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Nitrogen transporter and assimilation genes exhibit developmental stage-selective expression in maize (Zea mays L.) associated with distinct cis-acting promoter motifs

机译:氮转运蛋白和同化基因在玉米(Zea mays L.)中表现出与不同的顺式启动子基序相关的发育阶段选择性表达

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摘要

Nitrogen is considered the most limiting nutrient for maize (Zea mays L.), but there is limited understanding of the regulation of nitrogen-related genes during maize development. An Affymetrix 82K maize array was used to analyze the expression of ≤ 46 unique nitrogen uptake and assimilation probes in 50 maize tissues from seedling emergence to 31 d after pollination. Four nitrogen-related expression clusters were identified in roots and shoots corresponding to, or overlapping, juvenile, adult, and reproductive phases of development. Quantitative real time PCR data was consistent with the existence of these distinct expression clusters. Promoters corresponding to each cluster were screened for over-represented cis-acting elements. The 8-bp distal motif of the Arabidopsis 43-bp nitrogen response element (NRE) was over-represented in nitrogen-related maize gene promoters. This conserved motif, referred to here as NRE43-d8, was previously shown to be critical for nitrate-activated transcription of nitrate reductase (NIA1) and nitrite reductase (NIR1) by the NIN-LIKE PROTEIN 6 (NLP6) in Arabidopsis. Here, NRE43-d8 was over-represented in the promoters of maize nitrate and ammonium transporter genes, specifically those that showed peak expression during early-stage vegetative development. This result predicts an expansion of the NRE-NLP6 regulon and suggests that it may have a developmental component in maize. We also report leaf expression of putative orthologs of nitrite transporters (NiTR1), a transporter not previously reported in maize. We conclude by discussing how each of the four transcriptional modules may be responsible for the different nitrogen uptake and assimilation requirements of leaves and roots at different stages of maize development.
机译:氮被认为是玉米(Zea mays L.)的最限制性养分,但是在玉米发育过程中对氮相关基因调控的认识有限。使用Affymetrix 82K玉米阵列分析从萌芽到授粉后31 d的50种玉米组织中≤46种独特的氮吸收​​和同化探针的表达。在与幼年,成年和生殖阶段相对应或重叠的根和芽中鉴定出四个与氮有关的表达簇。实时定量PCR数据与这些不同表达簇的存在一致。筛选了与每个簇相对应的启动子中过量表达的顺式作用元件。拟南芥43 bp氮响应元件(NRE)的8 bp远端基序在氮相关玉米基因启动子中过分表达。以前显示这种保守的基序,此处称为NRE43-d8,对于拟南芥中NIN-LIKE蛋白6(NLP6)的硝酸盐激活的硝酸还原酶(NIA1)和亚硝酸还原酶(NIR1)的转录至关重要。在这里,NRE43-d8在玉米硝酸盐和铵转运蛋白基因的启动子中过分代表,特别是在早期营养发育过程中表现出高峰表达的那些。该结果预测了NRE-NLP6调节子的扩增,并表明它可能在玉米中具有发育成分。我们还报告了亚硝酸盐转运蛋白(NiTR1)的假定直系同源物的叶表达,该转运蛋白先前未在玉米中报道。我们通过讨论四个转录模块中的每一个可能如何负责玉米发育不同阶段叶和根的不同氮素吸收和同化需求来得出结论。

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