Khourchi Said, Elhaissoufi Wissal, Ibnyasser Ammar, Haddine Meryem, Ghani Rachid, Zeroual Youssef, Delaplace Pierre, Bargaz Adnane
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.
Front Microbiol. 2023 Jul 5;14:1211397. doi: 10.3389/fmicb.2023.1211397. eCollection 2023.
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.
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。