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Exogenous sucrose utilization and starch biosynthesis among sweetpotato cultivars

机译:甘薯品种外源蔗糖利用与淀粉生物合成。

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Three sweetpotato cultivars were investigated for their starch content and amylose/amylopectin ratio. Ym starch contains 87.2% amylopectin and 12.8% amylose, when total starch was calculated as 100%. The Zm cultivar contains 33.6% amylopectin and 18.2% amylose, and its total starch was calculated as 51.8% of that of Ym. The Hm cultivar contains 39.1% amylopectin and 30.5% amylose, and its total starch was 69.6%. We analyzed the expression levels of starch and sucrose biosynthesis-related genes including AGPases a, b, and c; sucrose synthases I and II; starch synthase 1; GBSS 1; and SBEs I and II. All genes tested in this experiment were detected only in Ym, while several genes showed very faint or no expression in Zm and Hm. We also measured tissue-specific expression of these genes in whole plants of Ym. Most of the genes are expressed in the stem and roots of the plants. Expression profiles of starch synthesis-related genes of the sweetpotato leaves were investigated after supplementing the different concentrations of sucrose solution. All genes in Ym were clearly induced by sucrose, but the expression levels of some of these genes did not change in Zm and Hm. The total starch content of Ym, Zm, and Hm gradually increased over time on addition of 3%, 6%, and 9% sucrose concentrations. The greatest accumulation was observed in Ym at 48 h, and it was almost 2.24 times higher than that of the (0%) control, while Zm and Hm showed 1.76 and 1.91 times higher levels of starch, respectively. These results indicate that cooperative expression of all related genes is essential for starch biosynthesis from sucrose. This is the first report on different sucrose contents and the efficiency with which exogenous sucrose switches on gene expression of starch biosynthesis-related genes among cultivars.
机译:研究了三个甘薯品种的淀粉含量和直链淀粉/支链淀粉的比例。当总淀粉计算为100%时,Ym淀粉包含87.2%支链淀粉和12.8%直链淀粉。 Zm品种包含33.6%支链淀粉和18.2%直链淀粉,经计算其总淀粉为Ym的51.8%。 Hm品种包含39.1%支链淀粉和30.5%直链淀粉,其总淀粉为69.6%。我们分析了淀粉和蔗糖生物合成相关基因(包括AGPases a,b和c)的表达水平;蔗糖合酶I和II;淀粉合酶1; GBSS 1;以及SBE I和II。在该实验中测试的所有基因仅在Ym中检测到,而几个基因在Zm和Hm中显示非常微弱或没有表达。我们还测量了Ym整个植物中这些基因的组织特异性表达。大多数基因在植物的茎和根中表达。补充不同浓度的蔗糖溶液后,研究了甘薯叶淀粉合成相关基因的表达谱。蔗糖显然诱导了Ym中的所有基因,但是其中一些基因的表达水平在Zm和Hm中没有变化。在添加3%,6%和9%的蔗糖浓度后,Ym,Zm和Hm的总淀粉含量随时间逐渐增加。在48 h的Ym中观察到最大的积累,几乎是(0%)对照的2.24倍,而Zm和Hm分别显示高1.76和1.91倍的淀粉含量。这些结果表明所有相关基因的协同表达对于蔗糖淀粉生物合成至关重要。这是关于不同蔗糖含量以及外源蔗糖转换品种间淀粉生物合成相关基因的基因表达效率的首次报道。

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