Truernit E, Stadler R, Baier K, Sauer N
Lehrstuhl Botanik II, Molekulare Pflanzenphysiologie, Universität Erlangen-Nürnberg, Germany.
Plant J. 1999 Jan;17(2):191-201. doi: 10.1046/j.1365-313x.1999.00372.x.
The AtSTP2 gene (sugar transport protein 2) of Arabidopsis thaliana encodes a high affinity, low specificity monosaccharide carrier that can transport a number of hexoses and pentoses at similar rates. AtSTP2 has 12 putative transmembrane helices and a molecular mass of 55.0 kDa. AtSTP2 expression was localized in AtSTP2 promoter-beta-glucuronidase (GUS) Arabidopsis plants showing AtSTP2-driven GUS activity during pollen maturation and also in germinating pollen. Immunohistochemical studies with anti-AtSTP2 antiserum as well as RNA in situ hybridization analyses modified these results and showed that AtSTP2 expression is confined to the early stages of gametophyte development. Both AtSTP2 mRNA and AtSTP2 protein are first seen at the time of beginning callose degradation and microspore release from the tetrades. AtSTP2 mRNA and AtSTP2 protein are no longer detected after the mitotic divisions and the formation of the trinucleate gametophyte. No AtSTP2 mRNA or AtSTP2 protein is seen in fully developed or germinating pollen. The putative role of AtSTP2 in the uptake of glucose units resulting from callose degradation during pollen maturation is discussed.
拟南芥的AtSTP2基因(糖转运蛋白2)编码一种高亲和力、低特异性的单糖载体,它能够以相似的速率转运多种己糖和戊糖。AtSTP2有12个推定的跨膜螺旋,分子量为55.0 kDa。AtSTP2的表达定位在AtSTP2启动子-β-葡萄糖醛酸酶(GUS)的拟南芥植株中,在花粉成熟过程以及萌发的花粉中均显示出AtSTP2驱动的GUS活性。用抗AtSTP2抗血清进行的免疫组织化学研究以及RNA原位杂交分析修正了这些结果,并表明AtSTP2的表达局限于配子体发育的早期阶段。AtSTP2 mRNA和AtSTP2蛋白最早在胼胝质降解和小孢子从四分体中释放时出现。在有丝分裂和三核配子体形成后,不再检测到AtSTP2 mRNA和AtSTP2蛋白。本文讨论了AtSTP2在花粉成熟过程中胼胝质降解产生的葡萄糖单位摄取中的假定作用。