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Figure 1 in Guan et al. (2025): "The effect of drought on plant growth before, during, and after drought. The shoot length (A), shoot fresh weight (B), and root dry weight (C) at different sampling times after sowing. Control: well-watered plants. Drought: drought stressed plants. (D) PCoA of Bray-Curtis dissimilarities of the bacterial community based on 16S rRNA amplicon sequencing. (E) Shannon diversity. Each box plot represents data from five replicates. Each dot represents a sample point. Asterisks in (A–D) indicate a statistically significant difference between the two groups (drought and control), which was derived from the t-test: *P < 0.05, **P < 0.01, and ***P < 0.001. The horizontal bars within boxes represent medians. The tops and bottoms of boxes represent the 75th and 25th percentiles, respectively. The upper and lower whiskers extend to data no more than 1.5 × the interquartile range from the upper edge and lower edge of the box, respectively."

Figure 1 in Guan et al. (2025): "The effect of drought on plant growth before, during, and after drought. The shoot length (A), shoot fresh weight (B), and root dry weight (C) at different sampling times after sowing. Control: well-watered plants. Drought: drought stressed plants. (D) PCoA of Bray-Curtis dissimilarities of the bacterial community based on 16S rRNA amplicon sequencing. (E) Shannon diversity. Each box plot represents data from five replicates. Each dot represents a sample point. Asterisks in (A–D) indicate a statistically significant difference between the two groups (drought and control), which was derived from the t-test: *P < 0.05, **P < 0.01, and ***P < 0.001. The horizontal bars within boxes represent medians. The tops and bottoms of boxes represent the 75th and 25th percentiles, respectively. The upper and lower whiskers extend to data no more than 1.5 × the interquartile range from the upper edge and lower edge of the box, respectively."

New publication: NRPS gene dynamics in the #wheat #rhizoplane show increased proportion of viscosin NRPS genes of importance for root colonization during drought. #rootmicrobiome #plantmicrobeinteractions
doi.org/10.1128/msph...

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Image of a graph and text summarising research article looking at long-term beneficial rice-bacteria associations, and a short biography of the two co-first authors of the work (text only), including headshot photo of one of them.

Image of a graph and text summarising research article looking at long-term beneficial rice-bacteria associations, and a short biography of the two co-first authors of the work (text only), including headshot photo of one of them.

With a little help from my friends...🌾

Adachi et al. monitored #rootmicrobiome from #rice grown in unfertilized paddy fields for >4yrs, & uncovered an important role for diazotrophic bacteria in sustaining long-term growth in the absence of external nutrients

doi.org/10.1093/pcp/...

#PlantScience

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Hub metabolites at the root–microbiome interface: unlocking plant drought resilience Drought is one of the most devastating environmental challenges, severely affecting agriculture, ecosystems, and global food security. Effective strat…

🚨 Great news! A review in‪ @cp-trendsplantsci.bsky.social ‬ with involvement of MicroSOS:
www.sciencedirect.com/science/arti...
What happens beneath our feet when plants go thirsty?
hugopantigoso @adamoss.bsky.social @gstringlis.bsky.social @vcarryon.bsky.social
#RootMicrobiome #Drought #Resilience

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Great to host the amazing @barleymicrobreed.bsky.social crowd at @bokuvienna.bsky.social #drought #barley #plantscience #rootmicrobiome

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Planing the year with postdocs @babakmalekian.bsky.social and Sadaf @bokuvienna.bsky.social #barleymicrobreed #roots #rootphenotyping #phytohormones #roothairs #rootmicrobiome #rhizosheath #rhizosphere #rootexudates #drought #rootsoilinterations

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