Im Kyung-Hoan
Department of Biology, University of Incheon, Incheon 402-749, Korea.
Mol Cells. 2004 Jun 30;17(3):404-9.
Sucrose phosphate synthase (SPS) is responsible for sucrose synthesis in photosynthetic tissues. We have detected SPS expression in non-photosynthetic tissues. It was predominantly expressed in the basal region of developing endosperm, suggesting that sucrose is re-synthesized in this region, where sucrose is unloaded from the phloem and hydrolyzed into glucose and fructose. The SPS transcript in endosperm was approximately 300 nt smaller than in leaf. However, the size of the SPS protein was similar to that of leaf but had higher activity. SPS expression was also detected in developing and germinating embryos, indicating that sucrose resynthesis also occurs in embryos. Although the level of SPS mRNA and protein was lower in embryos than in leaf, enzymatic activity was higher. Similarly, the level of SPS transcript was 10-fold lower in endosperm than in leaf but the level of SPS protein was comparable, and activity was 2 fold higher. Thus, SPS expression was evident in maize kernels, and its expression and regulation were different from the SPS in leaf.
蔗糖磷酸合酶(SPS)负责光合组织中蔗糖的合成。我们已在非光合组织中检测到SPS的表达。它主要在发育中的胚乳基部区域表达,这表明蔗糖在该区域重新合成,在此处蔗糖从韧皮部卸载并水解为葡萄糖和果糖。胚乳中的SPS转录本比叶片中的约小300个核苷酸。然而,SPS蛋白的大小与叶片中的相似,但活性更高。在发育中和萌发的胚中也检测到SPS表达,表明胚中也发生蔗糖的重新合成。尽管胚中SPS mRNA和蛋白的水平低于叶片,但酶活性更高。同样,胚乳中SPS转录本的水平比叶片中低10倍,但SPS蛋白的水平相当,且活性高2倍。因此,SPS在玉米籽粒中的表达明显,其表达和调控与叶片中的SPS不同。