Sagi M, Fluhr R, Lips SH
Biostress Research Laboratory, Department of Life Science, Faculty of Natural Sciences, Ben-Gurion University of the Negev, Sede Boqer 84990, Israel (M.S., S.H.L.).
Plant Physiol. 1999 Jun;120(2):571-8. doi: 10.1104/pp.120.2.571.
The flacca tomato (Lycopersicon esculentum) mutant displays a wilty phenotype as a result of abscisic acid (ABA) deficiency. The Mo cofactor (MoCo)-containing aldehyde oxidases (AO; EC 1.2.3.1) are thought to play a role in the final oxidation step required for ABA biosynthesis. AO and related MoCo-containing enzymes xanthine dehydrogenase (XDH; EC 1.2.1.37) and nitrate reductase (EC 1.6.6.1) were examined in extracts of the flacca tomato genotype and of wild-type (WT) roots and shoots. The levels of MoCo were found to be similar in both genotypes. No significant XDH or AO (MoCo-containing hydroxylases) activities were detected in flacca leaves; however, the mutant exhibited considerable MoCo-containing hydroxylase activity in the roots, which contained notable amounts of ABA. Native western blots probed with an antibody to MoCo-containing hydroxylases revealed substantial, albeit reduced, levels of cross-reactive protein in the flacca mutant shoots and roots. The ABA xylem-loading rate was significantly lower than that in the WT, indicating that the flacca is also defective in ABA transport to the shoot. Significantly, in vitro sulfurylation with Na2S reactivated preexisting XDH and AO proteins in extracts from flacca, particularly from the shoots, and superinduced the basal-level activity in the WT extracts. The results indicate that in flacca, MoCo-sulfurylase activity is impaired in a tissue-dependent manner.
萎蔫番茄(Lycopersicon esculentum)突变体由于脱落酸(ABA)缺乏而表现出萎蔫表型。含钼辅因子(MoCo)的醛氧化酶(AO;EC 1.2.3.1)被认为在ABA生物合成所需的最终氧化步骤中起作用。在萎蔫番茄基因型以及野生型(WT)根和茎的提取物中检测了AO以及相关的含MoCo酶黄嘌呤脱氢酶(XDH;EC 1.2.1.37)和硝酸还原酶(EC 1.6.6.1)。发现两种基因型中MoCo的水平相似。在萎蔫番茄叶片中未检测到显著的XDH或AO(含MoCo的羟化酶)活性;然而,该突变体在根中表现出相当可观的含MoCo羟化酶活性,根中含有大量ABA。用针对含MoCo羟化酶的抗体进行的天然蛋白质免疫印迹显示,萎蔫突变体的茎和根中存在大量(尽管有所减少)的交叉反应蛋白。ABA木质部装载率显著低于野生型,表明萎蔫番茄在ABA向茎的运输方面也存在缺陷。重要的是,用Na2S进行的体外硫酸化重新激活了萎蔫番茄提取物中预先存在的XDH和AO蛋白,特别是茎中的蛋白,并超诱导了野生型提取物中的基础水平活性。结果表明,在萎蔫番茄中,MoCo - 硫基化酶活性以组织依赖性方式受损。