Nickel enhances daidzein biosynthesis in roots increasing nodulation, biological nitrogen fixation and seed yield of soybean plants

被引:3
作者
Bosse, Marco Antonio [1 ]
Mendes, Nandhara Angelica de Carvalho [1 ]
Vicente, Eduardo Festozo [2 ]
Tezotto, Tiago [3 ]
dos Reis, Andre Rodrigues [2 ]
机构
[1] Sao Paulo State Univ UNESP, Via Acesso Prof Paulo Donato Castellane S-N, BR-14884900 Jaboticabal, Brazil
[2] Sao Paulo State Univ UNESP, Rua Domingos Costa Lopes 780, BR-17602496 Tupa, Brazil
[3] Univ Sao Paulo, Luiz de Queiroz Coll Agr, Soil Sci Dept, Ave Padua Dias 11, BR-13418900 Piracicaba, SP, Brazil
关键词
Biological nitrogen fixation; Nodules; Flavonoids; Ureides; Soybean; BEAN PHASEOLUS-VULGARIS; BRADYRHIZOBIUM-JAPONICUM; NITRATE REDUCTASE; UREASE; HYDROGENASE; METABOLISM; PROTEIN; GENE; MICRONUTRIENT; ISOFLAVONES;
D O I
10.1016/j.envexpbot.2024.105685
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Nickel (Ni) plays an important role in nitrogen metabolism and biological nitrogen fixation in legume plants. Recent studies have demonstrated the beneficial effects of Ni fertilization on soybean nodulation and crop yield; however, the physiological mechanism regulating Rhizobia chemotaxis is not understood. This study aimed to investigate the effects of Ni fertilization on urease activity, flavonoid profile, nodulation, ureide metabolism and its impact on plant growth and yield. We tested fertilization with three Ni doses (0.0, 1.5, and 3.0 mg kg-1) and two soybean genotypes (commercial soybean (TMG 2158) and urease-null (eu3-a), which is a near-isogenic line (NIL), cultivated under greenhouse conditions. Ni fertilization decreased nitrate reductase activity of the NIL and increased the activity for TMG 2158 plants. Ni increased urease activity, breaking down urea into ammonia in the leaves. Ni enhanced daidzein and genistein in roots and nodulation mainly for TMG 2158 plants. There was a positive correlation between daidzein, nodulation, ureides and seed yield in response to Ni fertilization, only to the genotype TMG 2158. These results suggest that Ni plays a role in flavonoids metabolism (mainly daidzein) inducing chemotaxis between soybean plants and rhizobia boosting nodulation and ureide metabolism. Enhanced biological nitrogen fixation induced by Ni fertilization promoted higher nodulation generating more organic nitrogen available to soybean plants resulting in a higher number of pods per plant and seed yield. This study showed important information on how Ni modulates nodulation to increase the yield of commercial soybean plants.
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页数:10
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