首页> 外文期刊>American Journal of Plant Sciences >Difference in Nitrogen Starvation-Inducible Expression Patterns among Phylogenetically Diverse Ammonium Transporter Genes in the Red Seaweed &i&Pyropia yezoensis&/i&
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Difference in Nitrogen Starvation-Inducible Expression Patterns among Phylogenetically Diverse Ammonium Transporter Genes in the Red Seaweed &i&Pyropia yezoensis&/i&

机译:红海藻(Pyropia yezoensis)的系统发育上不同的铵转运蛋白基因之间的氮饥饿诱导表达模式的差异。

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Nitrogen deficiency induces senescence and the expression of genes encoding ammonium transporters (AMTs) in terrestrial plants where the AMT family is subdivided into AMT1 and AMT2 subfamilies. Nitrogen starvation in the red seaweed Pyropia yezoensis causes senescence-like discoloration. In this study, we identified five genes in P . yezoensis encoding AMT do main-containing proteins, which were phylogenetically categorized into the AMT1 subfamily. We also found a gene encoding a Rhesus protein (Rh) that was related to, but diverged from, AMTs. Moreover, our phylogenetic analysis showed that AMT domain-containing proteins from micro- and macro-algae belonged to either the AMT1 or Rh subfamily, indicating the absence of AMT2 in algae. Gene expression analyses revealed the presence of gametophyte- and sporophyte-specific AMT1 genes that were up-regulated transiently and continual ly, respectively, under nitrogen-deficient conditions. In addition, up-regulated sporophyte-specific gene expression was suppressed when nitrogen was resupplied. Accordingly, an expansion of the ancient AMT gene has produced AMT1 functional variants differing in temporal and nitrogen starvation-in ducible expression patterns during the life cycle of P . yezoensis . These findings help elucidate the unique nutrition starvation responses involving functionally diverse AMT1 and Rh subfamilies in red seaweed.
机译:氮缺乏会诱导陆地植物中AMT家族细分为AMT1和AMT2子家族的陆地植物中的铵盐转运蛋白(AMT)编码基因的表达。红海藻拟南芥 yezoensis中的氮饥饿会导致衰老样变色。 在本研究中,我们在 P中鉴定了五个基因。编码AMT的 yezoensis 含有主要蛋白,这些蛋白在系统发育上被分类为AMT1亚家族。我们还发现了一个编码恒河猴蛋白(Rh)的基因,该基因与AMT相关但又有所不同。此外,我们的系统发育分析表明,来自微藻和大藻的包含AMT结构域的蛋白质属于AMT1或Rh亚科,表明藻中不存在AMT2。基因表达分析表明,在氮缺乏的条件下,分别存在瞬时和连续上调的配子体和孢子体特有的AMT1基因。另外,当氮被重新供应时,孢子体特异性基因表达的上调被抑制。因此,古代AMT基因的扩展产生了 P生命周期中在时间和氮饥饿诱导型表达模式上不同的 AMT1功能变体。 yezoensis。这些发现有助于阐明红海藻中功能多样的AMT1和Rh亚家族的独特营养饥饿反应。

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