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Novel mutant alleles of the starch synthesis gene TaSSIVb - D result in the reduction of starch granule number per chloroplast in wheat

机译:淀粉合成基因TaSSIVb-D的新突变等位基因导致小麦每个叶绿体的淀粉颗粒数量减少

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Background Transient starch provides carbon and energy for plant growth, and its synthesis is regulated by the joint action of a series of enzymes. Starch synthesis IV (SSIV) is one of the important starch synthase isoforms, but its impact on wheat starch synthesis has not yet been reported due to the lack of mutant lines. Results Using the TILLING approach, we identified 54 mutations in the wheat gene TaSSIVb - D , with a mutation density of 1/165 Kb. Among these, three missense mutations and one nonsense mutation were predicted to have severe impacts on protein function. In the mutants, TaSSIVb - D was significantly down-regulated without compensatory increases in the homoeologous genes TaSSIVb - A and TaSSIVb - B . Altered expression of TaSSIVb - D affected granule number per chloroplast; compared with wild type, the number of chloroplasts containing 0–2 granules was significantly increased, while the number containing 3–4 granules was decreased. Photosynthesis was affected accordingly; the maximum quantum yield and yield of PSII were significantly reduced in the nonsense mutant at the heading stage. Conclusions These results indicate that TaSSIVb - D plays an important role in the formation of transient starch granules in wheat, which in turn impact the efficiency of photosynthesis. The mutagenized population created in this study allows the efficient identification of novel alleles of target genes and could be used as a resource for wheat functional genomics.
机译:背景技术瞬时淀粉为植物生长提供了碳和能量,其合成受一系列酶的联合作用调节。淀粉合成IV(SSIV)是重要的淀粉合酶同工型之一,但由于缺乏突变株系,尚未报道其对小麦淀粉合成的影响。结果使用TILLING方法,我们在小麦基因TaSSIVb-D中鉴定出54个突变,突变密度为1/165 Kb。其中,三个错义突变和一个无义突变预计对蛋白质功能有严重影响。在突变体中,TaSSIVb-D显着下调,而同源基因TaSSIVb-A和TaSSIVb-B没有补偿性增加。 TaSSIVb-D改变的表达影响每个叶绿体的颗粒数;与野生型相比,含有0–2个颗粒的叶绿体数量明显增加,而含有3–4个颗粒的叶绿体数量却减少了。光合作用受到相应影响;在抽穗期无义突变体中,最大量子产率和PSII的产率显着降低。结论这些结果表明,TaSSIVb-D在小麦瞬时淀粉颗粒的形成中起着重要作用,进而影响光合作用的效率。在这项研究中创建的诱变的种群可以有效地鉴定目标基因的新等位基因,并可以用作小麦功能基因组学的资源。

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