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Sudalaimuthuasari, N.

Publications and source records attributed to Sudalaimuthuasari, N..

2 recordsLinked to original sources

Desert Cucurbit Microbiomes: Spatiotemporal Dynamics and Functional Adaptations

BackgroundPlant microbiomes can contribute to host adaptation in extreme environments, particularly deserts where high temperatures, intense radiation, water limitation, and nutrient-poor soils constrain plant survival. Citrullus colocynthis is a desert-adapted cucurbit with medicinal and agricultural relevance, yet integrated understanding of its microbiome across seasons, tissues, habitats, and functional traits remains limited. Here, we asked whether spatiotemporal microbiome dynamics in C. colocynthis are linked to microbial functional potential and cultivable traits relevant to persistence under arid conditions. ResultsTo address this, we profiled the microbiome of C. colocynthis across two sites, two seasons, and multiple compartments using 16S rRNA amplicon screening, shotgun metagenomics, culture-based phenotyping, and genome analysis. Amplicon profiling provided an exploratory framework and showed that plant-associated bacterial communities were shaped primarily by season and tissue type, with roots emerging as the most season-responsive compartment. Shotgun metagenomics confirmed stronger seasonal restructuring in root bacterial communities than in leaves and extended taxonomic profiling to fungal and archaeal fractions, which were interpreted descriptively because of low read representation. Summer root communities were enriched in actinobacterial genera, including Saccharopolyspora, Amycolatopsis, Pseudonocardia, and Nonomuraea, while functional profiling indicated coordinated shifts in central metabolism, cofactor salvage, exopolysaccharide-related pathways, and redox-associated functions. Twenty-four cultured bacterial isolates exhibited diverse stress-tolerance and plant growth-promoting traits, and whole-genome analyses identified biosynthetic, osmoprotective, oxidative-stress, and phytohormone-related gene content. Pangenome analysis of Pseudomonas orientalis revealed an open pangenome and lifestyle-associated accessory genes linked to host-associated functions. ConclusionsTogether, these findings connect seasonal bacterial community turnover, metagenomic functional potential, and cultivable microbial traits in a desert plant holobiont, highlighting desert-native bacteria and pathways relevant to microbiome-guided strategies for arid agriculture.

microbiology↗

The multifaceted roles of R2R3 transcription factor HlMYB7 in the regulation of flavonoid and bitter acids pathways, development and biotic stress in hop (Humulus lupulus L.)

Hop (Humulus lupulus) biosynthesizes the highly economically valuable secondary metabolites, which include flavonoids, bitter acids, polyphenols and essential oils. These compounds have important pharmacological properties and are widely implicated in the brewing industry owing to bittering flavor, floral aroma and preservative activity. Our previous studies documented that ternary MYB-bHLH-WD40 (MBW) and binary WRKY1-WD40 (WW) protein complexes transcriptionally regulate the accumulation of bitter acid (BA) and prenylflavonoids (PF). In the present study, we investigated the regulatory functions of the R2R3-MYB repressor HlMYB7 transcription factor, which contains a conserved N-terminal domain along with the repressive motif EAR, in regulating the PF- and BA-biosynthetic pathway and their accumulation in hop. Constitutive expression of HlMYB7 resulted in transcriptional repression of structural genes involved in the terminal steps of biosynthesis of PF and BA, as well as stunted growth, delayed flowering, and reduced tolerance to viroid infection in hop. Furthermore, yeast two-hybrid and transient reporter assays revealed that HlMYB7 targets both PF and BA pathway genes and suppresses MBW and WW protein complexes. Heterologous expression of HlMYB7 leads to down-regulation of structural genes of flavonoid pathway in Arabidopsis thaliana, including a decrease in anthocyanin content in Nicotiana tabacum. The combined results from functional and transcriptomic analyses highlight the important role of HlMYB7 in fine-tuning and balancing the accumulation of secondary metabolites at the transcriptional level, thus offer a plausible target for metabolic engineering in hop.

plant biology↗