State Key Lab of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China.
School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510006, China.
J Hazard Mater. 2024 Aug 5;474:134867. doi: 10.1016/j.jhazmat.2024.134867. Epub 2024 Jun 8.
Organic phosphorus (P) is a large component of soil P, but it is often unavailable for plant uptake. Purple acid phosphatases (PAP) can hydrolyze a wide range of P, playing an important role in P utilization by plants. In this study, we investigated a novel secretary PvPAP1 from the As-hyperaccumulator Pteris vittata, which can effectively utilize exogenous P, including adenosine triphosphate (ATP) and phytate. Unlike other PAP, PvPAP1 was abundantly-expressed in P. vittata roots, which was upregulated 3.5-folds under P-deprivation than P-sufficient conditions. When expressed in tobacco, its activity in the roots of PvPAP1-Ex lines was ∼8 folds greater than that in wild-type (WT) plants. Besides, PvPAP1 exhibited its secretory ability as evidenced by the sapphire-blue color on the root surface after treating with 5-bromo-4-chloro-3-indolyl phosphate. In a long-term experiment using sand media, PvPAP1-expressing tobacco plants showed 25-30 % greater root biomass than WT plants when using ATP as the sole P source. This is because PvPAP1-expression enhanced its phosphatase activity by 6.5-9.2 folds in transgenic tobacco, thereby increasing the P contents by 39-41 % in its roots under ATP treatment and 9.4-30 % under phytate treatment. The results highlight PvPAP1 as a novel secreted phosphatase crucial for external P utilization in P. vittata, suggesting that PvPAP1 has the potential to serve as a valuable gene resource for enhancing P utilization by crop plants.
有机磷(P)是土壤 P 的重要组成部分,但通常植物难以利用。紫色酸性磷酸酶(PAP)可以水解多种 P,在植物利用 P 方面发挥着重要作用。本研究从砷超富集植物蜈蚣草中发现了一种新型分泌型 PvPAP1,它可以有效地利用外源性 P,包括三磷酸腺苷(ATP)和植酸。与其他 PAP 不同,PvPAP1在蜈蚣草根中大量表达,在缺磷条件下比磷充足条件下高表达 3.5 倍。在烟草中表达时,PvPAP1-Ex 系的根系活力比野生型(WT)植株高约 8 倍。此外,PvPAP1表现出分泌能力,用 5-溴-4-氯-3-吲哚基磷酸盐处理后,在根表面呈现出蓝宝石蓝色。在使用沙质培养基的长期实验中,当 ATP 作为唯一的 P 源时,表达 PvPAP1 的烟草植株的根生物量比 WT 植株高 25-30%。这是因为 PvPAP1 表达增强了其磷酸酶活性,使转基因烟草的根中 ATP 处理下的磷含量增加了 6.5-9.2 倍,植酸处理下的磷含量增加了 9.4-30%。这些结果突出了 PvPAP1 作为蜈蚣草中一种新型分泌型磷酸酶,对外部 P 利用至关重要,表明 PvPAP1 有可能作为一种有价值的基因资源,提高作物对 P 的利用。