Yuzawa Yuichi, Shimojima Mie, Sato Ryoichi, Mizusawa Naoki, Ikeda Keiko, Suzuki Mamie, Iwai Masako, Hori Koichi, Wada Hajime, Masuda Shinji, Ohta Hiroyuki
Department of Biological Sciences, Tokyo Institute of Technology, 4259-B-65 Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan.
Center for Biological Resources and Informatics, Tokyo Institute of Technology, 4259-B-65 Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan.
Biochim Biophys Acta. 2014 Apr 4;1841(4):475-83. doi: 10.1016/j.bbalip.2013.12.007. Epub 2013 Dec 24.
We characterized certain physiological functions of cyanobacterial monoglucosyldiacylglycerol using a Synechocystis sp. PCC 6803 mutant in which the gene for monoglucosyldiacylglycerol synthase had been disrupted and its function complemented by inclusion of an Arabidopsis monogalactosyldiacylglycerol synthase gene. By using this method, we prepared the first viable monoglucosyldiacylglycerol-deficient mutant of cyanobacterium and found that monoglucosyldiacylglycerol is not essential for its growth and photosynthesis under a set of "normal growth conditions" when monogalactosyldiacylglycerol is adequately supplied by the Arabidopsis monogalactosyldiacylglycerol synthase. The mutant had healthy thylakoid membranes and normal pigment content. The membrane lipid composition of the mutant was similar with that of WT except lack of monoglucosyldiacylglycerol and a slight increase in the level of phosphatidylglycerol at both normal and low temperatures. However, the ratio of unsaturated fatty acids in monogalactosyldiacylglycerol and digalactosyldiacylglycerol was reduced in the mutant compared with WT. Although the growth of the mutant was indistinguishable with that of WT at normal growth temperature, it was markedly retarded at low temperature compared with that of WT. Our data indicated the possibility that cyanobacterial monogalactosyldiacylglycerol-synthesis pathway might be required for the adequate unsaturation level of fatty acids in galactolipids and affect the low-temperature sensitivity.
我们利用集胞藻属PCC 6803突变体对蓝藻单葡萄糖基二酰基甘油的某些生理功能进行了表征。在该突变体中,单葡萄糖基二酰基甘油合酶基因已被破坏,其功能通过引入拟南芥单半乳糖基二酰基甘油合酶基因得以补充。通过这种方法,我们制备了首个可行的蓝藻单葡萄糖基二酰基甘油缺陷型突变体,并发现当拟南芥单半乳糖基二酰基甘油合酶充分供应单半乳糖基二酰基甘油时,在一组“正常生长条件”下,单葡萄糖基二酰基甘油对其生长和光合作用并非必需。该突变体具有健康的类囊体膜和正常的色素含量。突变体的膜脂组成与野生型相似,只是缺乏单葡萄糖基二酰基甘油,且在正常温度和低温下磷脂酰甘油水平略有增加。然而,与野生型相比,突变体中单半乳糖基二酰基甘油和二半乳糖基二酰基甘油中不饱和脂肪酸的比例降低。尽管突变体在正常生长温度下的生长与野生型无差异,但与野生型相比,其在低温下生长明显受阻。我们的数据表明,蓝藻单半乳糖基二酰基甘油合成途径可能是半乳糖脂中脂肪酸充分不饱和水平所必需的,并影响低温敏感性。