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首页> 外文期刊>Symbiosis >Lima bean nodulates efficiently with Bradyrhizobium strains isolated from diverse legume species
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Lima bean nodulates efficiently with Bradyrhizobium strains isolated from diverse legume species

机译:利马豆与从不同豆科物种分离的布拉德希序菌株有效结论

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摘要

Lima bean (Phaseolus lunatus L.) is an important legume species that establishes symbiosis with rhizobia, mainly of the Bradyrhizobium genus. The aim of this study was to evaluate the efficiency of rhizobia of the genus Bradyrhizobium in symbiosis with lima bean, in both Leonard jars and in pots with a Latossolo Amarelo distrofico (Oxisol). In the experiment in Leonard jars, 17 strains isolated from nodules of the three legume subfamilies, Papilionoideae (Vigna unguiculata, Pterocarpus sp., Macroptilium atropurpureum, Swartzia sp., and Glycine max), Mimosoideae (Inga sp.), and Caesalpinioideae (Campsiandra surinamensis) and two uninoculated controls, one with a low concentration (5.25 mg L-1) and another with a high concentration (52.5 mg L-1) of mineral nitrogen (N) were evaluated. The six strains that exhibited the highest efficiency in Leonard jars, isolated from nodules of Vigna unguiculata (UFLA 03-144, UFLA 03-84, and UFLA 03-150), Campsiandra surinamensis (INPA 104A), Inga sp. (INPA 54B), and Swartzia sp. (INPA 86A), were compared to two uninoculated controls, one without and another with 300 mg N dm(-3) (NH4NO3) applied to pots with samples of an Oxisol in the presence and absence of liming. In this experiment, liming did not affect nodulation and plant growth; the INPA 54B and INPA 86A strains stood out in terms of shoot dry matter production and provided increases of approximately 48% in shoot N accumulation compared to the native rhizobia populations. Our study is the first to indicate Bradyrhizobium strains isolated from the three legume subfamilies are able to promote lima bean growth via biological nitrogen fixation in soil conditions.
机译:Lima Bean(phoupolus lunatus l.)是一种重要的豆科物种,其与根瘤菌建立了共生,主要是粗红细胞属。本研究的目的是评估Bradyrhizobium属的效率与利马豆,在Limaaard罐中,在Leonard Jars和Patosolo Amarelo Distromo(Oxisol)中的盆中。在Leonard Jars的实验中,17株从三种豆科植物,Papilionoideae(Vigna Unguiculata,Pterocarpus Sp.,Swartzia Sp.和Glycine Max),MimoSoideae(Inga Sp.)和Caesalpinioideae(Campsiandra评估苏里南人)和两个未诱导的对照,一种具有低浓度(5.25mg L-1)和具有高浓度(52.5mg L-1)的矿物氮(N)的对照。六种菌株在伦纳德罐中展示了最高效率,从Vigna Unguiculata(UFLA 03-144,UFLA 03-84和UFLA 03-150),坎西斯南苏里南(Inpa 104a),Inga Sp中分离出来的六个菌株。 (Inpa 54b)和swartzia sp。 (Inpa 86a)与两个未征收的对照进行比较,一个没有,另外用300mg n dm(-3)(-3)(NH 4 NO 3)施加到含有氧胆汁样品的罐中,在存在和不存在犹豫的情况下。在这个实验中,黎明不影响染色和植物生长; INPA 54B和INPA 86A菌株在芽干物质产生方面突出,并且与天然根茎血症群相比,芽N积累的芽N累积增加了约48%。我们的研究是第一个表明从三种豆科植物中分离的Bradyrhizobium菌株的菌株能够通过土壤条件的生物氮固定来促进利马豆生长。

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