Yelle S, Chetelat R T, Dorais M, Deverna J W, Bennett A B
Department of Vegetable Crops, Mann Laboratory, University of California, Davis, Colifornia 95616.
Plant Physiol. 1991 Apr;95(4):1026-35. doi: 10.1104/pp.95.4.1026.
Fruit of domesticated tomato (Lycopersicon esculentum) accumulate primarily glucose and fructose, whereas some wild tomato species, including Lycopersicon chmielewskii, accumulate sucrose. Genetic analysis of progeny resulting from a cross between L. chmielewskii and L. esculentum indicated that the sucrose-accumulating trait could be stably transferred and that the trait was controlled by the action of one or two recessive genes. Biochemical analysis of progeny resulting from this cross indicated that the sucrose-accumulating trait was associated with greatly reduced levels of acid invertase, but normal levels of sucrose synthase. Invertase from hexose-accumulating fruit was purified and could be resolved into three isoforms by chromatofocusing, each with isoelectric points between 5.1 and 5.5. The invertase isoforms showed identical polypeptide profiles on sodium dodecyl sulfate polyacrylamide gel electrophoresis, consisting of a primary 52 kilodalton polypeptide and two lower molecular mass polypeptides that appear to be degradation products of the 52 kilodalton polypeptide. The three invertase isoforms were indistinguishable based on pH, temperature, and substrate concentration dependence. Immunological detection of invertase indicated that the low level of invertase in sucrose-accumulating fruit was due to low levels of invertase protein rather than the presence of an invertase inhibitor. Based on comparison of genetic and biochemical data we speculate that a gene either encoding tomato fruit acid invertase or one required for its expression, plays an important role in determining sucrose accumulation.
驯化番茄(Lycopersicon esculentum)的果实主要积累葡萄糖和果糖,而一些野生番茄品种,包括奇美留斯基番茄(Lycopersicon chmielewskii),则积累蔗糖。对奇美留斯基番茄和驯化番茄杂交后代的遗传分析表明,蔗糖积累性状可以稳定遗传,并且该性状受一或两个隐性基因的作用控制。对该杂交后代的生化分析表明,蔗糖积累性状与酸性转化酶水平大幅降低有关,但蔗糖合酶水平正常。从积累己糖的果实中纯化出转化酶,通过色谱聚焦可将其解析为三种同工型,每种同工型的等电点在5.1至5.5之间。在十二烷基硫酸钠聚丙烯酰胺凝胶电泳上,这些转化酶同工型显示出相同的多肽谱,由一条主要的52千道尔顿多肽和两条较低分子量的多肽组成,这两条较低分子量的多肽似乎是52千道尔顿多肽的降解产物。基于pH、温度和底物浓度依赖性,这三种转化酶同工型无法区分。转化酶的免疫检测表明,积累蔗糖的果实中转化酶水平较低是由于转化酶蛋白水平较低,而非存在转化酶抑制剂。基于遗传和生化数据的比较,我们推测,一个编码番茄果实酸性转化酶或其表达所需的基因,在决定蔗糖积累方面起重要作用。