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Response of leaf endophytic bacterial community to elevated CO 2 at different growth stages of rice plant

机译:水稻不同生育期叶片内生细菌群落对CO 2 升高的响应

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Plant endophytic bacteria play an important role in plant growth and health. In the context of climate change, the response of plant endophytic bacterial communities to elevated CO_(2)at different rice growing stages is poorly understood. Using 454 pyrosequencing, we investigated the response of leaf endophytic bacterial communities to elevated CO_(2)(eCO_(2)) at the tillering, filling, and maturity stages of the rice plant under different nitrogen fertilization conditions [low nitrogen fertilization (LN) and high nitrogen fertilization (HN)]. The results revealed that the leaf endophytic bacterial community was dominated by Gammaproteobacteria-affiliated families, such as Enterobacteriaceae and Xanthomonadaceae, which represent 28.7–86.8% and 2.14–42.6% of the total sequence reads, respectively, at all tested growth stages. The difference in the bacterial community structure between the different growth stages was greater than the difference resulting from the CO_(2)and nitrogen fertilization treatments. The eCO_(2)effect on the bacterial communities differed greatly under different nitrogen application conditions and at different growth stages. Specifically, eCO_(2)revealed a significant effect on the community structure under both LN and HN levels at the tillering stage; however, the significant effect of eCO_(2)was only observed under HN, rather than under the LN condition at the filling stage; no significant effect of eCO_(2)on the community structure at both the LN and HN fertilization levels was found at the maturity stage. These results provide useful insights into the response of leaf endophytic bacterial communities to elevated CO_(2)across rice growth stages.
机译:植物内生细菌在植物生长和健康中起重要作用。在气候变化的背景下,人们对水稻不同生长阶段植物内生细菌群落对CO_(2)升高的反应知之甚少。使用454焦磷酸测序,我们调查了在不同氮肥条件下水稻分the,灌浆和成熟阶段叶片内生细菌群落对CO_(2)(eCO_(2))升高的响应[低氮肥(LN)和高氮肥(HN)]。结果表明,叶内生细菌群落由与肠杆菌科和黄单胞菌科相关的γ-变形杆菌属家族控制,在所有测试的生长阶段,它们分别占总序列读数的28.7–86.8%和2.14-42.6%。不同生长期之间细菌群落结构的差异大于CO_(2)和氮肥处理产生的差异。在不同的氮素施用条件和不同的生长阶段,eCO_(2)对细菌群落的影响差异很大。具体来说,eCO_(2)在分N期的LN和HN水平下都对群落结构产生了显着影响。然而,eCO_(2)的显着效果仅在灌装阶段在高氮条件下观察到,而不是在低氮条件下观察到。在成熟期,在LN和HN施肥水平上均未发现eCO_(2)对群落结构的显着影响。这些结果为水稻内生叶片内生细菌群落对CO_(2)升高的响应提供了有用的见识。

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