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Functional conservation of wheat orthologs of maize rough sheath1 and rough sheath2 genes

机译:玉米粗鞘1和粗鞘2基因小麦直系同源物的功能保护。

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摘要

Maize rough sheath2 (RS2) and Arabidopsis ASYMMETRIC LEAVES1 (AS1) both encode a Myb transcription factor and repress Knotted1-type homeobox (KNOX) genes. The RS2/AS1-KNOX relationship is functionally conserved between maize and Arabidopsis. Here, we cloned wheat orthologs of RS2/AS1 and of a maize rough sheath1 (rs1) KNOX gene and named them WRS2 and WRS1, respectively. WRS1 mRNA was detected at leaf insertion points of the vegetative shoot meristem but was missing in differentiating floral organs. Conversely, WRS2 transcripts accumulated in initiating and developing floral organs. Transgenic tobacco plants expressing WRS1 showed morphological alterations typically observed due to expression of other KNOX genes. WRS2 with a deletion of the Myb domain could interact with NtPHAN to form a heterodimer, and expression of the truncated WRS2 gene conferred a dominant-negative phenotype similar to that expected and induced ectopic expression of an endogenous KNOX gene. Moreover, WRS2 expression alleviated morphological alterations in tobacco plants expressing the wheat KNOX gene. Therefore, the WRS2 gene product represses KNOX expression. These results indicate that the WRS2-KNOX relationship plays a fundamentally important role in lateral organ initiation and differentiation of meristems in wheat development. The antagonistic relationship between WRS2 and KNOX around meristematic tissues has been functionally conserved during wheat evolution.
机译:玉米粗鞘2(RS2)和拟南芥不对称叶1(AS1)均编码Myb转录因子并抑制Knotted1型同源盒(KNOX)基因。 RS2 / AS1-KNOX关系在玉米和拟南芥之间在功能上是保守的。在这里,我们克隆了小麦RS2 / AS1的直系同源基因和玉米粗鞘1(rs1)KNOX基因的直系同源基因,分别命名为WRS2和WRS1。在营养枝分生组织的叶片插入点检测到WRS1 mRNA,但在分化花器官中缺失。相反,WRS2转录物在启动和发育花器官时积累。表达WRS1的转基因烟草植物表现出通常由于其他KNOX基因的表达而引起的形态学改变。具有Myb结构域缺失的WRS2可以与NtPHAN相互作用形成异二聚体,而截短的WRS2基因的表达具有显着的负表型,类似于预期和诱导的内源性KNOX基因的异位表达。此外,WRS2表达减轻了表达小麦KNOX基因的烟草植物的形态变化。因此,WRS2基因产物抑制KNOX表达。这些结果表明,WRS2-KNOX关系在小麦发育中分生组织的侧向器官起始和分化中起着根本性的重要作用。在小麦进化过程中,分生组织周围的WRS2与KNOX之间的拮抗关系在功能上得以保留。

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