Department of Microbiology, North Carolina State University, Raleigh, North Carolina 27695-7615, and U.S. Department of Agriculture, Agricultural Research Service and Department of Soil Science, North Carolina State University, Raleigh, North Carolina 27695-7619.
Appl Environ Microbiol. 1986 Jul;52(1):81-5. doi: 10.1128/aem.52.1.81-85.1986.
We have isolated a colonial derivative of Bradyrhizobium japonicum USDA 110 (designated MN-110) that is both mannitol utilizing and N(2) fixing. Derivative MN-110 showed growth on mannitol and glucose similar to that of non-N(2)-fixing, mannitol-utilizing L2-110. Derivative MN-110 showed high constitutive and induced d-mannitol dehydrogenase activity (similar to L2-110) relative to N(2)-fixing, non-mannitol-utilizing I-110. Hybridization to EcoRI and HindIII total DNA digests with cloned USDA 110 nif DK and nif H genes revealed similar patterns for non-N(2)-fixing mannitol-utilizing derivative L1-110 and derivative MN-110. Symbiotic tests with soybean cultivars Ransom and Lee indicate MN-110 to be a superior N(2)-fixing derivative compared with derivative I-110 and the parent strain USDA 110. However, these differences were not revealed when comparing 28-day-old soybean-B. japonicum associations but were apparent in 49-day-old associations. It was apparent from this work that mannitol utilization was not necessarily correlated to symbiotic effectiveness in B. japonicum and that gene rearrangements were not responsible for differences in N(2) fixation between L1-110 or L2-110 and MN-110.
我们已经分离出一株能够同时利用甘露醇和固定氮的慢生根瘤菌(Bradyrhizobium japonicum)USDA 110 的菌落衍生物(命名为 MN-110)。衍生物 MN-110 能够在甘露醇和葡萄糖上生长,与非固氮、能够利用甘露醇的 L2-110 相似。衍生物 MN-110 表现出高组成型和诱导型 d-甘露醇脱氢酶活性(类似于 L2-110),而与固氮、非甘露醇利用的 I-110 相比。用克隆的 USDA 110 nif DK 和 nif H 基因对 EcoRI 和 HindIII 总 DNA 消化物进行杂交,显示非固氮、能够利用甘露醇的衍生物 L1-110 和衍生物 MN-110 具有相似的模式。与大豆品种 Ransom 和 Lee 的共生测试表明,与衍生物 I-110 和亲本菌株 USDA 110 相比,MN-110 是一种具有优异固氮能力的衍生物。然而,在比较 28 天龄的大豆-慢生根瘤菌共生体时,这些差异没有显现,但在 49 天龄的共生体中则很明显。从这项工作中可以明显看出,甘露醇的利用不一定与慢生根瘤菌的共生有效性相关,并且基因重排并不是 L1-110 或 L2-110 与 MN-110 之间固氮能力差异的原因。