Effect of different Bradyrhizobium japonicum inoculants on physiological and agronomic traits of soybean (Glycine max (L.) Merr.) associated with different expression of nodulation genes

被引:0
|
作者
Szczerba, Anna [1 ]
Plazek, Agnieszka [1 ]
Kopec, Przemyslaw [2 ]
Wojcik-Jagla, Magdalena [1 ]
Dubert, Franciszek [2 ]
机构
[1] Agr Univ Krakow, Fac Agr & Econ, Dept Plant Breeding Physiol & Seed Sci, Podluzna 3, PL-30239 Krakow, Poland
[2] Polish Acad Sci, Franciszek Gorski Inst Plant Physiol, Niezapominajek 21, PL-30239 Krakow, Poland
来源
BMC PLANT BIOLOGY | 2024年 / 24卷 / 01期
关键词
Chlorophyll fluorescence; Nodulation; Nitrate reductase; Oxidative stress; Seed yield; Soybean; NITROGEN-FIXATION; OXIDATIVE STRESS; RHIZOBIUM; LEGUME; PRODUCTIVITY; FLUORESCENCE; DIVERSITY; INCREASES; STRAINS; YIELD;
D O I
10.1186/s12870-024-05911-x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The aim of this work was to check the effects of five Bradyrhizobium japonicum inoculants from different producers on growth, photochemical efficiency, nitrate reductase activity, amount of hydrogen peroxide, activity of catalase, non-specific peroxidase, and superoxide dismutase, seed yield, and nodulation of soybean cv. 'Malaga'. We also evaluated expression of such nodulation genes as NIC1, NOD21, and NORKb. The following inoculants were used: Nitragina IUNG, Nitragina Biofood, Nitroflora Mycoflor, Rhizobium Bio-Gen, and HiStick (R) Soy. The study was carried out on plants grown in pots in an open foil tunnel or glasshouse conditions. Experimental seeds were inoculated before sowing, while the control ones were not. Physiological and biochemical analyses involved the leaves, and gene expression was investigated in the roots. The bacterial inoculants significantly affected individual parameters of chlorophyll a fluorescence. The highest photochemical efficiency was induced by Nitroflora Mycoflor, which also activated nitrate reductase to the greatest extent. Nitragina IUNG most strongly stimulated accumulation of hydrogen peroxide, facilitated formation of the greatest number of nodules, and improved seed yield per plant in comparison with the control and other inoculants. Of the studied nodulation genes, NIC1 showed the strongest expression following HiStick (R) Soy treatment. Nitragina Biofood and Nitragina IUNG most significantly reduced the expression of all studied genes. Expression of NOD21 and NORKb exposed to other inoculants was the same as in the control plants. High content of hydrogen peroxide can be considered a marker of the inoculant ability to increase nodulation and yield of soybean. Commercial preparations containing the same amount of B. japonicum but different carriers of bacteria show different ability to form root nodules, and their differential impact on yield is related to the intensity of nodulation and expression of the Nod genes.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Physiological responses of seven varieties of soybean [Glycine max (L.) Merr.] to salt stress
    Khalid, Naila
    Saeed, Ahsan
    PLANT SCIENCE TODAY, 2023, 10 (01): : 199 - 209
  • [22] Phenotypic characterization and genetic dissection of nine agronomic traits in Tokachi nagaha and its derived cultivars in soybean (Glycine max (L.) Merr.)
    Liu, Zhangxiong
    Li, Huihui
    Fan, Xuhong
    Huang, Wen
    Yang, Jiyu
    Wen, Zixiang
    Li, Yinghui
    Guan, Rongxia
    Guo, Yong
    Chang, Ruzhen
    Wang, Dechun
    Chen, Pengyin
    Wang, Shuming
    Qiu, Li-Juan
    PLANT SCIENCE, 2017, 256 : 72 - 86
  • [23] Photosynthesis, Yield and Quality of Soybean (Glycine max (L.) Merr.) under Different Soil-Tillage Systems
    Buczek, Jan
    Bobrecka-Jamro, Dorota
    Janczak-Pieniazek, Marta
    SUSTAINABILITY, 2022, 14 (09)
  • [24] Epigenetics’ Role in the Common Bean (Phaseolus vulgaris L.) and Soybean (Glycine max (L.) Merr.) Nodulation: a Review
    Franciéle de Lima
    Angelica Beate Winter Boldt
    Vanessa Merlo Kava
    Lygia Vitória Galli-Terasawa
    Douglas Adamoski
    Plant Molecular Biology Reporter, 2022, 40 : 471 - 481
  • [25] Effect of different formulations of Rhizobium japonicum on yield and yield attributes of soybean (Glycine max L.)
    Dadnia, Mohammad Reza
    RESEARCH ON CROPS, 2011, 12 (02) : 413 - 416
  • [26] Identification of pH tolerant Bradyrhizobium japonicum strains and their symbiotic effectiveness in soybean [Glycine max ( L.) Merr.] in low nutrient soil
    Meghvansi, MK
    Prasad, K
    Mahna, SK
    AFRICAN JOURNAL OF BIOTECHNOLOGY, 2005, 4 (07): : 663 - 666
  • [27] Perception of Bradyrhizobium japonicum Nod factor by soybean [Glycine max (L.) Merr.] root hairs under abiotic stress conditions
    Duzan, HM
    Zhou, X
    Souleimanov, A
    Smith, DL
    JOURNAL OF EXPERIMENTAL BOTANY, 2004, 55 (408) : 2641 - 2646
  • [28] Effect of Vacuum Soaking on the Properties of Soybean (Glycine max (L.) Merr.)
    Xiao, Gongnian
    Gong, Jinyan
    Ge, Qing
    You, Yuru
    INTERNATIONAL JOURNAL OF FOOD ENGINEERING, 2015, 11 (01) : 151 - 155
  • [29] Prioritization and Evaluation of Flooding Tolerance Genes in Soybean [Glycine max (L.) Merr.]
    Lai, Mu-Chien
    Lai, Zheng-Yuan
    Jhan, Li-Hsin
    Lai, Ya-Syuan
    Kao, Chung-Feng
    FRONTIERS IN GENETICS, 2021, 11
  • [30] Evaluation of yield and yield attributes traits of soybean (Glycine max L. Merr.) varieties in Uzbekistan
    Kholikova, Mokhichekhra
    Babakhanova, Dilnoza
    Rakhmatullayeva, Anora
    Khamrayev, Rustam
    Abdrashitova, Elena
    Xojamkulova, Yulduzoy
    Egamberdiev, Ramish
    Rejapova, Marguba
    JOURNAL OF WILDLIFE AND BIODIVERSITY, 2024, 8 (02) : 260 - 268