Yin Yong-Gen, Sanuki Atsuko, Goto Yukihisa, Suzui Nobuo, Kawachi Naoki, Matsukura Chiaki
Takasaki Institute for Advanced Quantum Science, National Institutes for Quantum Science and Technology (QST), Takasaki, Gunma 370-1292, Japan.
Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8572, Japan.
Plant Biotechnol (Tokyo). 2023 Dec 25;40(4):345-351. doi: 10.5511/plantbiotechnology.23.1004a.
In early developing tomato ( L.) fruit, starch accumulates at high levels and is used by various primary metabolites in ripening fruits. ADP-glucose pyrophosphorylase is responsible for the first key step of starch biosynthesis. Although it has been reported that and isoforms are mainly expressed in early developing fruit, their regulatory mechanism has not been elucidated. The present study investigated the transcriptional response of and to various metabolizable sugars, nonmetabolizable sugar analogues, hexokinase inhibitors and proline by an experimental system using half-cut fruits. was upregulated in response to sucrose and constituted hexoses such glucose, whereas the gene almost did not exhibit a prominent sugar response. Further analyses revealed that other disaccharides such maltose and trehalose did not show a remarkable effect on both and expressions. These results indicate that there are two distinct regulatory mechanisms, namely, sugar metabolism-dependent and -independent, for the regulation of AGPase gene expression. Interestingly, the ADP treatment, a hexokinase inhibitors, cancelled the sugar response of , indicating that hexokinase-mediated sugar signaling should be involved in the sugar response of These results suggest that sugar-dependent () and sugar-independent () pathways coordinatively regulate starch biosynthesis in immature tomato fruit.
在番茄(L.)果实发育早期,淀粉大量积累,并在果实成熟过程中被各种初级代谢产物利用。ADP - 葡萄糖焦磷酸化酶负责淀粉生物合成的第一步关键反应。尽管已有报道称 和 同工型主要在果实发育早期表达,但其调控机制尚未阐明。本研究通过使用半切果实的实验系统,研究了 和 对各种可代谢糖、不可代谢糖类似物、己糖激酶抑制剂和脯氨酸的转录反应。 响应蔗糖以及葡萄糖等己糖而被上调,而 基因几乎未表现出明显的糖响应。进一步分析表明,其他二糖如麦芽糖和海藻糖对 和 的表达均未显示出显著影响。这些结果表明,对于AGPase基因表达的调控存在两种不同的机制,即糖代谢依赖型和非依赖型。有趣的是,己糖激酶抑制剂ADP处理消除了 的糖响应,表明己糖激酶介导的糖信号传导应参与 的糖响应。这些结果表明,糖依赖型()和糖非依赖型()途径协同调节未成熟番茄果实中的淀粉生物合成。