James Martha G, Denyer Kay, Myers Alan M
Department of Biochemistry, Biophysics, and Molecular Biology, 1210 Molecular Biology Building, Iowa State University, Ames, Iowa 50011, USA.
Curr Opin Plant Biol. 2003 Jun;6(3):215-22. doi: 10.1016/s1369-5266(03)00042-6.
The pathway of starch synthesis in the cereal endosperm is unique, and requires enzyme isoforms that are not present in other cereal tissues or non-cereal plants. Recent information on the functions of individual enzyme isoforms has provided insight into how the linear chains and branch linkages in cereal starch are synthesized and distributed. Genetic analyses have led to the formulation of models for the roles of de-branching enzymes in cereal starch production, and reveal pleiotropic effects that suggest that certain enzymes may be physically associated. For the first time, tools for global analyses of starch biosynthesis are available for cereal crops, and are heralded by the draft sequence of the rice genome.
谷物胚乳中淀粉合成的途径是独特的,需要其他谷物组织或非谷物植物中不存在的酶同工型。关于单个酶同工型功能的最新信息,为了解谷物淀粉中的线性链和分支连接是如何合成和分布的提供了线索。遗传分析已经得出了脱支酶在谷物淀粉生产中作用的模型,并揭示了多效性效应,这表明某些酶可能在物理上是相关联的。首次有了用于谷物作物淀粉生物合成全局分析的工具,这是以水稻基因组草图序列为先导的。