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Brassinosteroid (BR) signaling has long been reported to have an effect on xylem development, but the detailed mechanism remains unclear, especially in tree species. In this study, we find PdC3H17, which was demonstrated to mediate xylem formation driven by auxin in our previous report, is also involved in BR-promoted xylem development. Y1H analysis, EMSA, and transcription activation assay confirmed that PdC3H17 was directly targeted by PdBES1, which is a key transcriptional regulator in BR signaling. Tissue specificity expression analysis and in situ assay revealed that PdC3H17 had an overlapping expression profile with PdBES1. Hormone treatment examinations verified that xylem phenotypes in PdC3H17 transgenic plants, which were readily apparent in normal condition, were attenuated by treatment with either brassinolide or the BR biosynthesis inhibitor propiconazole. The subsequent quantitative real-time polymerase chain reaction (qRT-PCR) analyses further revealed that BR converged with PdC3H17 to
Brassinolide is a plant steroid that promotes cell elongation and cell devision and thus regulates plant growth and development. Buy Others inhibitor Brassinolide (Brassin lactone) from AbMole BioScience.
ABSTRACTBrassinosteroids (BRs) regulate important agronomic traits in rice, including plant height, leaf angle, and grain size. However, the underlying mechanisms remain not fully understood. We previously showed that GSK2, the central negative regulator of BR signaling, targets DLT, the GRAS family protein, to regulate BR responses. Here, we identified Ovate Family Protein 1 (OFP1) as a DLT interacting protein. OFP1 was ubiquitously expressed and the protein was localized in both cytoplasm and nucleus. Overexpression of OFP1 led to enlarged leaf angles, reduced plant height, and altered grain shape, largely resembled DLT overexpression plants. Genetic analysis showed that the regulation of plant architecture by OFP1 depends on DLT function. In addition, we found OFP1 was greatly induced by BR treatment, and OsBZR1, the critical transcription factor of BR signaling, was physically associated with the OFP1 promoter. Moreover, we showed that gibberellin synthesis was greatly repressed in OFP1
Total RNA was isolated from seedlings by the acid-guanidinium-phenol-chloroform method (Sambrook et al., 1989). Polyadenylated RNA was purified with the Oligotex-dT30 kit (Roche Diagnostics, Indianapolis) and converted into double-stranded cDNA with the use of a Super Script Choice cDNA Synthesis kit (Invitrogen) and with an oligo(dT)24 primer containing a T7 polymerase promoter site at its 3′ end (Amersham Biosciences AB, Uppsala). Biotin-labeled cRNA was generated from the double-stranded cDNA using the BioArray High Yield RNA transcript labeling kit (Enzo Diagnostics, New York) and was then purified with the use of the RNeasy RNA purification kit (Qiagen USA, Valencia, CA). Each cRNA sample (20 μg) was fragmented by incubation for 35 min at 94°C in fragmentation buffer (40 mm Tris-acetate [pH 8.1], 100 mmpotassium acetate, and 30 mm magnesium acetate). The hybridization mixture comprised 15 μg of fragmented cRNA in 300 μL of a solution containing 100 mm MES, 1 m[Na+], 20 mm EDTA, 0.01% ...
Nuestros resultados muestran como los Brassinosteroides (BRs), hormonas esteroides de plantas, mantienen la homeostasis de las células madre. Mediante un abordaje micro genómico hemos identificado a BRAVO (Brassinosteroids at Vascular and Organizing Centre), un componente especifico de las células madre. BRAVO es un factor de transcripción R2R3 de la familia MYB, que actúa como interruptor molecular que controla las divisiones de las células madre.. REFERENCIA DEL GRUPO INVESTIGADOR. Our laboratory investigates how Brassinosteroid (BR) hormones control plant growth and development. In particular, we are focused in understanding the spatial regulation of BR signalling in the vascular and stem cells. By using the root as a model organ we have uncovered a key role for BRs in stem cell function and cell cycle progression at the root meristem development necessary for normal root growth and development. These studies opened new avenues to study the role of plant stem cells on a mechanistic ...
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Brassinosteroids (BRs) are potent regulators of photosynthesis and crop yield in agricultural crops; however, the mechanism by which BRs increase photosynthesis is not fully understood. Here, we show that foliar application of 24-epibrassinolide (EBR) resulted in increases in CO(2) assimilation, hydrogen peroxide (H(2)O(2)) accumulation, and leaf area in cucumber. H(2)O(2 ...
Knowles, CL and Koutoulis, A and Reid, JB (2004) Microtubule Orientation in the Brassinosteroid Mutants lk, lka and lkb of Pea. Journal of Plant Growth Regulation, 23. pp. 146-155. ISSN 0721-7595 ...
In BR biosynthesis, Fujioka and Sakurai (1997b) have demonstrated that there are at least two branched biochemical pathways to the end product BL (Figure 1; Fujioka and Sakurai, 1997a, 1997b; Sakurai and Fujioka, 1997). Depending on the oxidation state of C-6, they are referred to as the early or late C-6 oxidation pathways. In the early pathway, the C-6 is oxidized to a ketone at campestanol (CN), whereas in the late pathway it is oxidized at 6-deoxocastasterone (6-deoxoCS). Otherwise, the two pathways share equivalent reactions. Our results from the experiments with the available BR intermediates clearly demonstrate that dwf4 is defective in the 22α-hydroxylation steps in each of the pathways. Application of all 22α-hydroxylated intermediates in these pathways, such as CT and 6-deoxoCT, cause dramatic elongation of dwf4 plants, but compounds not hydroxylated at C-22 had no effect. This result also suggests that DWF4 recognizes at least two substrates: CN and 6-oxoCN. It seems reasonable to ...
Light and brassinosteroids (BRs) have been proved to be crucial in regulating plant growth and development; however, the mechanism of how they synergistically function is still largely unknown. To explore the underlying mechanisms in photomorphogenesis, genome-wide analyses were carried out through examining the gene expressions of the dark-grown WT or BR biosynthesis-defective mutant det2 seedlings in the presence of light stimuli or exogenous Brassinolide (BL). Results showed that BR deficiency stimulates, while BL treatment suppresses, the expressions of light-responsive genes and photomorphogenesis, confirming the negative effects of BR in photomorphogenesis. This is consistent with the specific effects of BR on the expression of genes involved in cell wall modification, cellular metabolism and energy utilization during dark-light transition. Further analysis revealed that hormone biosynthesis and signaling-related genes, especially those of auxin, were altered under BL treatment or light ...
Supplementary Materialsijms-20-02339-s001. protection [12] and main development [13,14]. The mutants got brief origins and shown faulty polar distribution of PIN2 and PIN1, influencing PIN-mediated auxin transportation for body organ advancement and gravitropism [4,15]. However, whether and how BIG5 and other members of BIG subfamily take part in plant growth and gravitropic response remain unknown. Brassinosteroids […]. ...
Laboratory of Biochemistry (C.A.B., G.W.v.E., A.K., J.L., A.H.W., J.A., C.A., J.W.B., S.C.d.V.), Laboratory of Biophysics (A.v.H.), and Microspectroscopy Centre (A.v.H., J.W.B.), Department of Agrotechnology and Food Sciences, 6703 HA Wageningen, The Netherlands; ...
For a long time, bilirubin (BR) has been considered a waste molecule with potential toxic effects especially on the central nervous system. Later, it was found that BR exhibited cytoprotective effects and mildly elevated BR levels showed antioxidant, anti-inflammatory and immunomodulatory properties, however, exact mechanisms of the anti-inflammatory actions of BR have not been fully understood yet. The main aim of this study was to assess the protective effects of BR using experimental in vivo and in vitro models in relation to inflammation and oxidative stress. Partial goal was to establish validated analytical method for determination of BR and lumirubin. Gunn and heterozygous rats were treated with lipopolysaccharide (LPS, 6 mg/kg, IP) or vehicle (saline). After 12 hours, blood and organs were collected for analyses of inflammatory and hepatic injury markers. Primary rat hepatocytes were treated with BR and TNF-α, HepG2 and SH-SY5Y cell lines were treated with BR and chenodeoxycholic acid. ...
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TY - JOUR. T1 - BAK1, an Arabidopsis LRR receptor-like protein kinase, interacts with BRI1 and modulates brassinosteroid signaling. AU - Li, Jia. AU - Wen, Jiangqi. AU - Lease, Kevin A.. AU - Doke, Jason T.. AU - Tax, Frans E.. AU - Walker, John C.. N1 - Funding Information: We thank S. Zhang, B. Sonderman, members of the University of Missouri-Columbia Molecular Cytology Core Facility (J. Wagner, S. Bailes, and M. Sivaguru), and members of the University of Wisconsin Arabidopsis knockout facility for their excellent technical assistance. We also thank members of the Walker laboratory for aid and discussion. This work was supported by National Science Foundation Grants MCB 9809884, MCB 0112278, DBI 9975808 (J.C.W.), and IBN 0132554 (J.L. and J.C.W.) and by the University of Missouri Food for the 21 st Century Program.. PY - 2002/7/26. Y1 - 2002/7/26. N2 - Brassinosteroids regulate plant growth and development through a protein complex that includes the leucine-rich repeat receptor-like protein ...
Brassinosteroids (BRs) are endogenous plant hormones and are essential for normal plant growth and development. MicroRNAs (miRNAs) of Arabidopsis thaliana are involved in mediating cell proliferation in leaves, stress tolerance, and root development. The specifics of BR mechanisms involving miRNAs are unknown. Using customized miRNA array analysis, we identified miRNAs from A. thaliana ecotype Columbia (Col-0) regulated by 24-epibrassinolide (EBR, a highly active BR). We found that miR395a was significantly up-regulated by EBR treatment and validated its expression under these conditions. miR395a was over expressed in leaf veins and root tissues in EBR-treated miR395a promoter::GUS plants. We integrated bioinformatics methods and publicly available DNA microarray data to predict potential targets of miR395a. GUN5-a multifunctional protein involved in plant metabolic functions such as chlorophyll synthesis and the abscisic acid (ABA) pathway-was identified as a possible target. ABI4 and ABI5, both genes
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Author: Muessig, C. et al.; Genre: Journal Article; Published in Print: 2006; Keywords: Arabidopsis/genetics/*physiology|br/|Arabidopsis Proteins/genetics/physiology|br/|*Gene Expression Regulation, Plant|br/|Oxidoreductases Acting on CH-CH Group Donors/genetics/physiology|br/|Plant Growth Regulators/genetics/*physiology|br/|Steroids/*physiology; Title: Molecular analysis of brassinosteroid action
POSTDOCTORAL POSITION AVAILABLE Plant Molecular Biology/Biotechnology (PMBB) Group/ Horticulture and Crop Science The Ohio State University Columbus, Ohio USA A postdoctoral position is available to investigate the sugar sensing and signal transduction pathway in higher plants. Using a combination of biochemical, genetic and molecular approaches, we have identified the first plant sugar sensor, hexokinase (Plant Cell 6, 1665-1679; Plant Cell 9, 5-19; Trends in Plant Science 2, 208-214). Future projects include: the characterization of transgenic Arabidopsis with aberrant levels of hexokinase, the identification of other components that are involved in the sugar signal transduction pathway and the investigation of interactions between sugar and other signaling pathways. A second project to study plant steroid hormones is also available. We have identified several classes of Arabidopsis mutants that are involved in steroid hormone biosynthesis/signaling pathway. A T-DNA tagged brassinolide ...
Professor Gendron has 17 years of experience studying the genetic and molecular basis of how organisms react to environmental cues. He performed his Ph.D. in Dr. Zhi-Yong Wangs lab at Stanford University/ Carnegie Institution for Science where he studied the brassinosteroid signaling pathway in Arabidopsis with an emphasis on discovering and mechanistically describing signaling pathway components. In addition, he described how brassinosteroids control growth and organogenesis. He performed his post-doctoral research in Dr. Steve Kays lab at the University of California, San Diego and University of Southern California where he investigated transcriptional networks in the circadian clock of Arabidopsis. He was funded by a Ruth L. Kirchstein NRSA award from the NIH. Furthermore, he spent one year as a visiting scholar in the laboratory of Dr. Eric Bennett at University of California, San Diego studying mammalian protein degradation mechanisms and learning mass spectrometry techniques and ...
Professor Gendron has 17 years of experience studying the genetic and molecular basis of how organisms react to environmental cues. He performed his Ph.D. in Dr. Zhi-Yong Wangs lab at Stanford University/ Carnegie Institution for Science where he studied the brassinosteroid signaling pathway in Arabidopsis with an emphasis on discovering and mechanistically describing signaling pathway components. In addition, he described how brassinosteroids control growth and organogenesis. He performed his post-doctoral research in Dr. Steve Kays lab at the University of California, San Diego and University of Southern California where he investigated transcriptional networks in the circadian clock of Arabidopsis. He was funded by a Ruth L. Kirchstein NRSA award from the NIH. Furthermore, he spent one year as a visiting scholar in the laboratory of Dr. Eric Bennett at University of California, San Diego studying mammalian protein degradation mechanisms and learning mass spectrometry techniques and ...
The expression of TTL genes is induced by BRs and TTL3 shows its highest expression at the root elongation zone and at the hypocotyl, areas of high BR activity (González-García et al., 2011; Bernardo-García et al., 2014). Individual ttl1, ttl3, and ttl4, and particularly the triple ttl134 mutants, are hyposensitive to BR in root growth assays and show reduced hypocotyl elongation. Further lines of genetic evidence supporting the function of TTL genes in BR signaling come from phenotypic analyses of the quadruple mutants of ttl genes with either bri1-301 or bes1-D. At the molecular level, ttl134 shows increased expression of BR-repressed genes, whereas BR-induced dephosphorylation of the transcription factor BES1 is strongly reduced. At the cellular level, a functional TTL3-GFP shows a dual localization in the cytoplasm and plasma membrane in untreated seedlings. Treatment with eBL caused TTL3-GFP relocalization from the cytoplasm to the plasma membrane, while treatment with a BR biosynthesis ...
Abiotic and biotic stresses adversely affect plant growth and productivity. The phytohormones regulate key physiological events under normal and stressful conditions for plant development. Accumulative research efforts have discovered important roles of phytohormones and their interactions in regulation of plant adaptation to numerous stressors. Intensive molecular studies have elucidated various plant hormonal pathways; each of which consist of many signaling components that link a specific hormone perception to the regulation of downstream genes. Signal transduction pathways of auxin, abscisic acid, cytokinins, gibberellins and ethylene have been thoroughly investigated. More recently, emerging signaling pathways of brassinosteroids, jasmonates, salicylic acid and strigolactones offer an exciting gateway for understanding their multiple roles in plant physiological processes.At the molecular level, phytohormonal crosstalks can be antagonistic or synergistic or additive in actions. ...
Abiotic and biotic stresses adversely affect plant growth and productivity. The phytohormones regulate key physiological events under normal and stressful conditions for plant development. Accumulative research efforts have discovered important roles of phytohormones and their interactions in regulation of plant adaptation to numerous stressors. Intensive molecular studies have elucidated various plant hormonal pathways; each of which consist of many signaling components that link a specific hormone perception to the regulation of downstream genes. Signal transduction pathways of auxin, abscisic acid, cytokinins, gibberellins and ethylene have been thoroughly investigated. More recently, emerging signaling pathways of brassinosteroids, jasmonates, salicylic acid and strigolactones offer an exciting gateway for understanding their multiple roles in plant physiological processes.At the molecular level, phytohormonal crosstalks can be antagonistic or synergistic or additive in actions. ...
Arabidopsis TRIP-1 protein: expression is regulated by brassinosteroids and required for normal plant development; sequence similarity to animal TGF-beta receptor interacting protein
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Simulation of a Belousov-Zhabotinsky reaction using a two-dimensional * cellular automaton. This algorithm is based on the work of Nitori Kawashiro; * see http://www.nitorijournal.org/?p=2109. */ var bzr = {}; bzr.color = function(x, y) { var p = y * bzr.size + x; return {r: bzr.a[p] * 255, g: bzr.b[p] * 255, b: bzr.c[p] * 255, a: 255}; }; bzr.reset = function(n) { if (!arguments.length) n = bzr.size; var a = bzr.a = [], b = bzr.b = [], c = bzr.c = []; bzr.size = n; for (var y = 0, p = 0; y , n; y++) { for (var x = 0; x , n; x++, p++) { a[p] = Math.random(); b[p] = Math.random(); c[p] = Math.random(); } } }; bzr.update = function() { var a = bzr.a.slice(), b = bzr.b.slice(), c = bzr.c.slice(), n = bzr.size; for (var y = 0, p = 0; y , n; y++) { for (var x = 0; x , n; x++, p++) { /* Compute neighbor averages, with wrap-around. */ var sa = 0, sb = 0, sc = 0; for (var j = y - 1; j , y + 2; j++) { for (var i = x - 1; i , x + 2; i++) { var q = (j , 0 ? j + n : j ,= n ? j - n : j) * n + (i , 0 ? i + n ...
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Supplemental Methods are available online with this article; https://doi.org/10.1172/JCI87583DS1. Mouse care and models. Mice were housed under normal conditions. E2f1-/-, E2f3a-/-, E2f3b-/-, E2f3a1KI, E2F3a3bKI, Lys-Cre, and Alb-Cre mouse lines were described previously (31, 32, 40, 41). The backgrounds of the E2f1-/-, E2f3a-/-, and E2f3b-/- mice were FVB/NT fifth, fifth, and seventh generations, respectively. The E2f3a1KI and E2F3a3bKI mice were on a mixed background (FVB/NT, 129v/Sv, and C57BL/Swiss). Genotyping was performed on tail or liver DNA using standard PCR techniques. Primer sets used are listed in Supplemental Table 19. Dissected livers were flash-frozen in liquid nitrogen and stored at -80°C for further analysis or fixed in 10% formalin (Fisher Scientific) for histologic analyses. For DEN (Sigma-Aldrich) treatment, mice received an intraperitoneal injection of DEN (20 mg/1 kg body mass) at 20 days of age (33, 51).. Histology and diagnosis of HCC. Formalin-fixed mouse tissues were ...
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Prav posebna kategorija nalepk za steno pa so zagotovo nalepke piši briši, ki ne bi smele manjkati niti pri vas doma, in to ne glede na to, ali v domu prebivajo otroci ali pa samo starejše osebe.
Vi lämnar Barsta kl 11.00 och idag blåser det kuling så det känns bra att lämna kusten nu och köra inåt landet. Färdvägen idag går via Kramfors, Lunde(Skotten i Ådalen 31), Nämforsen och Kilforsen och nattläger blir i Ramsele där det är dragspelstämma till vår stora förtjusning…. Idag har vi kört 203 km. ...
Når man snakker om kolesterol og risiko hjerte- og karsykdom, er det vanlig å skille mellom det gode og det dårlige kolesterolet, hhv. HDL-kolesterol og LDL-kolesterol. Lavt HDL-kolesterol er en risikofaktor for hjerte- og karsykdom, men en ny studie antyder at det kanskje ikke er så enkelt som at HDL-kolesterol bare er bra. Helsejournalist Gina Kolata skriver…
C ). OVERSGT OV ER 0000 AARET 8. EFTER DE FRA ASYLERNE NDKOMNE AARSBERETNNGER SAMMENDRAGEN OG UDGVEN AF DREKTOREN FOR DET CVLE MEDCNALUESEN. CHRSTANA. TRYKT DET STEENSKE BOGTRYKKER. 88. ndholdsfortegnelse.
Det humanistiske fakultet er UiOs største med 6 000 studentar og 800 tilsette. HF har leiande forskingsmiljø og særs breitt studietilbod.
ISO 3166-2:BR - стандарт ISO, який визначає геокоди для Бразилії. Він є частиною стандарту ISO 3166-2. Перша частина коду - код ISO 3166 для Бразилії (BR), друга частина - двоцифровий код регіону. ...
HotForex is n bekroonde forex andmodities makelaar, die verskaffing van beurs: 0,01; HotForex; HotForex is n bekroonde forex andmodities m...