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Microorganisms may enhance plant resilience to water stress by influencing the host physiology and anatomy at the leaf level. Bacterial and yeast endophytes, isolated from wild poplar and willow, can improve the intrinsic water-use efficiency (iWUE) of cultivated poplar (Populus) under water deficits by lowering stomatal conductance (gsw). However, the relevance of stomatal anatomy underlying this reduction remains unclear. We hypothesized endophyte inoculation could change host stomatal anatomy, and this would relate to decreases in gsw. We subjected Salicaceae endophyte-inoculated and uninoculated Populus trichocarpa to well-watered and water-deficit treatments in greenhouse studies. We examined the changes of individual stomatal traits and related the composition of these parameters, termed stomatal patterning, to leaf gas exchange under light saturation. After a water deficit, inoculation improved iWUE at light saturation by preserving carbon assimilation (Anet) and lowering gsw, but these changes were independent of soil-moisture status. Drops in gsw corresponded to underlying shifts in stomatal patterning (Rconditional2=0.63; P=0.002). Inoculated plants had smaller, more compact stomata and greater anatomical maximum stomatal conductance (gsmax) relative to the control (adjusted ηp2=0.1; P=0.001). Salicaceae endophytes may alter stomatal density and size, lowering gsw and increasing iWUE. Future work should quantify endophyte colonization of the host to draw direct relationships between microbes and stomatal traits.
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http://dx.doi.org/10.1093/jxb/eraf136 | DOI Listing |
J Hazard Mater
September 2025
Department of Botany, Jamia Hamdard, New Delhi 110062, India. Electronic address:
Lanthanum (La), being one of the crucial rare earth elements (REEs), plays an explicit role in agriculture as fertilizer. Due to its hormetic response, it exhibits dualistic behaviour in Triticum aestivum (wheat) plants. Abscisic acid (ABA) is a key plant hormone regulating various physiological and metabolomic responses in plants, but the interaction between La and ABA remains unclear.
View Article and Find Full Text PDFTree Physiol
September 2025
Linze Inland River Basin Research Station, State Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China.
Leaves constitute a vital bottleneck in whole-plant water transport, and their water strategies are key determinants of plant competition and productivity. Nonetheless, our knowledge of leaf water strategies predominantly stems from single perspectives (i.e.
View Article and Find Full Text PDFPlant Physiol
September 2025
School of Life Sciences, University of Essex, Colchester, CO4 3SQ, United Kingdom.
Stomatal pores govern the tradeoff between CO₂ assimilation and water loss, and optimizing their performance is critical for crop resilience, particularly under dynamic field environments. Here, we show that overexpression of Triticum aestivum EPIDERMAL PATTERNING FACTOR1 (TaEPF1) in bread wheat (Triticum aestivum) reduces leaf stomatal density in a leaf surface-specific manner, with a greater decline on the abaxial surface than on the adaxial surface. TaEPF1 overexpressors exhibited substantially lower stomatal conductance than wild-type (WT) control plants, which resulted in diffusional constraints limiting photosynthesis when measured under monochromatic red light.
View Article and Find Full Text PDFJ Integr Plant Biol
September 2025
Hunan Province Key Laboratory of Crop Sterile Germplasm Resource Innovation and Application, College of Life Science, Hunan Normal University, Changsha, 410081, China.
Hyperosmolality-triggered physiological drought hinders plant growth and development, leading to a drop in crop yields. Hyperosmolality triggers calcium signaling, and yet how osmotic-induced calcium signaling participates in cellular osmotic response remains enigmatic. To date, several Ca channels and transporters have been identified to regulate osmotic-induced calcium signal generation (CaSG) or Ca homeostasis.
View Article and Find Full Text PDFFront Plant Sci
August 2025
Horticulture and Molecular Physiology Lab, Department of Horticulture and Food Science, School of Agricultural Innovations and Advanced Learning, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Tomato (), a widely cultivated yet perishable crop, depends heavily on adequate sunlight and water for optimal growth and productivity. However, due to unavoidable environmental and climatic changes-particularly drought-its productivity has declined in recent years. Grafting, an ancient horticultural practice, is known to enhance yield and combat abiotic stress by regulating physiological and cellular processes.
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