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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Silencing against the conserved NAC domain of the potato StNAC103 reveals new NAC candidates to repress the suberin associated waxes in phellem
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Silencing against the conserved NAC domain of the potato StNAC103 reveals new NAC candidates to repress the suberin associated waxes in phellem

机译:沉默于Potato STNAC103的保守NAC领域揭示了新的NAC候选者,以抑制诸如Phelleme的Suberin相关的蜡质

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Both suberin and its associated waxes contribute to the formation of apoplastic barriers that protect plants from the environment. Some transcription factors have emerged as regulators of the suberization process. The potato StNAC103 gene was reported as a repressor of suberin polyester and suberin-associated waxes deposition because its RNAi-mediated downregulation (StNAC103-RNAi) over-accumulated suberin and associated waxes in the tuber phellem concomitantly with the induction of representative biosynthetic genes. Here, to explore if other genes of the large NAC gene family participate to this repressive function, we extended the silencing to other NAC members by targeting the conserved NAC domain of StNAC103 (StNAC103-RNAi-c). Transcript profile of the StNAC103-RNAi-c phellem indicated that StNAC101 gene was an additional potential target. In comparison with StNAC103-RNAi, the silencing with StNAC103-RNAi-c construct resulted in a similar effect in suberin but yielded an increased load of associated waxes in tuber phellem, mainly alkanes and feruloyl esters. Globally, the chemical effects in both silenced lines are supported by the transcript accumulation profile of genes involved in the biosynthesis, transport and regulation of apoplastic lipids. In contrast, the genes of polyamine biosynthesis were downregulated. Altogether these results point out to StNAC101 as a candidate to repress the suberin-associated waxes.
机译:Suberin及其相关的蜡都有助于形成保护植物的妊娠障碍。一些转录因子已被出现为芬制过程的监管机构。将马铃薯STNAC103基因报告为Suberin聚酯和Suberin相关的蜡沉积的阻遏物,因为其RNAi介导的下调(STNAC103-RNAi)伴随着簇生的含量累积的Suberin和相关蜡,同时伴随着代表性生物合成基因的诱导。在这里,为了探讨大型NAC基因家族的其他基因参与这种抑制功能,我们通过靶向STNAC103的保守NAC结构域(STNAC103-RNAI-C)将沉默扩展到其他NAC成员。 STNAC103-RNAI-C Phellem的转录物分布表明,STNAC101基因是额外的潜在靶标。与STNAC103-RNAi相比,STNAC103-RNAI-C构建体的沉默导致Suberin的效果类似,但在块茎磷酸盐中产生了增加的相关蜡,主要是烷烃和Feruloyler。在全球范围内,沉默线中的化学效果由参与生物合成,运输和调节的基因的转录物累积曲线支持。相反,下调多胺生物合成的基因。这些结果一定要指出STNAC101作为压制Suberin相关蜡的候选者。

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