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细胞外 dNTP 利用与大豆根细胞壁蛋白质组分析中鉴定的 GmPAP1 样蛋白的关联。

Association of extracellular dNTP utilization with a GmPAP1-like protein identified in cell wall proteomic analysis of soybean roots.

机构信息

Root Biology Center, State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural University, Guangzhou, P. R. China.

Institute of Tropical Crop Genetic Resources, Chinese Academy of Tropical Agriculture Sciences, Hainan, P. R. China.

出版信息

J Exp Bot. 2018 Jan 23;69(3):603-617. doi: 10.1093/jxb/erx441.

Abstract

Plant root cell walls are dynamic systems that serve as the first plant compartment responsive to soil conditions, such as phosphorus (P) deficiency. To date, evidence for the regulation of root cell wall proteins (CWPs) by P deficiency remains sparse. In order to gain a better understanding of the roles played by CWPs in the roots of soybean (Glycine max) in adaptation to P deficiency, we conducted an iTRAQ (isobaric tag for relative and absolute quantitation) proteomic analysis. A total of 53 CWPs with differential accumulation in response to P deficiency were identified. Subsequent qRT-PCR analysis correlated the accumulation of 21 of the 27 up-regulated proteins, and eight of the 26 down-regulated proteins with corresponding gene expression patterns in response to P deficiency. One up-regulated CWP, purple acid phosphatase 1-like (GmPAP1-like), was functionally characterized. Phaseolus vulgaris transgenic hairy roots overexpressing GmPAP1-like displayed an increase in root-associated acid phosphatase activity. In addition, relative growth and P content were significantly enhanced in GmPAP1-like overexpressing lines compared to control lines when deoxy-ribonucleotide triphosphate (dNTP) was applied as the sole external P source. Taken together, the results suggest that the modulation of CWPs may regulate complex changes in the root system in response to P deficiency, and that the cell wall-localized GmPAP1-like protein is involved in extracellular dNTP utilization in soybean.

摘要

植物根细胞壁是一个动态系统,作为对土壤条件(如磷缺乏)做出响应的第一个植物区室。迄今为止,关于磷缺乏对根细胞壁蛋白(CWPs)的调节作用的证据仍然很少。为了更好地理解 CWPs 在大豆(Glycine max)根中对磷缺乏的适应中所起的作用,我们进行了 iTRAQ(相对和绝对定量的同位素标记)蛋白质组学分析。共鉴定出 53 种对磷缺乏有差异积累的 CWPs。随后的 qRT-PCR 分析将 27 个上调蛋白中的 21 个和 26 个下调蛋白中的 8 个与相应的基因表达模式相关联。一个上调的 CWP,紫色酸性磷酸酶 1 样(GmPAP1-ike),其功能特征得到了描述。过表达 GmPAP1-ike 的菜豆转基因毛状根显示出根相关酸性磷酸酶活性增加。此外,与对照系相比,在脱氧核糖核苷酸三磷酸(dNTP)作为唯一的外部磷源时,GmPAP1-ike 过表达系的相对生长和磷含量显著增加。总之,这些结果表明,CWPs 的调节可能调节根系统对磷缺乏的复杂变化,并且细胞定位的 GmPAP1-ike 蛋白参与大豆细胞外 dNTP 的利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27b/5853315/ed44a01ddc37/erx44101.jpg

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