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  1. 1
    “…All microcosms were inoculated with Bradyrhizobium japonicum USDA6(T), B. japonicum USDA123, and B. elkanii USDA76(T), which do not possess the nosZ gene, and then half received B. diazoefficiens USDA110(T)wt (wt for the wild-type) and the other half received B. diazoefficiens USDA110ΔnosZ. …”
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    “…Internal transcribed spacer sequencing of representative isolates showed that the nosZ+ and nosZ− isolates of B. japonicum fell mainly into the USDA110 (BJ1) and USDA6 (BJ2) groups, respectively. …”
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    “…While the NosZ of B. ottawaense and B. diazoefficiens showed high homology, nosZ gene expression in B. ottawaense was over 150-fold higher than that in B. diazoefficiens USDA110(T), suggesting the high N(2)O-reducing activity of B. ottawaense is achieved by high nos expression. …”
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    “…The hydrogen uptake (Hup) system of Bradyrhizobium diazoefficiens recycles the H(2) released by nitrogenase in soybean nodule symbiosis, and is responsible for H(2)-dependent chemolithoautotrophic growth. The strain USDA110 has two hup gene clusters located outside (locus I) and inside (locus II) a symbiosis island. …”
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    “…In this study, the global expression profiles of Bradyrhizobium japonicum USDA 110 in response to soybean (Glycine max) seed extracts (SSE) and genistein, a major soybean-released isoflavone for nod genes induction of B. japonicum, were compared. …”
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    “…Here, we show that N(2)O emission can be reduced at the field scale by inoculation with a mixed culture of indigenous nosZ+ strains of B. diazoefficiens USDA110 group isolated from Japanese agricultural fields. …”
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