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Cubeta, M. A.

Publications and source records attributed to Cubeta, M. A..

2 recordsLinked to original sources

A synergistic culture dependent and independent approach reveals a conserved wheat seed mycobiome

The occurrence of pathogenic fungal taxa associated with wheat (Triticum aestivum L.) seeds is well studied, but less is known about non-pathogenic taxa of the wheat seed mycobiome. The goal of our research is to characterize wheat seed fungal endophyte diversity with a synergistic culture dependent and independent experimental approach. Four publicly available winter wheat cultivars developed in the southeastern United States with varying phenotypic and disease resistance traits were examined over a period of two years: Catawba, Hilliard, Shirley, and USG 3640. Our culture dependent methods involving two nutrient media generated 645 fungal isolates representing twelve genera sampled from multiple cultivars. Metabarcoding analysis identified a broader range of fungal taxa and a greater number of unique sequences than culture dependent methods. When examining fungal diversity across cultivars and years, richness decreased in 2021 for both culture dependent and independent approaches. However, wheat seed fungal community structure was stable across cultivars and years. Our results highlight the importance of combining culture independent and dependent methods to capture and establish a diverse endophytic fungal catalog associated with the wheat seed and highlight areas where future culture dependent efforts can focus their efforts.

microbiology↗

Stability of the Wheat Seed Mycobiome Across North Carolina's Longitudinal Gradient

Improving wheat yield and performance involves selecting varieties that are well adapted for a regional area. Although host genotype and environment are major factors that impact crop performance and resilience, less is known about the relative contribution and occurrence of wheat seed endophytic fungal communities across spatial and temporal scales. An increased understanding of composition and assembly of beneficial endophytic fungal communities across regional scales provides valuable insight into the stability of the endophytic seed mycobiome. Our aim in this study was to examine the relative contribution and impact of latitude and longitude gradients within North Carolina (NC) on wheat seed fungal community structure of two regionally adapted soft red winter wheat cultivars, Hilliard and USG 3640. We examined the endophytic wheat seed microbiome of the two winter wheat cultivars planted in official variety trials at five geographic locations across NC in 2021 and two geographic locations in 2022. ITS1 sequence-based analysis of surface disinfested wheat seeds was conducted to determine alpha and beta diversity. Species richness is influenced by geographical location, however wheat seed mycobiome community structure is stable across cultivars and years. Latitude and longitude contributed to the observed variation in wheat seed mycobiome structure, in addition to yield, seed moisture, and leaf nutrients. When surveying taxa present within all cultivars, geographical sites and years, Alternaria and Epicoccum spp. exhibited high relative abundance in the wheat seed mycobiome. Our results provide a comprehensive catalog of core fungal taxa well-adapted to diverse environments and conserved across wheat cultivars.

microbiology↗