首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >ZmAPRG, an uncharacterized gene, enhances acid phosphatase activity and Pi concentration in maize leaf during phosphate starvation
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ZmAPRG, an uncharacterized gene, enhances acid phosphatase activity and Pi concentration in maize leaf during phosphate starvation

机译:Zmaprg,一种无表征基因,在磷酸盐饥饿期间增强玉米叶中的酸性磷酸酶活性和PI浓度

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Key messageAn uncharacterized gene, ZmAPRG, isolated by map-based cloning, enhances acid phosphatase activity and phosphate concentration in maize leaf during phosphate starvation.AbstractAcid phosphatase (APase) plays important roles in the absorption and utilization of phosphate (Pi) during maize growth. The information on genes regulating the acid phosphatase activity (APA) in maize leaves remains obscured. In a previous study, we delimited the quantitative trait locus, QTL-AP9 for APA to a region of about 546kb. Here, we demonstrate that the GRMZM2G041022 located in the 546kb region is a novel acid phosphatase-regulating gene (ZmAPRG). Its overexpression significantly increased the APA and Pi concentration in maize and rice leaves. Subcellular localization of ZmAPRG showed that it was anchored on the plasma and nuclear membrane. The transcriptome analysis of maize ZmAPRG overexpressing lines (ZmAPRG OE) revealed 1287 up-regulated and 392 down-regulated genes. Among these, we found APase, protein phosphatase, and phosphate transporter genes, which are known to be implicated in the metabolism and utilization of Pi. We inferred the ZmAPRG functions as an upstream regulation node, directly or indirectly regulating APases, protein phosphatases, and phosphate transporter genes involved in Pi metabolism and utilization in maize. These findings will pave the way for elucidating the mechanism of APase regulation, absorption and utilization of Pi, and would facilitate maize breeding for efficient use of fertilizers.
机译:基于地图的克隆分离的关键词,ZmAPRG,磷酸盐血液中玉米叶中的酸性磷酸酶活性和磷酸盐浓度增强了玉米磷酸酶(Apase)在玉米生长期间起着重要作用。调节玉米叶中酸性磷酸酶活性(APA)的基因的信息仍然模糊不清。在先前的研究中,我们将定量性状轨迹界定为APA的定量性状轨迹,以约546KB的区域。这里,我们证明位于546KB区域的GRMZM2G041022是一种新型酸性磷酸酶调节基因(ZMAPRG)。其过度表达显着增加了玉米和米叶中的APA和PI浓度。 ZmAPRG的亚细胞定位表明它锚固在等离子体和核膜上。玉米ZMAPRG过表达线(ZMAPRG OE)的转录组分析显示1287上调和392个下调基因。其中,我们发现嗜睡,蛋白质磷酸酶和磷酸盐转运基因,已知将其涉及到代谢和PI的使用。我们推断ZMAPRG用作上游调节节点,直接或间接地调节静止,蛋白质磷酸酶和磷酸盐转运蛋白基因,参与PI代谢和玉米的利用。这些发现将阐明阐明秋季血糖调节,吸收和利用机制的方法,并促进玉米育种,以便有效地使用肥料。

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    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

    Southwest Univ Minist Agr Maize Res Inst Key Lab Biotechnol &

    Crop Qual Improvement Chongqing 400715 Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

  • 入库时间 2022-08-20 07:32:05

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