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淀粉合酶 IIIa 的缺失改变了六倍体面包小麦谷物中淀粉的分子结构和颗粒形态。

Loss of starch synthase IIIa changes starch molecular structure and granule morphology in grains of hexaploid bread wheat.

机构信息

John Innes Centre, Norwich, UK.

Quadram Institute Bioscience, Norwich Research Park, Norwich, NR4 7UQ, UK.

出版信息

Sci Rep. 2022 Jun 25;12(1):10806. doi: 10.1038/s41598-022-14995-0.

Abstract

Starch synthase III plays a key role in starch biosynthesis and is highly expressed in developing wheat grains. To understand the contribution of SSIII to starch and grain properties, we developed wheat ssIIIa mutants in the elite cultivar Cadenza using in silico TILLING in a mutagenized population. SSIIIa protein was undetectable by immunoblot analysis in triple ssIIIa mutants carrying mutations in each homoeologous copy of ssIIIa (A, B and D). Loss of SSIIIa in triple mutants led to significant changes in starch phenotype including smaller A-type granules and altered granule morphology. Starch chain-length distributions of double and triple mutants indicated greater levels of amylose than sibling controls (33.8% of starch in triple mutants, and 29.3% in double mutants vs. 25.5% in sibling controls) and fewer long amylopectin chains. Wholemeal flour of triple mutants had more resistant starch (6.0% vs. 2.9% in sibling controls) and greater levels of non-starch polysaccharides; the grains appeared shrunken and weighed ~ 11% less than the sibling control which was partially explained by loss in starch content. Interestingly, our study revealed gene dosage effects which could be useful for fine-tuning starch properties in wheat breeding applications while minimizing impact on grain weight and quality.

摘要

淀粉合酶 III 在淀粉生物合成中起着关键作用,在发育中的小麦籽粒中高度表达。为了了解 SSIII 在淀粉和谷物特性中的贡献,我们在一个诱变群体中使用计算机模拟 TILLING 在优质品种 Cadenza 中开发了小麦 ssIIIa 突变体。在携带每个 ssIIIa 同源拷贝(A、B 和 D)突变的三重 ssIIIa 突变体中,免疫印迹分析无法检测到 SSIIIa 蛋白。三重突变体中 SSIIIa 的缺失导致淀粉表型发生显著变化,包括 A 型颗粒变小和颗粒形态改变。双突变体和三重突变体的淀粉链长分布表明直链淀粉含量高于姊妹对照(三重突变体中的 33.8%,双突变体中的 29.3%,而姊妹对照中的 25.5%),长支链淀粉链较少。三重突变体的全麦面粉具有更高的抗性淀粉(6.0%,而姊妹对照中的 2.9%)和更多的非淀粉多糖;与姊妹对照相比,这些谷物看起来明显缩小,重量减少了约 11%,这部分是由于淀粉含量的损失。有趣的是,我们的研究揭示了基因剂量效应,这可能有助于在小麦育种应用中微调淀粉特性,同时最大限度地减少对谷物重量和质量的影响。

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