D'Aoust M A, Yelle S, Nguyen-Quoc B
Centre de Recherche en Horticulture, Faculté des Sciences de l'Agriculture et de l'Alimentation, Université Laval, Québec G1K 7P4, Canada.
Plant Cell. 1999 Dec;11(12):2407-18. doi: 10.1105/tpc.11.12.2407.
The role of sucrose synthase (SuSy) in tomato fruit was studied in transgenic tomato (Lycopersicon esculentum) plants expressing an antisense fragment of fruit-specific SuSy RNA (TOMSSF) under the control of the cauliflower mosaic virus 35S promoter. Constitutive expression of the antisense RNA markedly inhibited SuSy activity in flowers and fruit pericarp tissues. However, inhibition was only slight in the endosperm and was undetectable in the embryo, shoot, petiole, and leaf tissues. The activity of sucrose phosphate synthase decreased in parallel with that of SuSy, but acid invertase activity did not increase in response to the reduced SuSy activity. The only effect on the carbohydrate content of young fruit was a slight reduction in starch accumulation. The in vitro sucrose import capacity of fruits was not reduced by SuSy inhibition at 23 days after anthesis, and the rate of starch synthesized from the imported sucrose was not lessened even when SuSy activity was decreased by 98%. However, the sucrose unloading capacity of 7-day-old fruit was substantially decreased in lines with low SuSy activity. In addition, the SuSy antisense fruit from the first week of flowering had a slower growth rate. A reduced fruit set, leading to markedly less fruit per plant at maturity, was observed for the plants with the least SuSy activity. These results suggest that SuSy participates in the control of sucrose import capacity of young tomato fruit, which is a determinant for fruit set and development.
在花椰菜花叶病毒35S启动子控制下,通过表达果实特异性蔗糖合酶(SuSy)RNA反义片段(TOMSSF)的转基因番茄(Lycopersicon esculentum)植株,研究了SuSy在番茄果实中的作用。反义RNA的组成型表达显著抑制了花朵和果实果皮组织中的SuSy活性。然而,胚乳中的抑制作用很轻微,而在胚、茎、叶柄和叶片组织中未检测到抑制作用。蔗糖磷酸合酶的活性与SuSy的活性平行下降,但酸性转化酶的活性并未因SuSy活性降低而增加。对幼果碳水化合物含量的唯一影响是淀粉积累略有减少。花后23天,SuSy抑制并未降低果实的体外蔗糖导入能力,即使SuSy活性降低98%,由导入蔗糖合成淀粉的速率也没有降低。然而,SuSy活性低的株系中,7日龄果实的蔗糖卸载能力大幅下降。此外,开花第一周的SuSy反义果实生长速率较慢。SuSy活性最低的植株坐果率降低,导致成熟时单株果实明显减少。这些结果表明,SuSy参与调控幼嫩番茄果实的蔗糖导入能力,而蔗糖导入能力是坐果和果实发育的决定因素。