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While PGPB have historically been applied in agriculture, their formal recognition in the last century has driven intensive research into their role as sustainable tools for improving crop yield and stress tolerance. As they are primarily sourced from wild or native environments, the widespread enthusiasm has led to heightened expectations surrounding their potential, often based on the assumption that biological solutions are inherently safer and more effective than synthetic inputs. However, despite their popularity, increasing reports of inconsistent or limited performance under real-world, field conditions have raised critical questions about their credibility as biofertilizers and biocontrol agents. This commentary critically evaluates the reasons behind the limited success of PGPB in field settings, based on the latest scientific evidence. Particular focus is placed on the microbial conflict in the rhizosphere, the inability of PGPB inoculants to adapt in complex environmental conditions, limitations in modern agricultural practices, formulation challenges, and regulatory gaps. The paper recommends the need for a paradigm shift in PGPB research and deployment strategies to better align laboratory successes with the challenges and outcomes seen in actual field conditions. Such an approach is vital for reducing over-reliance on underperforming technologies and promoting more resilient, context-specific solutions for sustainable agriculture, especially in under-resourced regions.
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http://dx.doi.org/10.1007/s11274-025-04552-y | DOI Listing |
Cereb Cortex
August 2025
Nencki Institute of Experimental Biology, PAS, 3 Pasteur Street, 02-093 Warsaw, Poland.
In the visual cortices, receptive fields (RFs) are arranged in a gradient from small sizes in the center of the visual field to the largest sizes at the periphery. Using functional magnetic resonance imaging (fMRI) mapping of population RFs, we investigated RF adaptation in V1, V2, and V3 in patients after long-term photoreceptor degeneration affecting the central (Stargardt disease [STGD]) and peripheral (Retinitis Pigmentosa [RP]) regions of the retina. In controls, we temporarily limited the visual field to the central 10° to model peripheral loss.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
September 2025
Department of Bioengineering, Stanford University, Stanford, CA 94305.
Despite periods of permanent darkness and extensive ice coverage in polar environments, photosynthetic ice diatoms display a remarkable capability of living inside the ice matrix. How these organisms navigate such hostile conditions with limited light and extreme cold remains unknown. Using a custom subzero temperature microscope during an Arctic expedition, we present the finding of motility at record-low temperatures in a Eukaryotic cell.
View Article and Find Full Text PDFActa Parasitol
September 2025
Région du Centre, Université Joseph Ki-Zerbo, Rue Thomas Sankara, O3 BP 7021, Ouagadougou, Burkina Faso.
Introduction: The objective of the World Health Organization is to achieve the interruption of human African trypanosomiasis (HAT) transmission by 2030.
Methods: This review aims to update knowledge on HAT, through a synthesis on the epidemiology, diagnostic tools and drugs of HAT.
Results: From 1960 to 2024 approximately 132,063 cases of HAT have been reported across Africa.
World J Microbiol Biotechnol
September 2025
Department of Microbiology, University of Georgia, Athens, GA, 30602, USA.
While PGPB have historically been applied in agriculture, their formal recognition in the last century has driven intensive research into their role as sustainable tools for improving crop yield and stress tolerance. As they are primarily sourced from wild or native environments, the widespread enthusiasm has led to heightened expectations surrounding their potential, often based on the assumption that biological solutions are inherently safer and more effective than synthetic inputs. However, despite their popularity, increasing reports of inconsistent or limited performance under real-world, field conditions have raised critical questions about their credibility as biofertilizers and biocontrol agents.
View Article and Find Full Text PDFAppl Microbiol Biotechnol
September 2025
School of Plant Sciences, The University of Arizona, 1140 E South Campus Drive, Forbes 303, Tucson, AZ, 85721, USA.
Fungal endophytes and epiphytes associated with plant leaves can play important ecological roles through the production of specialized metabolites encoded by biosynthetic gene clusters (BGCs). However, their functional capacity, especially in crops like lettuce (Lactuca sativa L.), remains poorly understood.
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