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Characterization of Rhizobia for the Improvement of Soybean Cultivation at Cold Conditions in Central Europe

Kun YuanInstitute of Global Innovation Research (GIR), Tokyo University of Agriculture and TechnologyMoritz RecklingLeibniz Centre for Agricultural Landscape Research (ZALF)María Daniela Artigas RamírezInstitute of Global Innovation Research (GIR), Tokyo University of Agriculture and TechnologySalem DjedidiInstitute of Agriculture, Tokyo University of Agriculture and TechnologyIzumi FukuharaInstitute of Agriculture, Tokyo University of Agriculture and TechnologyTakuji OhyamaDepartment of Agricultural Chemistry, Tokyo University of AgricultureTadashi YokoyamaInstitute of Agriculture, Tokyo University of Agriculture and TechnologySonoko Dorothea Bellingrath‐KimuraLeibniz Centre for Agricultural Landscape Research (ZALF)Mosab HalwaniLeibniz Centre for Agricultural Landscape Research (ZALF)Dilfuza EgamberdievaKey Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography, CASNaoko Ohkama‐OhtsuInstitute of Agriculture, Tokyo University of Agriculture and Technology
2020en
ABI

Аннотация

In central Europe, soybean cultivation is gaining increasing importance to reduce protein imports from overseas and make cropping systems more sustainable. In the field, despite the inoculation of soybean with commercial rhizobia, its nodulation is low. In many parts of Europe, limited information is currently available on the genetic diversity of rhizobia and, thus, biological resources for selecting high nitrogen-fixing rhizobia are inadequate. These resources are urgently needed to improve soybean production in central Europe. The objective of the present study was to identify strains that have the potential to increase nitrogen fixation by and the yield of soybean in German soils. We isolated and characterized 77 soybean rhizobia from 18 different sampling sites. Based on a multilocus sequence analysis (MLSA), 71% of isolates were identified as Bradyrhizobium and 29% as Rhizobium. A comparative analysis of the nodD and nifH genes showed no significant differences, which indicated that the soybean rhizobia symbiotic genes in the present study belong to only one type. One isolate, GMF14 which was tolerant of a low temperature (4°C), exhibited higher nitrogen fixation in root nodules and a greater plant biomass than USDA 110 under cold conditions. These results strongly suggest that some indigenous rhizobia enhance biological nitrogen fixation and soybean yield due to their adaption to local conditions.

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