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A gain-of-function Bushy dwarf tiller 1 mutation in rice microRNA gene miR156d caused by insertion of the DNA transposon nDart1

机译:插入DNA转座子nDart1导致水稻microRNA基因miR156d中功能增强的矮矮秆分er1突变

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摘要

A non-autonomous DNA transposon in rice, nDart1, is actively transposed in the presence of an autonomous element, aDart1, under natural conditions. The nDart1-promoted gene tagging line was developed using the endogenous nDart1/aDart1 system to generate various rice mutants effectively. While the dominant mutants were occasionally isolated from the tagging line, it was unclear what causes dominant mutations. A semidominant mutant, Bushy dwarf tiller1 (Bdt1), which has the valuable agronomic traits of multiple tillering and dwarfism, was obtained from the tagging line. Bdt1 mutant carried a newly inserted nDart1 at 38-bp upstream of transcription initiation site of a non-protein-coding gene, miR156d. This insertion caused an upstream shift of the miR156d transcription initiation site and, consequently, increased the functional transcripts producing mature microRNAs. These results indicate that the total amount of miR156d is controlled not only by transcript quantity but also by transcript quality. Furthermore, transgenic lines introduced an miR156d fragment that flanked the nDart1 sequence at the 5′ region, suggesting that insertion of nDart1 in the gene promoter region enhances gene expression as a cis-element. This study demonstrates the ability of nDart1 to produce gain-of-function mutants as well as further insights into the function of transposable elements in genome evolution.
机译:水稻中的非自主DNA转座子nDart1在自然条件下在存在自主元素aDart1的情况下被主动转座。利用内源性nDart1 / aDart1系统开发了nDart1促进的基因标签系,以有效地产生各种水稻突变体。尽管偶尔会从标签线中分离出显性突变,但尚不清楚是什么导致显性突变。从标记线获得了半显性突变体,矮矮秆分till1(Bdt1),其具有多个分er和矮化的宝贵农艺性状。 Bdt1突变体在非蛋白质编码基因miR156d的转录起始位点上游38 bp处携带新插入的nDart1。这种插入导致miR156d转录起始位点向上游移动,因此,增加了产生成熟microRNA的功能性转录物。这些结果表明,miR156d的总量不仅受转录本数量的控制,而且还受转录本质量的控制。此外,转基因品系引入了一个miR156d片段,该片段位于5'区域nDart1序列的侧面,表明在基因启动子区域插入nDart1增强了顺式元件的基因表达。这项研究证明了nDart1产生功能增益突变体的能力,以及对转座因子在基因组进化中功能的进一步了解。

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