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多聚磷酸盐和溶磷细菌的综合使用提高了硬粒小麦的磷利用效率和生长性能。

Integrated use of polyphosphate and P-solubilizing bacteria enhanced P use efficiency and growth performance of durum wheat.

作者信息

Khourchi Said, Elhaissoufi Wissal, Ibnyasser Ammar, Haddine Meryem, Ghani Rachid, Zeroual Youssef, Delaplace Pierre, Bargaz Adnane

机构信息

Agrobiosciences Program, College for Sustainable Agriculture and Environmental Sciences, , Mohammed VI Polytechnic University (UM6P), Ben Guerir, Morocco.

TERRA - Teaching and Research Center, Plant Sciences, Gembloux Agro-Bio Tech, Université de Liège, Gembloux, Belgium.

出版信息

Front Microbiol. 2023 Jul 5;14:1211397. doi: 10.3389/fmicb.2023.1211397. eCollection 2023.

Abstract

Coupling phosphate-solubilizing bacteria (PSB) with P fertilizers, including polyphosphates (PolyP), was reported as eco-efficient approach to enhance P use efficiency. Although PSB have been recently reported to hydrolyze PolyP, the plant growth promoting mechanisms of PolyP-PSB co-application were not yet uncovered. This study aims to evaluate the effect of a PSB consortium (PSB) on growth, P use efficiency (PUE), and wheat yield parameters under PolyP (PolyB) application. Co-application of PolyB-PSB significantly enhanced wheat growth at 75 days after sowing (DAS) compared to 30 DAS. A significant increase in shoot dry biomass (47%), shoot inorganic P content (222%), PUE (91%), and root P absorption efficiency (RPAE, 99%) was noted compared to unfertilized plants. Similarly, the PolyB-PSB co-application enhanced morphological root traits at 30 DAS, while acid phosphatase activities (root and rhizosphere), RPAE, and PUE were significantly increased at 75 DAS. The improved wheat P acquisition could be attributed to a lower investment in root biomass production, and significant induction of acid phosphatase activity in roots and rhizosphere soil under PolyB-PSB co-application. Consequently, the PolyB-PSB co-application significantly improved aboveground performance, which is reflected by increased shoot nutrient contents (P 300%, K 65%), dry weight (54%), and number (50%) of spikes. Altogether, this study provides relevant evidence that co-application of PolyP-PSB can be an integrated and environmentally preferred P fertilization approach owing to the dual effects of PolyP and PSB on wheat PUE.

摘要

将解磷细菌(PSB)与包括多聚磷酸盐(PolyP)在内的磷肥结合使用,被报道为提高磷利用效率的生态高效方法。尽管最近有报道称PSB可水解PolyP,但PolyP-PSB共同施用促进植物生长的机制尚未明确。本研究旨在评估PSB菌剂(PSB)在施用PolyP(PolyB)条件下对小麦生长、磷利用效率(PUE)和产量参数的影响。与播种后30天相比,播种后75天,PolyB-PSB共同施用显著促进了小麦生长。与未施肥的植株相比,地上部干生物量(增加47%)、地上部无机磷含量(增加222%)、PUE(增加91%)和根系磷吸收效率(RPAE,增加99%)均显著增加。同样,在播种后30天,PolyB-PSB共同施用增强了根系形态特征,而在播种后75天,酸性磷酸酶活性(根系和根际)、RPAE和PUE显著增加。小麦磷吸收的改善可能归因于根系生物量生产投入的减少,以及在PolyB-PSB共同施用条件下根系和根际土壤中酸性磷酸酶活性的显著诱导。因此,PolyB-PSB共同施用显著改善了地上部生长表现,这体现在地上部养分含量(磷增加300%,钾增加65%)、干重(增加54%)和穗数(增加50%)的增加上。总之,本研究提供了相关证据,表明由于PolyP和PSB对小麦PUE的双重作用,PolyP-PSB共同施用可以成为一种综合的、环境友好型的磷肥施用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f86d/10354339/8d4f0803e4ea/fmicb-14-1211397-g001.jpg

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