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The eroded genome of a Psychotria leaf symbiont: Hypotheses about lifestyle and interactions with its plant host

机译:精神病叶片共生体的侵蚀基因组:关于生活方式及其与植物宿主相互作用的假设

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Several plant species of the genus Psychotria (Rubiaceae) harbour Burkholderia sp. bacteria within specialized leaf nodules. The bacteria are transmitted vertically between plant generations and have not yet been cultured outside of their host. This symbiosis is also generally described as obligatory because plants devoid of symbionts fail to develop into mature individuals. We sequenced for the first time the genome of the symbiont of Psychotria kirkii in order to shed some light on the nature of their symbiotic relationship. We found that the 4Mb genome of Candidatus Burkholderia kirkii (B.kirkii) is small for a Burkholderia species and displays features consistent with ongoing genome erosion such as large proportions of pseudogenes and transposable elements. Reductive genome evolution affected a wide array of functional categories that may hinder the ability of the symbiont to be free-living. The genome does not encode functions commonly found in plant symbionts such as nitrogen fixation or plant hormone metabolism. Instead, a collection of genes for secondary metabolites' synthesis is located on the 140kb plasmid of B. kirkii and suggests that leaf nodule symbiosis benefits the host by providing protection against herbivores or pathogens.
机译:Psychotria(Rubiaceae)属的几种植物有Burkholderia sp.。特殊叶结节内的细菌。细菌在植物世代之间垂直传播,尚未在寄主外培养。由于没有共生体的植物无法发育成成熟个体,因此通常也将这种共生描述为必须的。我们首次对Psychotria kirkii共生体的基因组进行了测序,以阐明它们共生关系的性质。我们发现,假丝酵母​​伯克霍尔德氏菌(B.kirkii)的4Mb基因组很小,并且表现出与正在进行的基因组侵蚀一致的特征,例如大比例的假基因和转座因子。还原性基因组进化影响广泛的功能类别,这可能会阻碍共生体自由生活的能力。基因组不编码植物共生体中常见的功能,例如固氮或植物激素代谢。取而代之的是,用于次生代谢产物合成的基因集合位于柯氏芽孢杆菌的140kb质粒上,表明叶结节共生通过提供对草食动物或病原体的保护而有益于宿主。

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