Rösti Sandrine, Fahy Brendan, Denyer Kay
John Innes Centre, Norwich Research Park, Norfolk NR4 7UH, UK.
Funct Plant Biol. 2007 Jun;34(6):480-489. doi: 10.1071/FP06257.
A mutant of rice was identified with a Tos17 insertion in OsAPL1, a gene encoding a large subunit (LSU) of ADP-glucose pyrophosphorylase (AGPase). The insertion prevents production of a normal transcript from OsAPL1. Characterisation of the mutant (apl1) showed that the LSU encoded by OsAPL1 is required for AGPase activity in rice leaf blades. In mutant leaf blades, the AGPase small subunit protein is not detectable and the AGPase activity and starch content are reduced to <1 and <5% of that in wild type blades, respectively. The mutation also leads to a reduction in starch content in the leaf sheaths but does not significantly affect AGPase activity or starch synthesis in other parts of the plant. The sucrose, glucose and fructose contents of the leaves are not affected by the mutation. Despite the near absence of starch in the leaf blades, apl1 mutant rice plants grow and develop normally under controlled environmental conditions and show no reduction in productivity.
在水稻中鉴定出一个突变体,其在OsAPL1基因中有Tos17插入,OsAPL1基因编码ADP - 葡萄糖焦磷酸化酶(AGPase)的大亚基(LSU)。该插入阻止了OsAPL1正常转录本的产生。对该突变体(apl1)的表征表明,OsAPL1编码的大亚基是水稻叶片中AGPase活性所必需的。在突变体叶片中,AGPase小亚基蛋白无法检测到,并且AGPase活性和淀粉含量分别降至野生型叶片的<1%和<5%。该突变还导致叶鞘中淀粉含量降低,但对植物其他部位的AGPase活性或淀粉合成没有显著影响。叶片中的蔗糖、葡萄糖和果糖含量不受该突变影响。尽管叶片中几乎没有淀粉,但apl1突变体水稻植株在可控环境条件下正常生长发育,生产力没有降低。