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Recent Progress in Molecular Studies on Storage Root Formation in Sweetpotato (Ipomoea batatas)

机译:甘薯(Ipomoea batatas)贮藏根形成的分子研究新进展

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Elucidating the mechanisms underlying the formation of storage roots is important for further improvement of sweetpotato. Although the process of storage root formation in sweetpotato has been extensively studied anatomically and physiologically, the genetic and molecular mechanisms remain largely unknown. Recently, extensive gene expression analysis has identified numerous genes differentially expressed between fibrous and storage roots. The results of these analyses agreed with previous anatomical and physiological observations in that genes related to starch and storage protein biosynthesis were up-regulated, and those related to lignin biosynthesis were down-regulated in the storage roots.Also, molecular biological studies and analyses using transgenic sweetpotato plants have suggested that an expansin protein and several transcription factor genes, such as a Dof-type zinc nger protein, MADS-box proteins, and KNOXI proteins, are involved in the characteristic physiological process of storage root formation. Furthermore, ongoing whole-genome sequencing of sweetpotato and the related Ipomoea species is expected to identify genetic differences related to storage root formation. Although these studies are valuable as a first step in elucidating the critical genes and genetic network that control the formation of storage roots, further physiological, genetic, and molecular biological studies are needed to reveal the entire molecular process.
机译:阐明潜在的存储根形成机制对于进一步改善甘薯非常重要。尽管已经在解剖学和生理学上广泛研究了甘薯中贮藏根的形成过程,但其遗传和分子机制仍是未知的。近来,广泛的基因表达分析已经鉴定出许多在纤维根和贮藏根之间差异表达的基因。这些分析的结果与先前的解剖学和生理学观察结果一致,即与淀粉和贮藏蛋白生物合成相关的基因上调,而与木质素生物合成相关的基因在贮藏根中下调。转基因甘薯植物表明,扩展蛋白和几个转录因子基因,例如Dof型锌Nger蛋白,MADS-box蛋白和KNOXI蛋白,参与了贮藏根形成的特征性生理过程。此外,目前正在进行的甘薯和相关番薯属全基因组测序有望确定与贮藏根形成有关的遗传差异。尽管这些研究对于阐明控制贮藏根形成的关键基因和遗传网络的第一步是有价值的,但仍需要进一步的生理,遗传和分子生​​物学研究来揭示整个分子过程。

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