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首页> 外文期刊>Frontiers in Microbiology >Plant Stage, Not Drought Stress, Determines the Effect of Cultivars on Bacterial Community Diversity in the Rhizosphere of Broomcorn Millet ( Panicum miliaceum L.)
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Plant Stage, Not Drought Stress, Determines the Effect of Cultivars on Bacterial Community Diversity in the Rhizosphere of Broomcorn Millet ( Panicum miliaceum L.)

机译:植物阶段而不是干旱胁迫决定了品种对room帚小米( Panicum miliaceum L。)根际细菌群落多样性的影响。

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Broomcorn millet ( Panicum miliaceum L.) is one of the oldest domesticated crops and has been grown in arid and semiarid areas in China since 10,000 cal. BP. However, limited information is available about how bacterial communities within the rhizosphere of different broomcorn millet cultivars respond to drought stress. Here, we characterized the changes in the rhizobacterial assemblages of two broomcorn millet cultivars, namely, P. miliaceum cv. HeQu Red (HQR) and P. miliaceum YanLi 10 (YL10), from the jointing stage to the grain filling stage after they were exposed to a short-term drought stress treatment at the seedling stage. Drought significantly inhibited the growth of both cultivars, but the effect on YL10 was higher than that on HQR, indicating that the drought tolerance of HQR was greater than that of YL10. Proteobacteria (33.8%), Actinobacteria (21.0%), Acidobacteria (10.7%), Bacteroidetes (8.2%), Chloroflexi (6.3%), Gemmatimonadetes (5.9%), Firmicutes (3.5%), Verrucomicrobia (2.9%), and Planctomycetes (2.7%) were the core bacterial components of broomcorn millet rhizosphere as suggested by 16S rDNA sequencing results. The diversity and composition of bacterial rhizosphere communities substantially varied at different developmental stages of broomcorn millet. As the plants matured, the richness and evenness of the rhizobacterial community significantly decreased. Principal coordinate analysis showed that the structure of the bacterial rhizosphere community changed notably only at the flowering stage between the two cultivars, suggesting a stage-dependent effect. Although drought stress had no significant effect on the diversity and structure of the bacterial rhizosphere community between the two cultivars, differential responses to drought was found in Actinobacteria and Acinetobacter , Lysobacter , Streptomyces , and Cellvibrio . The relative abundance of Actinobacteria and Lysobacter , Streptomyces , and Cellvibrio in the YL10 rhizosphere was stimulated by the drought treatment compared with that in the HQR rhizosphere, whereas the opposite effect was found in Acinetobacter . Our results suggested that the effects of cultivars on bacterial rhizosphere communities were highly dependent on plant developmental stage, reflecting the genetic variations in the two broomcorn millet cultivars.
机译:room小米(Panicum miliaceum L.)是最古老的驯化作物之一,自10,000 cal开始在中国的干旱和半干旱地区种植。 BP。但是,关于不同b帚小米品种根际内细菌群落如何对干旱胁迫做出反应的信息有限。在这里,我们表征了两个b帚小米品种,P。miliaceum cv的根瘤菌组合的变化。在苗期接受短期干旱胁迫处理后,从拔节期到灌浆期的河曲红(HQR)和紫茎泽兰YanLi 10(YL10)。干旱显着抑制了两个品种的生长,但对YL10的抗性高于对HQR的抗性,表明HQR的抗旱性大于YL10。 Proteobacteria(33.8%),Actinobacteria(21.0%),Acidobacteria(10.7%),Bacteroidetes(8.2%),Chloroflexi(6.3%),Gemmatimonadetes(5.9%),Firmicutes(3.5%),Verrucomicrobia(2.9%)和Planctomycetes 16S rDNA测序结果表明,(2.7%)是b帚根际的核心细菌成分。在room帚小米的不同发育阶段,细菌根际群落的多样性和组成有很大不同。随着植物的成熟,根瘤菌群落的丰富度和均匀度显着下降。主坐标分析表明,细菌根际群落的结构仅在两个品种之间的开花期才发生显着变化,表明其具有阶段依赖性。尽管干旱胁迫对两个品种之间的细菌根际群落的多样性和结构没有显着影响,但在放线菌属和不动杆菌属,溶菌菌,链霉菌和细胞弧菌中发现了对干旱的不同反应。与HQR根际相比,干旱处理刺激了YL10根际放线菌和溶菌,链霉菌和细胞弧菌的相对丰度,而不动杆菌则相反。我们的结果表明,品种对细菌根际群落的影响高度依赖于植物的发育阶段,反映了两个b粟品种的遗传差异。

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