Publications by authors named "Vasanth Singan"

Effector secretion is crucial for root endophytes to establish and protect their ecological niche. We used time-resolved transcriptomics to monitor effector gene expression dynamics in two closely related Sebacinales, Serendipita indica and Serendipita vermifera, during symbiosis with three plant species, competition with the phytopathogenic fungus Bipolaris sorokiniana, and cooperation with root-associated bacteria. We observed increased effector gene expression in response to biotic interactions, particularly with plants, indicating their importance in host colonization.

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  • The jasmonic acid (JA) signalling pathway is crucial for establishing ectomycorrhizal (ECM) symbiosis, with the effector MiSSP7 playing a key role by stabilizing the JA corepressor JAZ6, and inhibiting MYC2 transcription factors.
  • Research reveals that overexpressing MYC2s in poplar trees decreases fungal colonization, while silencing them increases it, indicating a complex relationship between plant immunity and fungal growth.
  • The identification of terpene synthase genes regulated by MYC2s suggests that root monoterpenes can inhibit fungal growth, highlighting the significance of MYC2s and terpenes in promoting mutualistic symbiosis in poplars
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The model moss species Physcomitrium patens has long been used for studying divergence of land plants spanning from bryophytes to angiosperms. In addition to its phylogenetic relationships, the limited number of differential tissues, and comparable morphology to the earliest embryophytes provide a system to represent basic plant architecture. Based on plant-fungal interactions today, it is hypothesized these kingdoms have a long-standing relationship, predating plant terrestrialization.

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Soil fungi belonging to different functional guilds, such as saprotrophs, pathogens, and mycorrhizal symbionts, play key roles in forest ecosystems. To date, no study has compared the actual gene expression of these guilds in different forest soils. We used metatranscriptomics to study the competition for organic resources by these fungal groups in boreal, temperate, and Mediterranean forest soils.

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Perennial grasses are important forage crops and emerging biomass crops and have the potential to be more sustainable grain crops. However, most perennial grass crops are difficult experimental subjects due to their large size, difficult genetics, and/or their recalcitrance to transformation. Thus, a tractable model perennial grass could be used to rapidly make discoveries that can be translated to perennial grass crops.

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Anaerobic fungi produce biomass-degrading enzymes and natural products that are important to harness for several biotechnology applications. Although progress has been made in the development of methods for extracting nucleic acids for genomic and transcriptomic sequencing of these fungi, most studies are limited in that they do not sample multiple fungal growth phases in batch culture. In this study, we establish a method to harvest RNA from fungal monocultures and fungal-methanogen co-cultures, and also determine an optimal time frame for high-quality RNA extraction from anaerobic fungi.

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Intimate associations between fungi and intracellular bacterial endosymbionts are becoming increasingly well understood. Phylogenetic analyses demonstrate that bacterial endosymbionts of Mucoromycota fungi are related either to free-living Burkholderia or Mollicutes species. The so-called Burkholderia-related endosymbionts or BRE comprise Mycoavidus, Mycetohabitans and Candidatus Glomeribacter gigasporarum.

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Spray-induced gene silencing (SIGS) is an emerging tool for crop pest protection. It utilizes exogenously applied double-stranded RNA to specifically reduce pest target gene expression using endogenous RNA interference machinery. In this study, SIGS methods were developed and optimized for powdery mildew fungi, which are widespread obligate biotrophic fungi that infect agricultural crops, using the known azole-fungicide target cytochrome P450 51 (CYP51) in the Golovinomyces orontii-Arabidopsis thaliana pathosystem.

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  • The order of rust fungi includes over 7,000 species that significantly affect agriculture, horticulture, forestry, and ecosystems.
  • Phakopsora pachyrhizi, the fungus responsible for Asian soybean rust disease, is a prime example of this impact and has a complex genome that has been challenging to assemble accurately.
  • Researchers sequenced three genomes of P. pachyrhizi, revealing a size of up to 1.25 Gb and a high transposable element content (~93%), demonstrating the role of these elements in host adaptation, stress responses, and genetic variability.
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Ectomycorrhizal (ECM) fungi are key players in forest carbon (C) sequestration, receiving a substantial proportion of photosynthetic C from their forest tree hosts in exchange for plant growth-limiting soil nutrients. However, it remains unknown whether the fungus or plant controls the quantum of C in this exchange, nor what mechanisms are involved. Here, we aimed to identify physiological and genetic properties of both partners that influence ECM C transfer.

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The mutualistic ectomycorrhizal (ECM) fungal genus Pisolithus comprises 19 species defined to date which colonize the roots of >50 hosts worldwide suggesting that substantial genomic and functional evolution occurred during speciation. To better understand this intra-genus variation, we undertook a comparative multi-omic study of nine Pisolithus species sampled from North America, South America, Asia, and Australasia. We found that there was a small core set of genes common to all species (13%), and that these genes were more likely to be significantly regulated during symbiosis with a host than accessory or species-specific genes.

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Ectomycorrhizas are an intrinsic component of tree nutrition and responses to environmental variations. How epigenetic mechanisms might regulate these mutualistic interactions is unknown. By manipulating the level of expression of the chromatin remodeler DECREASE IN DNA METHYLATION 1 (DDM1) and two demethylases DEMETER-LIKE (DML) in Populus tremula × Populus alba lines, we examined how host DNA methylation modulates multiple parameters of the responses to root colonization with the mutualistic fungus Laccaria bicolor.

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A system for co-cultivation of anaerobic fungi with anaerobic bacteria was established based on lactate cross-feeding to produce butyrate and butanol from plant biomass. Several co-culture formulations were assembled that consisted of anaerobic fungi (Anaeromyces robustus, Neocallimastix californiae, or Caecomyces churrovis) with the bacterium Clostridium acetobutylicum. Co-cultures were grown simultaneously (e.

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Plant response to drought stress involves fungi and bacteria that live on and in plants and in the rhizosphere, yet the stability of these myco- and micro-biomes remains poorly understood. We investigate the resistance and resilience of fungi and bacteria to drought in an agricultural system using both community composition and microbial associations. Here we show that tests of the fundamental hypotheses that fungi, as compared to bacteria, are (i) more resistant to drought stress but (ii) less resilient when rewetting relieves the stress, found robust support at the level of community composition.

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The Stiff Stalk heterotic pool is a foundation of US maize seed parent germplasm and has been heavily utilized by both public and private maize breeders since its inception in the 1930s. Flowering time and plant height are critical characteristics for both inbred parents and their test crossed hybrid progeny. To study these traits, a 6-parent multiparent advanced generation intercross population was developed including maize inbred lines B73, B84, PHB47 (B37 type), LH145 (B14 type), PHJ40 (novel early Stiff Stalk), and NKH8431 (B73/B14 type).

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  • Small RNAs (sRNAs) and microRNAs (miRNAs) are crucial for regulating the interactions between plants and harmful microbes; recent studies highlight their potential role in promoting beneficial symbiosis.
  • A novel miRNA from ectomycorrhizal fungi was identified and shown to be transferred to plant roots, affecting the stability and integration of the mycorrhizal relationship.
  • The research suggests that this fungal miRNA may target specific plant signaling pathways, indicating its significant role in enhancing mutualistic interactions between the two organisms.
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  • Anaerobic fungi like Caecomyces churrovis and methanogenic archaea such as Methanobacterium bryantii work together in the rumen to break down lignocellulose, indicating that microbes from different habitats can form beneficial relationships based on their metabolic functions.!* -
  • Research found that co-culturing C. churrovis with M. bryantii led to increased gene expression for enzymes related to carbohydrate breakdown and sugar uptake, suggesting that their partnership enhances biomass decomposition capabilities.!* -
  • The study highlighted the importance of a high-quality genome sequencing of C. churrovis, revealing significant genetic features that relate to carbohydrate processing and confirming that such co-cultures can boost
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  • The study focuses on a genetically engineered microbial strain (BRC-JBEI 1.1.2) that efficiently produces bioproducts such as amino acids and biofuels.
  • Researchers resequenced the strain and analyzed how gene expression changes when transitioning from shake flasks to bioreactors, especially when exposed to an ionic liquid called cholinium lysinate.
  • Findings revealed distinct metabolic and regulatory responses essential for growth in industrial settings, along with variations in the accumulation of organic acids and bioproducts, enhancing our understanding of the engineered strain's performance in bioproduction.
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Orphan genes are characteristic genomic features that have no detectable homology to genes in any other species and represent an important attribute of genome evolution as sources of novel genetic functions. Here, we identified 445 genes specific to Populus trichocarpa. Of these, we performed deeper reconstruction of 13 orphan genes to provide evidence of de novo gene evolution.

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  • Anaerobic gut fungi, specifically Neocallimastigomycetes, coexist with bacteria in the digestive systems of large herbivores and may impact bacterial growth due to their rich genetic makeup.
  • In a study, researchers found that when they co-cultivated a particular strain of rumen bacteria (UWB7) with these fungi, both organisms showed significant changes in their gene expression, indicating a close interaction.
  • The findings suggest that while anaerobic fungi are outnumbered, they can still thrive and potentially produce unique antimicrobial compounds in response to the presence of bacteria, highlighting their role as a source for novel antibiotics.
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The stiff-stalk heterotic group in Maize (Zea mays L.) is an important source of inbreds used in U.S.

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The fungal family Serendipitaceae encompasses root-associated lineages with endophytic, ericoid, orchid, and ectomycorrhizal lifestyles. Switchgrass is an important bioenergy crop for cellulosic ethanol production owing to high biomass production on marginal soils otherwise unfit for food crop cultivation. The aim of this study was to investigate the host plant responses to spp.

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  • Long-term climate change threatens food and fuel security, and understanding the genetic basis of crop resilience is essential for improving productivity.
  • The genome assembly of switchgrass reveals insights into its climate adaptation capabilities, demonstrated through a study of diverse genotypes across various environments.
  • The findings suggest that gene flow and the polyploid structure of switchgrass enhance its adaptive potential, offering valuable resources for breeders aiming to boost bioenergy yield sustainably.
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Ectomycorrhizal (ECM) fungi are integral to boreal and temperate forest ecosystem functioning and nutrient cycling. ECM fungi, however, originate from diverse saprotrophic lineages and the impacts of genetic variation across species, and especially within a given ECM species, on function and interactions with the environment is not well understood. Here, we explore the extent of intra-species variation between four isolates of the ECM fungus Pisolithus microcarpus, in terms of gene regulation, carbon metabolism and growth, and interactions with a host, Eucalyptus grandis.

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High titer, rate, yield (TRY), and scalability are challenging metrics to achieve due to trade-offs between carbon use for growth and production. To achieve these metrics, we take the minimal cut set (MCS) approach that predicts metabolic reactions for elimination to couple metabolite production strongly with growth. We compute MCS solution-sets for a non-native product indigoidine, a sustainable pigment, in Pseudomonas putida KT2440, an emerging industrial microbe.

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