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A rice mutant lacking a large subunit of ADP-glucose pyrophosphorylase has drastically reduced starch content in the culm but normal plant morphology and yield.

机译:缺少ADP-葡萄糖焦磷酸化酶大亚基的水稻突变体,茎秆中的淀粉含量大大降低,但植物形态和产量却正常。

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摘要

A mutant of rice (Oryza sativa L.) was identified with a Tos17 insertion in Os05g50380, a gene encoding a plastidial large subunit (LSU) of ADP-glucose pyrophosphorylase (AGPase) that was previously called OsAPL3 or OsAGPL1. The insertion prevents the production of a normal transcript. Characterisation of the mutant showed that this LSU is required for 97% of the starch synthesised in the flowering stem (culm), approximately half of the AGPase activity in developing embryos and that it contributes to AGPase activity in the endosperm. Despite the near absence of starch in the culms and reduced starch content in the embryos, the mutant rice plants grow and develop normally, and show no reduction in productivity. The starch content of leaves is increased in the mutant, revealing plasticity in the distribution of photosynthates among different temporary carbohydrate storage pools within the plant.
机译:水稻的一个突变体(Oryza sativa L.)被鉴定为在Os05g50380中插入了Tos17,Os05g50380是一个编码ADP葡萄糖焦磷酸化酶(AGPase)的质体大亚基(LSU)的基因,以前称为OsAPL3或OsAGPL1。该插入阻止了正常转录本的产生。突变体的特征表明,LSU是开花茎(茎)中合成的97%淀粉所必需的,约占发育中胚芽中AGPase活性的一半,并且它有助于胚乳中AGPase活性。尽管茎中几乎没有淀粉并且胚中的淀粉含量降低,但是突变水稻植物仍正常生长和发育,并且生产力没有降低。突变体中叶片的淀粉含量增加,揭示了植物内不同临时碳水化合物储存池之间光合产物分布的可塑性。

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