<p>Numerical ratio of abundance of <i>A. agilis</i>, <i>A. hydrophila, Brevundimonas</i> sp. and <i>Flavobacterium</i> sp. achieved in invaded community compared to that in control community either in low- (LCC) or in high-carbon concentration (HCC) treatments. Asterisks above or below bars indicate significant differences in abundance of bacterial strains in the invaded community from that in the control community (two-way repeated measures ANOVA). * P<0.05, *** P<0.001.</p
Bacterial relative abundance on the Phylum level under different fertilization treatment (%).</p
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...
<p>Temporal changes in abundances of <i>A. agilis</i>, <i>A. hydrophila, Brevundimonas</i> sp., <i>F...
<p>Abundances (10<sup>6</sup> cells ml<sup>−1</sup>) of <i>A. agilis</i>, <i>A. hydrophila, Brevundi...
<p>Time-course changes in abundance of <i>A. agilis</i>, <i>A. hydrophila, Brevundimonas</i> sp., <i...
<p>Shannon-Wiener (<i>H’</i>) diversity index in control and invaded communities. For consistency, <...
Common garden experiments that inoculate a standardised growth medium with synthetic microbial commu...
<p>Temporal changes in abundances of total bacteria grown in control community or in the community i...
Common garden experiments that inoculate a standardised growth medium with synthetic microbial commu...
<p>The relative abundances of the top two opportunistic and commensal bacteria are shown. The blank,...
<p>For clarity, only the significant statistical results (<i>P</i><0.05) are shown in the figure. In...
#<p>Relative abundance given by mean ± SE.</p><p>***<i>P</i> = <0.001 (t-test).</p><p>Identification...
<p>Effects of bacterial genotypic (a, b) and functional diversity (c, d) on the stability of communi...
<p>Bacterial abundance (A), number of utilized carbon substrates (B), respiration rates (C) and grow...
Bacterial relative abundance on the Phylum level under different fertilization treatment (%).</p
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...
<p>Temporal changes in abundances of <i>A. agilis</i>, <i>A. hydrophila, Brevundimonas</i> sp., <i>F...
<p>Abundances (10<sup>6</sup> cells ml<sup>−1</sup>) of <i>A. agilis</i>, <i>A. hydrophila, Brevundi...
<p>Time-course changes in abundance of <i>A. agilis</i>, <i>A. hydrophila, Brevundimonas</i> sp., <i...
<p>Shannon-Wiener (<i>H’</i>) diversity index in control and invaded communities. For consistency, <...
Common garden experiments that inoculate a standardised growth medium with synthetic microbial commu...
<p>Temporal changes in abundances of total bacteria grown in control community or in the community i...
Common garden experiments that inoculate a standardised growth medium with synthetic microbial commu...
<p>The relative abundances of the top two opportunistic and commensal bacteria are shown. The blank,...
<p>For clarity, only the significant statistical results (<i>P</i><0.05) are shown in the figure. In...
#<p>Relative abundance given by mean ± SE.</p><p>***<i>P</i> = <0.001 (t-test).</p><p>Identification...
<p>Effects of bacterial genotypic (a, b) and functional diversity (c, d) on the stability of communi...
<p>Bacterial abundance (A), number of utilized carbon substrates (B), respiration rates (C) and grow...
Bacterial relative abundance on the Phylum level under different fertilization treatment (%).</p
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...
One of the earliest challenges for ecologists has been to study the impact of invasive species on mi...