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The maize ( Zea mays ssp. mays var. B73) genome encodes 33 members of the purple acid phosphatase family

机译:玉米( Zea mays ssp。 mays var。B73)基因组编码紫色酸性磷酸酶家族的33个成员

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Purple acid phosphatases (PAPs) play an important role in plant phosphorus nutrition, both by liberating phosphorus from organic sources in the soil and by modulating distribution within the plant throughout growth and development. Furthermore, members of the PAP protein family have been implicated in a broader role in plant mineral homeostasis, stress responses and development. We have identified 33 candidate PAP encoding gene models in the maize ( Zea mays ssp. mays var. B73) reference genome. The maize Pap family includes a clear single-copy ortholog of the Arabidopsis gene AtPAP26 , shown previously to encode both major intracellular and secreted acid phosphatase activities. Certain groups of PAPs present in Arabidopsis , however, are absent in maize, while the maize family contains a number of expansions, including a distinct radiation not present in Arabidopsis . Analysis of RNA-sequencing based transcriptome data revealed accumulation of maize Pap transcripts in multiple plant tissues at multiple stages of development, and increased accumulation of specific transcripts under low phosphorus availability. These data suggest the maize PAP family as a whole to have broad significance throughout the plant life cycle, while highlighting potential functional specialization of individual family members.
机译:紫色酸性磷酸酶(PAP)在植物磷营养中起着重要作用,既可以从土壤中的有机物中释放磷,又可以在植物整个生长和发育过程中调节其分布。此外,PAP蛋白家族的成员与植物矿物质体内稳态,胁迫反应和发育中的广泛作用有关。我们在玉米(Zea mays ssp。mays var。B73)参考基因组中鉴定了33个候选PAP编码基因模型。玉米Pap家族包括拟南芥基因AtPAP26的清晰的单拷贝直系同源物,以前显示它编码主要的细胞内和分泌型酸性磷酸酶活性。然而,玉米中不存在某些拟南芥中的PAPs,而玉米家族包含许多扩展,包括拟南芥中不存在的独特辐射。基于RNA测序的转录组数据分析显示,玉米Pap转录本在多个发育阶段在多个植物组织中积累,并且在低磷利用率下特定转录本的积累增加。这些数据表明,玉米PAP家族作为一个整体在整个植物生命周期中具有广泛的意义,同时强调了单个家族成员的潜在功能专业化。

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