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A new isoform of thioredoxin h group in potato, SbTRXh1, regulates cold-induced sweetening of potato tubers by adjusting sucrose content.

机译:马铃薯中一种新的硫氧还蛋白h基团亚型 SbTRXh1 ,可通过调节蔗糖含量来调节马铃薯块茎的冷诱导甜味。

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摘要

In order to study the molecular mechanism of the cold-induced sweetening (CIS) of potato tubers, a novel isoform of thioredoxin h group, SbTRXh1, which was up-regulated early in the 4 degrees C storage of CIS-resistant potato (Solanum berthaultii) tubers, was cloned in present research. The genetic transformation of over-expression (OE) and RNA interference (RNAi) of SbTRXh1 into potato cv. E-Potato 3 (E3) was carried out to clarify its function in CIS regulation. The results showed that the transcripts of SbTRXh1 in either OE- or RNAi-tubers were strongly induced in 4 degrees C storage and quantitatively related to the reducing sugar (RS) accumulation, indicating that SbTRXh1 is involved in the CIS process of potato tubers. Regression analysis between the transcripts and protein contents of SbTRXh1 showed a very significant logarithmic relationship implying that the expression of SbTRXh1 may be mainly regulated at transcriptional level. Further monitoring the variation of the sugar contents in cold-stored tubers demonstrated a linear relationship between RS and sucrose (Suc). Thus, it can be inferred that SbTRXh1 may function in the Suc-RS pathway for CIS regulation of potato tubers. Key messageSbTRXh1 is primarily demonstrated to be involved in the regulation of cold-induced sweetening (CIS) of potato tubers, and it may function in the Suc-RS pathway for CIS regulation
机译:为了研究马铃薯块茎冷诱导甜化(CIS)的分子机制,一种硫氧还蛋白h基团的新亚型 SbTRXh1 在马铃薯4摄氏度的贮藏初期被上调。在本研究中克隆了耐CIS的马铃薯(Solanum berthaultii)块茎。 SbTRXh1 的过表达(OE)和RNA干扰(RNAi)的遗传转化为马铃薯。进行了E-Potato 3(E3)来阐明其在CIS监管中的功能。结果表明, SbTRXh1 的转录本在OE-或RNAi块茎中均在4°C的储存条件下被强烈诱导,并与还原糖(RS)的积累定量相关,表明 SbTRXh1 < / i>参与了马铃薯块茎的CIS过程。 SbTRXh1的转录本和蛋白质含量之间的回归分析显示出非常显着的对数关系,这表明 SbTRXh1 的表达可能主要在转录水平上受到调节。进一步监测冷藏块茎中糖含量的变化表明RS与蔗糖(Suc)之间存在线性关系。因此,可以推断 SbTRXh1 可能在马铃薯块茎CIS调控的Suc-RS途径中发挥作用。 主要信息SbTRXh1 主要被证明与马铃薯块茎的冷诱导甜化(CIS)调控有关,并且可能在CIS调控的Suc-RS途径中起作用

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