Plant Genetics and Rhizosphere Processes laboratory, Gembloux Agro-Bio Tech, TERRA Teaching and Research Centre, University of Liège, B-5030, Gembloux, Belgium.
Department of Plant Biology and Ecology, University of the Basque Country (UPV/EHU), 48940, Bilbao, Spain.
New Phytol. 2023 May;238(4):1711-1721. doi: 10.1111/nph.18807. Epub 2023 Mar 14.
Several plant species have been reported to inhibit nitrification via their root exudates, the so-called biological nitrification inhibition (BNI). Given the potential of BNI-producing plants to sustainably mitigate N losses in agrosystems, identification of BNI activity in existing germplasms is of paramount importance. A hydroponic system was combined with an optimized Nitrosomonas europaea-based bioassay to determine the BNI activity of root exudates. The pipeline allows collecting and processing hundreds of root exudates simultaneously. An additional assay was established to assess the potential bactericide effect of the root exudates. The pipeline was used to unravel the impact of developmental stage, temperature and osmotic stress on the BNI trait in selected wheat genotypes. Biological nitrification inhibition activity appeared consistently higher in wheat at the pretillering stage as compared to the tillering stage. While low-temperatures did not alter BNI activities in root exudates, osmotic stress appeared to change the BNI activity in a genotype-dependent manner. Further analysis of Nitrosomonas culture after pre-exposure to root exudates suggested that BNI activity has no or limited bactericide effects. The present pipeline will be instrumental to further investigating the dynamics of BNI activity and to uncover the diversity of the BNI trait in plant species.
几种植物物种已被报道通过其根系分泌物抑制硝化作用,即所谓的生物硝化抑制(BNI)。鉴于产生 BNI 的植物在可持续地减少农业系统中的氮损失方面具有潜力,因此确定现有种质资源中的 BNI 活性至关重要。本研究结合水培系统和优化的基于硝化单胞菌的生物测定法来确定根系分泌物的 BNI 活性。该系统可以同时收集和处理数百种根系分泌物。此外,还建立了一种测定根系分泌物潜在杀菌效果的测定方法。该系统用于揭示不同小麦基因型的发育阶段、温度和渗透胁迫对 BNI 特性的影响。与分蘖期相比,在小麦预分孽期,生物硝化抑制活性明显更高。低温对根系分泌物中的 BNI 活性没有改变,而渗透胁迫似乎以基因型依赖的方式改变了 BNI 活性。在将根系分泌物预先暴露于 Nitrosomonas 培养物后进行进一步分析表明,BNI 活性没有或有限的杀菌作用。该系统将有助于进一步研究 BNI 活性的动态,并揭示植物物种中 BNI 特性的多样性。