The Effect of Different Mycorrhizal Fungi Inoculation and Biochar Application on the Growth of Broad Bean Plant and Carbon Sequestration under Different Irrigation Levels

Feyzullah Öztürk, V. Akşahi̇n, Yassal Khan, I. Ortaş
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Abstract

The experiment was carried out in a total of 54 pots, with 3 replications according to the randomized plot trial design. In the experiment, broad bean (Vicia faba) plant seeds were planted as plant material. In the experiment, 3 irrigation levels were determined for restricted irrigation (50%, 75%, 100% of the field capacity), 3 levels were determined for mycorrhizal fungus (non-mycorrhizal, G. mosseae and indigenous mycorrhiza), and for biochar treatments, control and 1% biochar were implemented. As a result of the experiment, carbon analyzes of soil and plant samples were carried out. The data obtained in the study were determined to develop better at 100% irrigation level under the conditions of biochar and G. mosseae inoculation. Carbon and nitrogen values were higher in bean plants in pots inoculated with mycorrhiza and treated with biochar. These results imply that increased soil and plant performance under restricted irrigation conditions can result from the application of biochar and irrigation at level I100.
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不同灌溉水平下菌根真菌接种和生物炭施用对蚕豆植株生长和固碳的影响
试验采用随机小区试验设计,共设54个盆栽,每3个重复。本试验以蚕豆(Vicia faba)植物种子为种植材料。试验中,限定灌溉3个水平(50%、75%、100%田间容量),菌根真菌3个水平(非菌根、G. mosseae和土生菌根),生物炭处理分别为对照和1%生物炭。根据试验结果,对土壤和植物样品进行了碳分析。研究结果表明,在100%灌溉水平下,生物炭和接种苔藓藓菌的条件下发育较好。在接种菌根和生物炭处理的盆栽中,豆类植株的碳氮值较高。这些结果表明,在限制灌溉条件下,生物炭的施用和I100水平的灌溉可以提高土壤和植物的性能。
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