首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Systematic Identification Evolution and Expression Analysis of the Zea mays PHT1 Gene Family Reveals Several New Members Involved in Root Colonization by Arbuscular Mycorrhizal Fungi
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Systematic Identification Evolution and Expression Analysis of the Zea mays PHT1 Gene Family Reveals Several New Members Involved in Root Colonization by Arbuscular Mycorrhizal Fungi

机译:玉米PHT1基因家族的系统鉴定进化和表达分析揭示了丛枝菌根真菌参与根定殖的几个新成员。

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摘要

The Phosphate Transporter1 (PHT1) family of genes plays pivotal roles in the uptake of inorganic phosphate from soils. However, there is no comprehensive report on the PHT1 family in Zea mays based on the whole genome. In the present study, a total of 13 putative PHT1 genes (ZmPHT1;1 to 13) were identified in the inbred line B73 genome by bioinformatics methods. Then, their function was investigated by a yeast PHO84 mutant complementary experiment and qRT-PCR. Thirteen ZmPHT1 genes distributed on six chromosomes (1, 2, 5, 7, 8 and 10) were divided into two paralogues (Class A and Class B). ZmPHT1;1/ZmPHT1;9 and ZmPHT1;9/ZmPHT1;13 are produced from recent segmental duplication events. ZmPHT1;1/ZmPHT1;13 and ZmPHT1;8/ZmPHT1;10 are produced from early segmental duplication events. All 13 putative ZmPHT1s can completely or partly complement the yeast Pi-uptake mutant, and they were obviously induced in maize under low Pi conditions, except for ZmPHT1;1 (p < 0.01), indicating that the overwhelming majority of ZmPHT1 genes can respond to a low Pi condition. ZmPHT1;2, ZmPHT1;4, ZmPHT1;6, ZmPHT1;7, ZmPHT1;9 and ZmPHT1;11 were up-regulated by arbuscular mycorrhizal fungi (AMF), implying that these genes might participate in mediating Pi absorption and/or transport. Analysis of the promoters revealed that the MYCS and P1BS element are widely distributed on the region of different AMF-inducible ZmPHT1 promoters. In light of the above results, five of 13 ZmPHT1 genes were newly-identified AMF-inducible high-affinity phosphate transporters in the maize genome. Our results will lay a foundation for better understanding the PHT1 family evolution and the molecular mechanisms of inorganic phosphate transport under AMF inoculation.
机译:磷酸转运蛋白1(PHT1)基因家族在从土壤吸收无机磷酸中起关键作用。然而,没有关于基于整个基因组的玉米中的PHT1家族的全面报道。在本研究中,通过生物信息学方法在自交系B73基因组中鉴定出总共13个推定的PHT1基因(ZmPHT1; 1至13)。然后,通过酵母PHO84突变体互补实验和qRT-PCR研究了它们的功能。分布在六个染色体(1、2、5、7、8和10)上的13个ZmPHT1基因被分为两个旁系同源物(A类和B类)。 ZmPHT1; 1 / ZmPHT1; 9和ZmPHT1; 9 / ZmPHT1; 13是从最近的分段复制事件中产生的。 ZmPHT1; 1 / ZmPHT1; 13和ZmPHT1; 8 / ZmPHT1; 10是由早期的节段复制事件产生的。所有13个推定的ZmPH​​T1s都可以完全或部分补充酵母Pi的吸收突变体,并且除了ZmPHT1; 1(p <0.01)外,它们在低Pi条件下明显地在玉米中被诱导,这表明绝大多数ZmPHT1基因可以响应低Pi条件。 ZmPHT1; 2 ZmPHT1; 4 ZmPHT1; 6 ZmPHT1; 7 ZmPHT1; 9 ZmPHT1; 11 被丛枝菌根真菌(AMF)上调,暗示这些基因可能参与介导Pi吸收和/或转运。对启动子的分析表明,MYCS和P1BS元件广泛分布在不同的AMF诱导型 ZmPHT1 启动子区域。根据上述结果,玉米基因组中13个 ZmPHT1 基因中有5个是新鉴定的AMF诱导型高亲和力磷酸盐转运蛋白。我们的结果将为更好地理解 PHT1 家族的进化以及AMF接种下无机磷酸盐转运的分子机制奠定基础。

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