首页> 外文期刊>Applied Microbiology >Evolution of Diverse Effective N2-Fixing Microsymbionts of Cicer arietinum following Horizontal Transfer of the Mesorhizobium ciceri CC1192 Symbiosis Integrative and Conjugative Element
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Evolution of Diverse Effective N2-Fixing Microsymbionts of Cicer arietinum following Horizontal Transfer of the Mesorhizobium ciceri CC1192 Symbiosis Integrative and Conjugative Element

机译:中霉素CICERI CC1192分组整流型和共轭元分类术后CICER羊膜纤维素的多种有效N2固定微氨基的演变

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Rhizobia are soil bacteria capable of forming N_(2)-fixing symbioses with legumes, with highly effective strains often selected in agriculture as inoculants to maximize symbiotic N_(2) fixation. When rhizobia in the genus Mesorhizobium have been introduced with exotic legumes into farming systems, horizontal transfer of symbiosis integrative and conjugative elements (ICEs) from the inoculant strain to soil bacteria has resulted in the evolution of ineffective N_(2)-fixing rhizobia that are competitive for nodulation with the target legume. In Australia, Cicer arietinum (chickpea) has been inoculated since the 1970s with Mesorhizobium ciceri symbiovar ciceri CC1192, a highly effective strain from Israel. Although the full genome sequence of this organism is available, little is known about the mobility of its symbiosis genes and the diversity of cultivated C. arietinum -nodulating organisms. Here, we show that the CC1192 genome harbors a 419-kb symbiosis ICE (ICE Mc Sym~(1192)) and a 648-kb repABC -type plasmid (pMC1192) carrying putative fix genes. We sequenced the genomes of 11 C. arietinum nodule isolates from a field site exclusively inoculated with CC1192, and we showed that they were diverse unrelated Mesorhizobium strains carrying ICE Mc Sym~(1192), which indicated that they had acquired the ICE by environmental transfer. No exconjugants harbored pMc1192, and the plasmid was not essential for N_(2) fixation in CC1192. Laboratory conjugation experiments confirmed that ICE Mc Sym~(1192) is mobile, integrating site specifically within the 3′ end of one of the four Ser--tRNA genes in the R7ANS recipient genome. Strikingly, all ICE Mc Sym~(1192) exconjugants were as efficient as CC1192 at fixing N_(2) with C. arietinum , demonstrating that ICE transfer does not necessarily yield ineffective microsymbionts as observed previously.IMPORTANCE Symbiotic N_(2) fixation is a key component of sustainable agriculture, and in many parts of the world legumes are inoculated with highly efficient strains of rhizobia to maximize fixed N_(2) inputs into farming systems. Symbiosis genes for Mesorhizobium spp. are often carried chromosomally within mobile gene clusters called ICEs. In Australia, where all agricultural legumes and their rhizobia are exotic, horizontal transfer of ICEs from inoculant Mesorhizobium strains to native rhizobia has led to the evolution of inefficient strains that outcompete the original inoculant, with the potential to render it ineffective. However, the commercial inoculant strain for Cicer arietinum (chickpea), M. ciceri CC1192, has a mobile symbiosis ICE (ICE Mc Sym~(1192)) that can support high rates of N_(2) fixation following either environmental or laboratory transfer into diverse Mesorhizobium backgrounds, demonstrating that ICE transfer does not necessarily yield ineffective microsymbionts as observed previously.
机译:根扎比亚是能够形成N_(2)的土壤细菌 - 用豆类混合,具有高效的菌株,通常在农业中选择,以最大化共生的N_(2)固定。在Mesorhizobiz中的根瘤菌中引入农业系统中,来自占疫苗菌株对土壤细菌的分组整合和缀合元素(ICE)的水平转移导致无效的N_(2) - 混凝土的根瘤菌对目标豆类的竞争竞争。在澳大利亚,自20世纪70年代以20世纪70年代以以色列的高效菌株,以自20世纪70年代以20世纪70年代以20世纪70年代为接种。虽然这种生物的全基因组序列可用,但对于其共生基因的迁移率以及培养的C.肌肉灭绝的生物的多样性而言,毫无少。在这里,我们表明CC1192基因组患者419-KB共生冰(ICE MC SYM〜(1192))和648-kB批量级质粒(PMC1192)携带推定的修复基因。我们用CC1192专门接种的场地测序11℃的基因组,并且我们表明它们是携带冰MC Sym〜(1192)的多元化无关的中鼠毒株,这表明他们已通过环境转移获得了冰。没有Erconjugants Harbored PMC1192,并且质粒对CC1192中的N_(2)固定不是必需的。实验室缀合实验证实,ICE MC SYM〜(1192)是移动,集成位点,特别是在R7ANS受体基因组中的四个SER-TRNA基因之一的3'末端内。令人惊讶的是,所有冰MC Sym〜(1192)Exconjugants在固定N_(2)与C.ireietinum固定N_(2)时,展示冰转移不一定是在先前所观察到的冰转移不一定产生无效的微生物。分数共生N_(2)固定是a可持续农业的关键组成部分,以及世界各地的豆类群众的高效根瘤菌株,以最大化固定的N_(2)投入到农业系统。 Mesorhizobium SPP的共生基因。通常在称为冰的流动基因集群中染色体。在澳大利亚,所有农业豆类及其根瘤菌都异国情调,含有植物中的蛋白质菌株对天然根瘤菌的水平转移导致了低效菌株的演变,使其成为原始孕育剂的低效菌株,其有可能使其无效地使其无效。然而,用于Cicer Arietinum(Chickpea),M.Ciceri CC1192的商业融合菌株具有移动共生冰(ICE MC SYM〜(1192)),其可以支持环境或实验室转移后的高速率N_(2)固定率多样化的叶氏柔道鸟背景,展示冰传递不一定是先前所观察到的产生无效的微生物。

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