin yield of 4.9 ng/g fresh weight (fw), compared with 2.95 ng/g fw under light conditions. Temperature-dependent melatonin synthesis was closely associated with an increase in both SNAT and ASMT activities, but not with transcript levels of melatonin biosynthetic genes. The daily melatonin levels in field-grown rice plants were unaffected as the positive effect of the relatively high temperature during the day was counteracted by the negative effect of the high light. The opposite effect occurred during the night, in which the positive effect of darkness on melatonin synthesis was counteracted by the negative effect of a low temperature.
温度和光照是影响植物生长发育的重要环境因素。植物中褪黑素合成途径的最后两种酶是 5-羟色胺 N-乙酰转移酶(SNAT)和 N-乙酰-5-羟色胺甲基转移酶(ASMT),它们具有嗜热特性。因此,研究了温度和光照对水稻幼苗褪黑素合成的影响。在这里,我们证明了当水稻幼苗在不同温度下暴露 1 小时时,褪黑素水平随着温度的升高而升高。此外,黑暗中的相对褪黑素水平更高。例如,将水稻幼苗在 55°C 的黑暗中暴露 1 小时,会导致鲜重(fw)的褪黑素产量达到 4.9ng/g,而在光照条件下则为 2.95ng/g fw。温度依赖性褪黑素合成与 SNAT 和 ASMT 活性的增加密切相关,但与褪黑素生物合成基因的转录水平无关。在田间生长的水稻植株中,褪黑素水平不受影响,因为白天相对较高的温度的积极影响被高光的消极影响所抵消。夜间则相反,黑暗对褪黑素合成的积极影响被低温的消极影响所抵消。