Calgene, Inc., 1920 Fifth Street, Davis, CA 95616.
Proc Natl Acad Sci U S A. 1988 Dec;85(23):8805-9. doi: 10.1073/pnas.85.23.8805.
Polygalacturonase [PG; poly(1,4-alpha-D-galacturonide) glycanhydrolase; EC 3.2.1.15] is expressed in tomato only during the ripening stage of fruit development. PG becomes abundant during ripening and has a major role in cell wall degradation and fruit softening. Tomato plants were transformed to produce antisense RNA from a gene construct containing the cauliflower mosaic virus 35S promoter and a full-length PG cDNA in reverse orientation. The construct was integrated into the tomato genome by Agrobacterium-mediated transformation. The constitutive synthesis of PG antisense RNA in transgenic plants resulted in a substantial reduction in the levels of PG mRNA and enzymatic activity in ripening fruit. The steady-state levels of PG antisense RNA in green fruit of transgenic plants were lower than the levels of PG mRNA normally attained during ripening. However, analysis of transcription in isolated nuclei demonstrated that the antisense RNA construct was transcribed at a higher rate than the tomato PG gene(s). Analysis of fruit from transgenic plants demonstrated a reduction in PG mRNA and enzymatic activity of 70-90%. The reduction in PG activity did not prevent the accumulation of the red pigment lycopene.
多聚半乳糖醛酸酶[PG;多聚(1,4-α-D-半乳糖醛酸)聚糖水解酶;EC 3.2.1.15]仅在番茄果实发育的成熟阶段表达。PG 在成熟过程中大量积累,在细胞壁降解和果实软化中起主要作用。番茄植物被转化为通过含有花椰菜花叶病毒 35S 启动子和全长 PG cDNA 的反向方向的基因构建体来产生反义 RNA。该构建体通过农杆菌介导的转化整合到番茄基因组中。反义 RNA 在转基因植物中的组成型合成导致 PG mRNA 和成熟果实中 PG 酶活性的水平显著降低。转基因植物中绿色果实中 PG 反义 RNA 的稳定水平低于成熟过程中通常达到的 PG mRNA 水平。然而,对分离核中的转录分析表明,反义 RNA 构建体的转录速率高于番茄 PG 基因。对转基因植物果实的分析表明,PG mRNA 和酶活性降低了 70-90%。PG 活性的降低并未阻止红色色素番茄红素的积累。