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The synergistic effects of TaAGP . L-B1 and TaSSIVb-D mutations in wheat lead to alterations of gene expression patterns and starch content in grain development

机译:TAAGP的协同效应。 小麦的L-B1和Tassivb-D突变导致晶粒发育中基因表达模式和淀粉含量的改变

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Starch is synthesized from a series of reactions catalyzed by enzymes. ADP-glucose pyrophosphorylase (AGPase) initiates the synthesis pathway and synthesizes ADP-glucose, the substrate of starch synthase (SS), of which SSIV is an isoform. Mutations of the AGPase subunit and SSIV-coding genes affect starch content and cause variation in the number of granules. Here, we pyramided the functional mutation alleles of the AGPase subunit gene TaAGP . L-B1 and the SSIV-coding gene TaSSIVb-D to elucidate their synergistic effects on other key starch biosynthesis genes and their impact on starch content. Both the TaAGP . L-B1 and TaSSIVb-D genes were expressed in wheat grain development, and the expression level of TaAGP . L-B1 was higher than that of TaSSIVb-D . The TaAGP . L-B1 gene was downregulated in the agp . L-B1 single and agp . L-B1/ssIV-D double mutants at 12 to 18 days after flowering (DAF). TaSSIVb-D expression was significantly reduced at 6 DAF in both ssIV-D single and double mutants. In the agp . L-B1/ssIV-D double mutant, TaGBSSII was upregulated, while TaAGPSS , TaSSI , and TaSBEII were downregulated. Under the interaction of these genes, the total starch and amylopectin contents were significantly decreased in agp . L-B1 and agp . L-B1/ssIV-D mutants. The results suggested that the mutations of TaAGP . L-B1 and TaSSIVb-D genes resulted in variation in the expression patterns of the other four starch synthetic genes and led to a reduction in starch and amylopectin contents. These mutants could be used further as germplasm for resistant starch analysis.
机译:淀粉由酶催化的一系列反应合成。 ADP-葡萄糖焦磷酸化酶(AGP酶)引发合成途径并合成ADP-葡萄糖,淀粉合酶(SS)的基材,其中SSIV是同种型。 AGPase亚基和SSIV编码基因的突变影响淀粉含量并导致颗粒数量的变化。在这里,我们赞成AGPase亚基基因Taagp的功能突变等位基因。 L-B1和SSIV编码基因Tassivb-D阐明其对其他关键淀粉生物合成基因的协同作用及其对淀粉含量的影响。这都是Taagp。 L-B1和Tassivb-D基因在小麦籽粒发育中表达,以及TAAGP的表达水平。 L-B1高于Tassivb-D。 Taagp。 L-B1基因在AGP中下调。 L-B1单和AGP。 L-B1 / SSIV-D双突变体12至18天后(DAF)。在SSIV-D单一和双突变体中,Tassivb-D在6个DAF中显着降低。在AGP中。 L-B1 / SSIV-D双突变体,TagBSSII是上调的,而TAGPSS,TASSI和TASBEII被下调。在这些基因的相互作用下,AGP的总淀粉和支链淀粉含量显着降低。 L-B1和AGP。 L-B1 / SSIV-D突变体。结果表明TAAGP的突变。 L-B1和Tassivb-D基因导致其他四种淀粉合成基因的表达模式的变化,并导致淀粉和支链淀粉蛋白含量的降低。这些突变体可以进一步用于用于抗性淀粉分析的种质。

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