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Isolation of Novel Hypoxia Responsive Persimmon ADH, PDC and ERF Genes Using RNA-Seq

机译:使用RNA-Seq分离新型低氧反应性柿子ADH,PDC和ERF基因

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摘要

The physiology of deastringency of persimmon has been widely studied, an anaerobic environment made it by converting soluble condensed tannins (SCTs) into an insoluble form. And alcohol dehydrogenase (ADH) and pyruvate decarboxylase (PDC) played a keyrole as the structural gene, which had been regulated by transcription factor ERFs. RNA-Seq is a new technology, widely used in gene isolation and expression. In the present study, 43 novel DkADH, DkPDC and DkERF unigenes were isolated using RNA-Seq, among which three ADH genes (unigene758, unigenel2916 and unigenel8616), and five PDC genes (unigenell558, unigene22704, unigene24763, unigene30806 and unigene8178) were hypoxia-inducible isoforms. Furthermore, expression of four ERF genes (unigene20841, unigene22129, unigene22569 and unigene24195), highly correlated with target genes, were also hypoxia responsive. These results suggested that these genes might be involved in astringency removal in persimmon.
机译:柿子去涩性的生理学已被广泛研究,通过将可溶性缩合单宁酸(SCT)转化为不溶形式使其成为厌氧环境。乙醇脱氢酶(ADH)和丙酮酸脱羧酶(PDC)起着关键作用,被转录因子ERFs调控。 RNA-Seq是一种新技术,广泛用于基因分离和表达。在本研究中,使用RNA-Seq分离了43种新颖的DkADH,DkPDC和DkERF单基因,其中三个ADH基因(unigene758,unigenel2916和unigenel8616)和五个PDC基因(unigenell558,unigene22704,unigene24763,unigene30806和unigene8178)是低氧的-诱导型亚型。此外,与靶基因高度相关的四个ERF基因(unigene20841,unigene22129,unigene22569和unigene24195)的表达也对缺氧有反应。这些结果表明这些基因可能与柿子的涩味去除有关。

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