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首页> 外文期刊>Rice >Rice miR172 induces flowering by suppressing OsIDS1 and SNB, two AP2 genes that negatively regulate expression of Ehd1 and florigens
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Rice miR172 induces flowering by suppressing OsIDS1 and SNB, two AP2 genes that negatively regulate expression of Ehd1 and florigens

机译:水稻miR172通过抑制OsIDS1和SNB来诱导开花,这两个AP2基因负面调节Ehd1和florigens的表达

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BackgroundRice is a facultative short-day plant that flowers under long days (LD) after a lengthy vegetative phase. Although several inhibitors that delay flowering have been identified, the process by which rice eventually flowers under non-permissive LD conditions is not well understood. ResultsOverexpression of miR172 reduced flowering time significantly, suggesting its role as an inducer. Levels of miR172 increased as plants aged, further supporting our findings. Transcripts of SNB and OsIDS1 , two members of the AP2 family that have the miR172 target site, were reduced in older plants as the level of miR172 rose. Overexpression of those AP2 genes delayed flowering; overexpression of miR172 -resistant forms of SNB or OsIDS1 further delayed this process. This demonstrated that the AP2 genes function downstream of miR172 . Two florigen genes -- Hd3a and RFT1 -- and their immediate upstream regulator Ehd1 were suppressed in the AP2 overexpression plants. This suggested that the AP2 genes are upstream repressors of Ehd1 . In phytochrome mutants, miR172d levels were increased whereas those of SNB and OsIDS1 were decreased. Thus, it appears that phytochromes inhibit miR172d , an AP2 suppresser. ConclusionsWe revealed that miR172d developmentally induced flowering via repressing OsIDS1 and SNB , which suppressed Ehd1 . We also showed that phytochromes negatively regulated miR172 .
机译:背景水稻是一种兼性的短日植物,在漫长的营养期后会在长日(LD)下开花。尽管已鉴定出几种延缓开花的抑制剂,但人们对水稻在非许可的LD条件下最终开花的过程尚不甚了解。结果miR172的过表达显着减少了开花时间,表明其作为诱导剂。随着植物的衰老,miR172的水平增加,进一步支持了我们的发现。随着miR172水平的提高,具有miR172目标位点的AP2家族的两个成员SNB和OsIDS1的转录本在较老的植物中减少了。这些AP2基因的过表达延迟了开花。 SNB或OsIDS1的miR172耐药形式的过表达进一步延迟了该过程。这表明AP2基因在miR172的下游起作用。 AP2过表达植物中抑制了两个荧光原基因Hd3a和RFT1及其直接上游调节子Ehd1。这表明AP2基因是Ehd1的上游阻遏物。在植物色素突变体中,miR172d水平升高,而SNB和OsIDS1水平降低。因此,似乎植物色素抑制了AP2抑制剂miR172d。结论我们发现miR172d通过抑制OsIDS1和SNB发育诱导开花,从而抑制Ehd1。我们还表明,植物色素负调控miR172。

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