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首页> 外文期刊>The New Phytologist >ABSCISIC ACID INSENSITIVE3 regulates abscisic acid-responsive gene expression with the nuclear factor Y complex through the ACTT-core element in Physcomitrella patens
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ABSCISIC ACID INSENSITIVE3 regulates abscisic acid-responsive gene expression with the nuclear factor Y complex through the ACTT-core element in Physcomitrella patens

机译:ABSCISIC ACID INSENSITIVE3通过Physcomitrella patens中的ACTT-核心元件调节具有核因子Y复合体的脱落酸响应基因表达

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摘要

The phytohormone ABA and the transcription factor ABSCISIC ACID INSENSITIVE 3 (ABI3)/VIVIPAROUS 1 (VP1) function in protecting embryos during the desiccation stage of seed development. In a similar signaling pathway, vegetative tissue of the moss Physcomitrella patens survives desiccation by activating downstream genes (e.g. LEA1) in response to ABA and ABI3. We show that the PpLEAl promoter responds to PpABI3 primarily through the ACTT-core element (5'-TCCACTTGTC-3'), while the ACGT-core ABA-responsive element (ABRE) appears to respond to ABA alone. We also found by yeast-two-hybrid screening that PpABI3A interacts with PpNF-YC1, a subunit of CCAAT box binding factor (CBF)uclear factor Y (NF-Y). PpNF-YC1 increased the activation of the PpLEAl promoter when incubated with PpABI3A, as did NF-YB, NF-YC, and ABI3 from Arabidopsis. This new response element (ACTT) is responsible for activating the ABI3-dependent ABA response pathway cooperatively with the nuclear factor Y (NF-Y) complex. These results further define the regulatory interactions at the transcriptional level for the expression of this network of genes required for drought/desiccation tolerance. This gene regulatory set is in large part conserved between vegetative tissue of bryophytesand seeds of angiosperms and will shed light on the evolution of this pathway in the green plant lineage.
机译:植物激素ABA和转录因子ABSCISIC ACID INSENSITIVE 3(ABI3)/ VIVIPAROUS 1(VP1)在种子发育的干燥阶段具有保护胚胎的功能。在类似的信号传导途径中,苔藓小立碗藓的营养组织通过响应ABA和ABI3激活下游基因(例如LEA1)而存活下来。我们显示PpLEA1启动子主要通过ACTT核心元件(5'-TCCACTTGTC-3')响应PpABI3,而ACGT核心ABA响应元件(ABRE)似乎仅对ABA响应。我们还通过酵母双杂交筛选发现PpABI3A与PpNF-YC1(CCAAT盒结合因子(CBF)/核因子Y(NF-Y)的亚基)相互作用。与拟南芥中的NF-YB,NF-YC和ABI3一样,与PpABI3A孵育时,PpNF-YC1增加了PpLEA1启动子的激活。这个新的反应元件(ACTT)负责与核因子Y(NF-Y)复杂地合作激活ABI3依赖的ABA反应途径。这些结果进一步定义了在转录水平上针对干旱/干旱耐受性所需的基因网络表达的调控相互作用。该基因调控组在苔藓植物的营养组织和被子植物的种子之间大部分是保守的,将阐明绿色植物谱系中该途径的进化。

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