Inoculation of soybean seeds by rhizobia with nanometal carboxylates reduces the negative effect of drought on N2 and CO2 assimilation

IF 2.3 3区 农林科学 Q1 AGRONOMY Plant, Soil and Environment Pub Date : 2022-10-24 DOI:10.17221/287/2022-pse
D. Kiriziy, S. Kots, L. Rybachenko, P. Pukhtaievych
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引用次数: 1

Abstract

The effect of individual nanometals (Co, Fe, Cu, Ge) carboxylates (NMC) as components of the suspension for seeds inoculation with rhizobia on the nitrogen fixation rate and the parameters of CO2 and H2O gas exchange in soybean plants grown under different water conditions was investigated. The scheme of trials included the following variants: 1 – seeds + strain B1-20; 2 – seeds + (strain B1-20 + nano-cobalt carboxylate); 3 – seeds + (strain В1-20 + nano-ferrum carboxylate); 4 – seeds + (strain B1-20 + nano-cuprum carboxylate); 5 – seeds + (strain B1-20 + nano-germanium carboxylate). The results showed that during the flowering period, drought (30% field capacity) significantly reduced the rates of nitrogen fixation (Nfx), CO2 net assimilation (An), and transpiration (Tr) in soybean plants. Inoculation of seeds by rhizobia with NMC before sowing reduced the negative effect of drought on these physiological processes. Close correlations were found between the rates of Nfx and An and the stomatal conductance for CO2 and An rates. It was concluded that pre-sowing treatment of seeds by rhizobia with NMC mitigates the negative effect of drought on the main components of soybean-rhizobia symbiosis productivity formation – nitrogen fixation and CO2 assimilation, and also contributes to their recovery after the removal of the stressor. The most effective for this was the use of Ge and Fe nanoparticle carboxylates.
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根瘤菌接种纳米羧酸盐降低干旱对N2和CO2同化的负面影响
研究了不同水分条件下不同纳米金属(Co、Fe、Cu、Ge)羧酸盐(NMC)对大豆固氮率和CO2、H2O气体交换参数的影响。试验方案包括:1-种子+菌株B1-20;2 -种子+(菌株B1-20 +纳米羧酸钴);3 -种子+(菌株В1-20 +纳米羧酸铁);4 -种子+(菌株B1-20 +纳米羧酸铜);5 -种子+(菌株B1-20 +纳米羧酸锗)。结果表明,在开花期,干旱(30%田容量)显著降低了大豆植株的固氮速率(Nfx)、CO2净同化速率(An)和蒸腾速率(Tr)。播前用NMC接种根瘤菌可减少干旱对这些生理过程的负面影响。Nfx和An速率与CO2和An速率的气孔导度密切相关。综上所述,播前根瘤菌加NMC处理可以缓解干旱对大豆-根瘤菌共生生产力形成的主要成分固氮和CO2同化的负面影响,并有助于胁迫解除后的恢复。最有效的方法是使用Ge和Fe纳米颗粒羧酸盐。
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来源期刊
Plant, Soil and Environment
Plant, Soil and Environment Agronomy, Soil Science-农艺学
CiteScore
4.80
自引率
4.20%
发文量
61
审稿时长
2.4 months
期刊介绍: Experimental biology, agronomy, natural resources, and the environment; plant development, growth and productivity, breeding and seed production, growing of crops and their quality, soil care, conservation and productivity; agriculture and environment interactions from the perspective of sustainable development. Articles are published in English.
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