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首页> 外文期刊>Environmental Sustainability >Abundance and diversity of endophytic and rhizospheric diazotrophs associated with rice roots from different rice rotation systems under field conditions
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Abundance and diversity of endophytic and rhizospheric diazotrophs associated with rice roots from different rice rotation systems under field conditions

机译:田间条件下不同水稻轮作系统与水稻根系相关的内生和根际重氮微生物的丰度和多样性

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摘要

Biological nitrogen fixation contributes greatly to the sustainability of agroecosystems. However, more information is needed about the impact that agricultural intensification, a frequent practice nowadays, would have on diazotrophic communities associated with plants. This work addresses the influence of intensifying rice cropping systems on the abundance, diversity, and structure of diazotrophic communities associated with rice roots (rhizospheric and endophytic bacteria) from a field experiment. Three different rice rotation systems (rice-pasture, rice-soybean, and continuous rice) at two crop growth stages (TBF: tillering before flooding and FF: flowering-flooded) were studied. The results showed that the rhizospheric soils had the greater nifH gene abundance, and the abundance and diversity of rhizospheric and endophytic diazotrophic communities significantly increased at the FF stage. Conversely, nifH abundance in bulk soils remained unaltered. Phylogenetically and metabolically diverse diazotrophic communities were found to be associated with rice roots from the different crop stages and rotations. According to multivariate, clustering and statistical analyses performed on results retrieved by nifH T-RFLP (primers F2/R6 and PolF/PolR and AluI), the interaction of root compartment and crop growth stage (PERMANOVA, p < 0.001) was the major driver of diazotrophic communities. Furthermore, a significant effect of the rice rotation systems on the structure of diazotrophic communities was found (PERMANOVA, p < 0.05), suggesting that crop intensification could impact diazotrophic communities associated with rice plants, which play a key role in plant growth promotion. The implications that this could have should be explored and considered when developing sustainable intensification strategies in rice production.
机译:生物固氮的贡献很大农业生态系统的可持续性。需要更多的信息的影响农业集约化,经常练习如今,对diazotrophic社区与植物有关。加强水稻种植制度的影响丰富,多样性和结构diazotrophic社区与大米根(根际的和内生细菌)现场试验。系统(rice-pasture rice-soybean,转发连续大米)在两种作物生长阶段(延长:分蘖在洪水和FF:flowering-flooded)进行了研究。表明,根际的土壤了更大的nifH基因丰度和丰富和根际的多样性和植物diazotrophic社区显著增加在FF阶段。大部分土壤仍然没有改变。和新陈代谢多样化diazotrophic社区被发现与大米从不同的作物阶段和根源旋转。和统计分析执行结果通过检索nifH T-RFLP(底漆F2 / R6和PolF / PolR AluI),根之间的交互舱和作物生长阶段(PERMANOVA p <0.001)是diazotrophic的主要驱动力社区。水稻轮作制度的结构diazotrophic社区被发现(PERMANOVA p< 0.05),表明作物集约化可能会影响diazotrophic社区相关吗水稻,在植物中发挥关键作用促进经济增长。可能应该探索和考虑什么时候增强可持续发展策略在水稻生产。

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  • 来源
    《Environmental Sustainability 》 |2023年第2期| 213-227| 共15页
  • 作者单位

    Laboratorio de Ecologia Microbiana Medioambiental, Departamento de Biociencias, Facultad de Quimica, Universidad de la Republica, Av. Gral. Flores 2124, 11800 Montevideo, Uruguay;

    Instituto Nacional de Investigacion Agropecuaria, INIA-Uruguay, Ruta 8 km 281, 33000 Treinta y Tres, Uruguay;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 环境科学、安全科学 ;
  • 关键词

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