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大豆紫色酸性磷酸酶GmPAP14主要增强植物对外部植酸盐的利用。

The Soybean Purple Acid Phosphatase GmPAP14 Predominantly Enhances External Phytate Utilization in Plants.

作者信息

Kong Youbin, Li Xihuan, Wang Bing, Li Wenlong, Du Hui, Zhang Caiying

机构信息

North China Key Laboratory for Germplasm Resources of Education Ministry, Hebei Agricultural University, Baoding, China.

出版信息

Front Plant Sci. 2018 Mar 12;9:292. doi: 10.3389/fpls.2018.00292. eCollection 2018.

Abstract

Induction and secretion of acid phosphatases (APases) is considered to be an important strategy for improving plant growth under conditions of low inorganic phosphate (Pi). Purple acid phosphatases (PAPs), are an important class of plant APases that could be secreted into the rhizosphere to utilize organic phosphorus (Po) for plant growth and development. To date, only a few members of the PAP family have been identified in soybean. In this paper, we identified a secreted PAP in soybean, GmPAP14, and investigated its role in utilizing external phytate, the main form of organic phosphorus in the soil. An analysis of its expression and promoter showed that was mainly expressed in the root and was strongly induced following Po treatment, during which its expression expanded from meristematic to maturation zones and root hairs. enzyme assays indicated that GmPAP14 had a relatively high phytase activity. Furthermore, overexpression increased secreted APase activities and phytase activities, leading to the improved use of external plant phytate, higher phosphorus content, and increased shoot weight. Thus, these results confirmed that is an important gene induced in response to Po, and that it predominantly participates in utilizing external Po to enhance plant growth and development.

摘要

酸性磷酸酶(APases)的诱导和分泌被认为是在低无机磷(Pi)条件下改善植物生长的重要策略。紫色酸性磷酸酶(PAPs)是一类重要的植物APases,可分泌到根际以利用有机磷(Po)促进植物生长发育。迄今为止,在大豆中仅鉴定出少数PAP家族成员。本文中,我们在大豆中鉴定出一种分泌型PAP,即GmPAP14,并研究了其在利用土壤中有机磷的主要形式——外源植酸中的作用。对其表达和启动子的分析表明,GmPAP14主要在根中表达,在Po处理后被强烈诱导,在此期间其表达从分生区扩展到成熟区和根毛。酶活性测定表明GmPAP14具有较高的植酸酶活性。此外,GmPAP14过表达增加了分泌型APase活性和植酸酶活性,从而改善了对外源植物植酸的利用,提高了磷含量,并增加了地上部重量。因此,这些结果证实GmPAP14是一个响应Po诱导的重要基因,并且它主要参与利用外源Po来促进植物生长发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff8f/5857590/a2e0974df2ea/fpls-09-00292-g001.jpg

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