Phosphate (Pi) availability has become a major constraint limiting crop growth and production. Heat shock factors (Hsfs) play important roles in mediating plant resistance to various environmental stresses, including heat, drought and salinity. However, whether members of the Hsf family are involved in the transcriptional regulation of plant responses to Pi insufficiency has not been reported. Here, we identified that TaHsfA2d, a member of the heat shock factor family, was strongly repressed by Pi deficiency. Overexpressing TaHsfA2d-4A in Arabidopsis results in significantly enhanced sensitivity to Pi deficiency, evidenced by increased anthocyanin content, decreased proliferation and elongation of lateral roots, and reduced Pi uptake. Furthermore, RNA-seq analyses showed that TaHsfA2d-4A functions through up-regulation of a number of genes involved in stress responses and flavonoid biosynthesis. Collectively, these results provide evidence that TaHsfA2d participates in the regulation of Pi deficiency stress, and that TaHsfA2d could serve as a valuable gene for genetic modification of crop tolerance to Pi starvation.
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http://dx.doi.org/10.1016/j.plaphy.2022.05.035 | DOI Listing |
Benign prostatic hyperplasia (BPH) is a prevalent disorder in aging males. It is investigated whether heat shock protein family A member 1A (HSPA1A), a cytoprotective chaperone induced under stress, has been implicated in the development of BPH. RNA-sequencing and single-cell sequencing analyses revealed significant upregulation of HSPA1A in BPH compared to controls.
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March 2025
School of Agricultural Science and Engineering, Liaocheng University, Liaocheng, 252000, China.
Rose (Rosa hybrida) is one of the most important ornamental and perfume industry crops worldwide, both economically and culturally. Abiotic stresses, such as high temperature and salt are crucial factors influencing the quality of roses. In this study, RhHsf24 was isolated from rose (R.
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March 2025
Academy of Medical Engineering and Translational Medicine, Medical College, Tianjin University, Tianjin, China.
Thermoelectric therapy has been emerging as a promising and versatile strategy for targeting malignant tumors treatment. However, the lack of effective time-space controlled triggering of thermoelectric effect in vivo limits the application of thermoelectric therapy. Here a magnetically triggered thermoelectric heterojunction (CuFeO/SrTiO, CFO/STO) for synergistic thermoelectric/chemodynamic/immuno-therapy is developed.
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Department of Botany, Faculty of Science, Fayoum University, Fayoum, 63514, Egypt.
Barley (Hordeum vulgare L.), a cornerstone of global cereal crops, is increasingly vulnerable to concurrent heat stress, a critical abiotic factor that is intensified by climate change. This study employed genome-wide association studies (GWAS) to investigate "stress memory," a phenomenon where prior stress exposure enhances a plant's response to subsequent stress events.
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Department of Neuropharmacology, Interdisciplinary Graduate School of Medicine, University of Yamanashi.
Alexander disease, also known as primary astrocyte disease, is a neurological disorder caused by mutations in the astrocyte-specific gene GFAP. The most prominent pathological finding is Rosenthal fiber formation within the astrocyte cytoplasm, which is primarily composed of GFAP and heat shock proteins (α-B crystalline, HPS27). Although astrocyte-derived changes may have widespread effects on the central nervous system, resulting in pathological changes and clinical manifestations, the etiological mechanisms of the disease remain underexplored.
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