Chun Jae-An, Jin Un-Ho, Lee Jin-Woo, Yi Young-Byung, Hyung Nam-In, Kang Myung-Hwa, Pyee Jae-Ho, Suh Mi Chung, Kang Churl-Whan, Seo Hong-Yeol, Lee Shin-Woo, Chung Chung-Han
Faculty of Life Science and Resources, Dong-A University, 840, Ha-Dan-Dong, Sa-Ha-Gu, Pusan 604-714, South Korea.
Planta. 2003 Mar;216(5):874-80. doi: 10.1007/s00425-002-0940-0. Epub 2002 Nov 26.
A cDNA (SeMIPS1) encoding myo-inositol 1-phosphate synthase (EC 5.5.1.4) (MIPS) has been characterized from sesame (Sesamum indicum L. cv. Dan-Baek) seeds and its functional expression analyzed. The SeMIPS1 protein was highly homologous with those from other plant species (88-94%), while a much lower degree of sequence homology (53-62%) was found with other organisms such as humans, mouse, algae, yeast, Drosophila, bacteria and other prokaryotes. A yeast-based complementation assay in yeast mutants containing a disrupted INO1gene for yeast MIPS confirmed that the SeMIPS1 gene encodes a functional MIPS. Phylogenetic analysis suggested that the SeMIPS1 gene diverged as a different subfamily or family member. Southern hybridization revealed several copies of the SeMIPS1 gene present in the sesame genome and northern blotting indicated that expression of the SeMIPS1gene may be organ specific. Salt stress during sesame seed germination had an adverse influence on transcription of SeMIPS1and greatly reduced transcript levels as the duration of exposure to a saline environment increased and NaCl concentration increased. Germination initiation of sesame seeds was severely delayed as NaCl level increased. These results suggest that expression of SeMIPS1 is down-regulated by salt stress during sesame seed germination.
从芝麻(Sesamum indicum L. cv. Dan - Baek)种子中鉴定出一个编码肌醇 - 1 - 磷酸合酶(EC 5.5.1.4)(MIPS)的cDNA(SeMIPS1),并对其功能表达进行了分析。SeMIPS1蛋白与其他植物物种的蛋白高度同源(88 - 94%),而与人类、小鼠、藻类、酵母、果蝇、细菌和其他原核生物等其他生物体的序列同源性则低得多(53 - 62%)。在含有酵母MIPS的INO1基因被破坏的酵母突变体中进行的基于酵母的互补试验证实,SeMIPS1基因编码一种功能性MIPS。系统发育分析表明,SeMIPS1基因作为不同的亚家族或家族成员发生了分化。Southern杂交显示芝麻基因组中存在多个SeMIPS1基因拷贝,Northern印迹表明SeMIPS1基因的表达可能具有器官特异性。芝麻种子萌发期间的盐胁迫对SeMIPS1的转录有不利影响,并且随着暴露于盐环境的时间延长和NaCl浓度增加,转录水平大幅降低。随着NaCl水平的增加,芝麻种子的萌发起始严重延迟。这些结果表明,芝麻种子萌发期间的盐胁迫会下调SeMIPS1的表达。