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The root hair-less brb of Hordeum vulgare L. (bald root barley) mutant was used to assess the significance that root hairs have for the hydraulic properties of roots and response to a limited supply of mineral nutrients in plants grown on hydroponics. The barley brb mutant and its parent wild-type (H. vulgare cv. Pallas) were grown under nutrient sufficient control conditions, and under conditions of low supply of P and N. Plants were analysed when they were 14-18 days old. Root hydraulic conductivity (Lp) was determined for excised root systems and intact transpiring plants, and cell Lp was determined through cell pressure probe measurements. The formation of Casparian bands and suberin lamellae was followed through staining of cross-sections. The presence or absence of root hairs had no effect on the overall hydraulic response of plants to nutritional treatments. Root and cell Lp did not differ between the two genotypes. The most apparent difference between brb and wild-type plants was the consistently reduced formation of apoplastic barriers in brb plants. Any hydraulic function of root hairs can be redundant in barley, at least under the hydroponic conditions tested.
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http://dx.doi.org/10.1071/FP20287 | DOI Listing |
Eur Radiol
September 2025
Department of Ultrasound, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Objective: To explore the value of microflow patterns based on superb microvascular imaging (SMI) combined with greyscale ultrasound in thyroid nodule diagnosis and biopsy recommendation.
Materials And Methods: Adult patients with thyroid nodules were recruited from May 2023 to February 2024. The greyscale features of nodules were evaluated according to the five ultrasound risk stratification systems (RSSs).
Nitric Oxide
August 2025
Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.
Nitrate (NO), besides serving as a major N source, also acts as a signalling molecule in plant growth and development. Studies on NO dependent regulation of root growth in wheat (Triticum aestivum) are mostly limited to morphophysiological changes, while the underlying signalling mechanisms remain largely unexplored. To bridge this gap, the present study aims to get a mechanistic understanding of the NO dependent regulation of root growth in wheat seedlings.
View Article and Find Full Text PDFPlant J
August 2025
State Key Laboratory of Black Soils Conservation and Utilization, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, Jilin, 130102, China.
Small nucleolar RNAs (snoRNAs) function in ribosome biogenesis, and many ribosome biogenesis-related genes were downregulated by osmotic stress, implying a negative role of snoRNAs in drought tolerance. A snoRNA, namely, the NON-CODING RNA 1 (NCR1) was studied for its roles in drought tolerance in Arabidopsis. In comparison with wild-type (WT) plants, the loss-of-function ncr1 mutant plants showed enhanced drought tolerance, which was restored in the NCR1-complemented plants, whereas the NCR1-overexpressing plants revealed a drought-sensitive phenotype.
View Article and Find Full Text PDFMol Plant Microbe Interact
August 2025
Huazhong Agricultural University, State Key Laboratory of Agricultural Microbiology, No.1 Shizishan Street, Hongshan District, Wuhan, Wuhan, Hubei , China, 430070;
Three major components of lipopolysaccharide (LPS) in rhizobia, namely core polysaccharide, o-antigen, and lipid A, act as microbe-associated molecular patterns (MAMPs) to participate in the symbiosis between rhizobia and legume. Rhizobia have a different lipid A structure from other Gram-negative bacteria. The 3-hydroxy group on the 2' or 3' myristate acyl chain of its lipid A is substituted by a unique very long chain fatty acid (VLCFA).
View Article and Find Full Text PDFPlant Physiol
August 2025
Department of Plant Biotechnology and Bioinformatics, Ghent University, Gent 9052, Belgium.
SIAMESE (SIM) and CELL CYCLE SWITCH 52 A1 (CCS52A1) control Arabidopsis root hair cell volume by controlling endoreplication.
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