Jain A K, Vincent R M, Nessler C L
Department of Biology, Texas A&M University, College Station 77843-3258, USA.
Plant Mol Biol. 2000 Mar;42(4):559-69. doi: 10.1023/a:1006336825226.
The genus Morus consists of trees and shrubs, which are distributed in temperate and subtropical regions. Commonly known as mulberry, a few of the Morus species are valued for their foliage, which constitutes the chief feed for mulberry silkworms. Steroids and isoprenoid compounds present in the foliage not only add nutritive factors to the feed but also contribute greatly to silkworm health and silk production. Mevalonate synthesis, which is the first step in isoprenoid biosynthesis, is catalyzed by the enzyme hydroxymethylglutaryl-CoAreductase (HMGR). A genomic clone, Mahmg1, was isolated from Morus alba and its expression characterized in mulberry and transgenic tobacco. In mulberry, Mahmg1 transcripts were highest in young leaves and flowers. The promoter region of the Mahmg1 gene was fused to the beta-glucuronidase (GUS) reporter gene and the fusion introduced into tobacco. In imbibed embryos, GUS expression was limited to the cotyledons, epicotyl, and root elongation zone. Later, GUS staining was observed in floral tissues, guard cells, and the heads of trichomes on the stem and petioles. Mahmg1::GUS activity increased 3-4-fold by treatment with 100 microM abscisic acid and 15-80-fold in dark-grown versus light-grown seedlings. These results show that expression of the Mahmg1 gene is differentially regulated by developmental and environmental cues, suggesting that its HMGR isozyme a may provide a precursor for synthesis of specific isoprenoids during mulberry growth and development.
桑属由乔木和灌木组成,分布于温带和亚热带地区。通常被称为桑树,一些桑属物种因其叶片而受到重视,叶片是桑蚕的主要食物来源。叶片中存在的类固醇和类异戊二烯化合物不仅为饲料增加了营养成分,而且对蚕的健康和蚕丝生产也有很大贡献。甲羟戊酸合成是类异戊二烯生物合成的第一步,由羟甲基戊二酰辅酶A还原酶(HMGR)催化。从白桑中分离出一个基因组克隆Mahmg1,并对其在桑树和转基因烟草中的表达进行了表征。在桑树中,Mahmg1转录本在幼叶和花中最高。将Mahmg1基因的启动子区域与β-葡萄糖醛酸酶(GUS)报告基因融合,并将该融合体导入烟草。在吸胀的胚中,GUS表达仅限于子叶、上胚轴和根伸长区。后来,在花组织、保卫细胞以及茎和叶柄上的毛状体头部观察到GUS染色。用100微摩尔脱落酸处理后,Mahmg1::GUS活性增加3至4倍,在黑暗生长的幼苗与光照生长的幼苗中增加15至80倍。这些结果表明,Mahmg1基因的表达受发育和环境信号的差异调节,表明其HMGR同工酶a可能为桑树生长发育过程中特定类异戊二烯的合成提供前体。