Odanaka Saori, Bennett Alan B, Kanayama Yoshinori
Faculty of Agriculture, Tohoku University, Aoba-ku, Sendai 981-8555, Japan.
Plant Physiol. 2002 Jul;129(3):1119-26. doi: 10.1104/pp.000703.
There are two divergent fructokinase isozymes, Frk1 and Frk2 in tomato (Lycopersicon esculentum Mill.) plants. To investigate the physiological functions of each isozyme, the expression of each fructokinase mRNA was independently suppressed in transgenic tomato plants, and the respective phenotypes were evaluated. Suppression of Frk1 expression resulted in delayed flowering at the first inflorescence. Suppression of Frk2 did not effect flowering time but resulted in growth inhibition of stems and roots, reduction of flower and fruit number, and reduction of seed number per fruit. Localization of Frk1 and Frk2 mRNA accumulation by in situ hybridization in wild-type tomato fruit tissue indicated that Frk2 is expressed specifically in early tomato seed development. Fruit hexose and starch content were not effected by the suppression of either Frk gene alone. The results collectively indicate that flowering time is specifically promoted by Frk1 and that Frk2 plays specific roles in contributing to stem and root growth and to seed development. Because Frk1 and Frk2 gene expression was suppressed individually in transgenic plants, other significant metabolic roles of fructokinases may not have been observed if Frk1 and Frk2 play, at least partially, redundant metabolic roles.
番茄(Lycopersicon esculentum Mill.)植株中有两种不同的果糖激酶同工酶,即Frk1和Frk2。为了研究每种同工酶的生理功能,在转基因番茄植株中分别独立抑制了每种果糖激酶mRNA的表达,并对各自的表型进行了评估。抑制Frk1的表达导致第一花序开花延迟。抑制Frk2对开花时间没有影响,但导致茎和根的生长受到抑制,花和果实数量减少,以及单果种子数量减少。通过原位杂交在野生型番茄果实组织中对Frk1和Frk2 mRNA积累进行定位,结果表明Frk2在番茄种子发育早期特异性表达。单独抑制任一Frk基因对果实己糖和淀粉含量均无影响。这些结果共同表明,Frk1特异性促进开花时间,而Frk2在促进茎和根生长以及种子发育方面发挥特定作用。由于在转基因植物中Frk1和Frk2基因的表达是分别被抑制的,如果Frk1和Frk2至少部分发挥冗余的代谢作用,那么果糖激酶的其他重要代谢作用可能未被观察到。