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Keywords = phyto buffers

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18 pages, 2014 KB  
Communication
A Study on the Use of the Phyto-Courier Technology in Tobacco Leaves Infected by Agrobacterium tumefaciens
by Annelie Gutsch, Roberto Berni, Jean-Francois Hausman, Flavia Maria Sutera, Ashkan Dehsorkhi, Nissim Torabi-Pour, Suzanne Saffie-Siebert and Gea Guerriero
Int. J. Mol. Sci. 2023, 24(18), 14153; https://doi.org/10.3390/ijms241814153 - 15 Sep 2023
Cited by 3 | Viewed by 2220
Abstract
Climate change results in exceptional environmental conditions and drives the migration of pathogens to which local plants are not adapted. Biotic stress disrupts plants’ metabolism, fitness, and performance, ultimately impacting their productivity. It is therefore necessary to develop strategies for improving plant resistance [...] Read more.
Climate change results in exceptional environmental conditions and drives the migration of pathogens to which local plants are not adapted. Biotic stress disrupts plants’ metabolism, fitness, and performance, ultimately impacting their productivity. It is therefore necessary to develop strategies for improving plant resistance by promoting stress responsiveness and resilience in an environmentally friendly and sustainable way. The aim of this study was to investigate whether priming tobacco plants with a formulation containing silicon-stabilised hybrid lipid nanoparticles functionalised with quercetin (referred to as GS3 phyto-courier) can protect against biotic stress triggered by Agrobacterium tumefaciens leaf infiltration. Tobacco leaves were primed via infiltration or spraying with the GS3 phyto-courier, as well as with a buffer (B) and free quercetin (Q) solution serving as controls prior to the biotic stress. Leaves were then sampled four days after bacterial infiltration for gene expression analysis and microscopy. The investigated genes increased in expression after stress, both in leaves treated with the phyto-courier and control solutions. A trend towards lower values was observed in the presence of the GS3 phyto-courier for genes encoding chitinases and pathogenesis-related proteins. Agroinfiltrated leaves sprayed with GS3 confirmed the significant lower expression of the pathogenesis-related gene PR-1a and showed higher expression of peroxidase and serine threonine kinase. Microscopy revealed swelling of the chloroplasts in the parenchyma of stressed leaves treated with B; however, GS3 preserved the chloroplasts’ mean area under stress. Furthermore, the UV spectrum of free Q solution and of quercetin freshly extracted from GS3 revealed a different spectral signature with higher values of maximum absorbance (Amax) of the flavonoid in the latter, suggesting that the silicon-stabilised hybrid lipid nanoparticles protect quercetin against oxidative degradation. Full article
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5 pages, 795 KB  
Proceeding Paper
Silybin, the Main Active Component of Silybum marianum, Affects Blood Coagulation: An In Vitro Pilot Study
by Agnieszka Mlicka, Katarzyna Siemiątkowska, Iris Plaku, Ewa Żekanowska and Artur Słomka
Med. Sci. Forum 2023, 21(1), 22; https://doi.org/10.3390/ECB2023-14081 - 1 Mar 2023
Cited by 1 | Viewed by 3029
Abstract
The health-promoting properties of Silybum marianum have been acknowledged since antiquity. This plant is credited with substantial hepatoprotective properties and is also protective in cardiovascular diseases, diabetes mellitus, and neurodegeneration, mainly for its anti-inflammatory and antioxidant effects. Only a few experimental studies have [...] Read more.
The health-promoting properties of Silybum marianum have been acknowledged since antiquity. This plant is credited with substantial hepatoprotective properties and is also protective in cardiovascular diseases, diabetes mellitus, and neurodegeneration, mainly for its anti-inflammatory and antioxidant effects. Only a few experimental studies have described the impact of Silybum marianum extract on the blood coagulation process; furthermore, these data are unsatisfactorily fragmented and need to be supplemented to understand the plant’s properties better. The predominant biologically active flavonolignan extracted from Silybum marianum is silybin, a mixture of two diastereomers, silybin A and silybin B, in approximately equimolar ratio. This study investigated the effect of silybin on the fundamental laboratory parameter for blood coagulation, namely prothrombin time (PT), an assay used to assess the extrinsic and common coagulation pathways. To evaluate the effect of silybin on PT, we prepared three solutions of silybin (Silybin (A + B mixture), PhytoLab GmbH & Co. KG, Vestenbergsgreuth, Germany) in 0.1% dimethylsulfoxide (DMSO, Sigma-Aldrich, Co., St. Louis, MO, USA): 10 μM, 50 μM, and 100 μM. PT was measured on a Coag 4D coagulometer (DIAGON Kft., Budapest, Hungary) using rabbit calcium thromboplastin (Dia-PT, DIAGON Kft., Budapest, Hungary) and control plasma, which is pooled plasma obtained from healthy donors (Dia-CONT, DIAGON Kft., Budapest, Hungary). A total of 10 µL of silybin solution was added to 40 µL of plasma; the sample was incubated for two minutes at 37 °C, and then 100 µL of thromboplastin, pre-warmed to 37 °C, and was added to the mixture. The coagulometer automatically gives the PT result in seconds (s). At the same time, PT was measured in the control plasma both without additional solutions and with the addition of tris-buffered saline (TBS) and 0.1% DMSO (10 µL of TBS or DMSO + 40 µL of plasma). Each measurement was performed eight times. Student’s t-test and the Friedman test with post-hoc analysis were used in the statistical analysis (Statistica 13, TIBCO Software Inc., Palo Alto, CA, USA). In the first step of our study, we tested how the dilution of the plasma sample affected PT. We did not observe statistically significant differences in PT between the control plasma and the control plasma supplemented with TBS (mean ± standard deviation 14.00 ± 0.77 s vs. 13.88 ± 0.38 s, p = 0.606). We also found no statistically significant differences in PT between the control plasma and the control plasma with the addition of 0.1% DMSO (mean ± standard deviation 14.00 ± 0.77 s vs. 14.10 ± 0.26 s, p = 0.728); therefore, we further analyzed the effect of silybin on PT using DMSO at this level (0.1%). The addition of silybin solutions to the control plasma resulted in a statistically significant PT-shortener (p < 0.001). Post-hoc analysis revealed a substantial shortening of PT under the influence of 50 μM (median 13.55 s) and 100 μM solution (median 13.40 s) of silybin, compared to plasma with the addition of 0.1% DMSO alone (median 14.10 s) and plasma with the addition of the lowest, 10 μM, level of silybin (median 14.20 s). At the same time, PT in the plasma with the addition of a 50 μM and 100 μM solution of silybin did not significantly differ statistically. Our in vitro analysis characterized the possible effect of Silybum marianum on the blood coagulation process. These results require further investigation to validate their validity and clinical utility. Full article
(This article belongs to the Proceedings of The 2nd International Electronic Conference on Biomedicines)
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23 pages, 2336 KB  
Article
Establishment of Regional Phytoremediation Buffer Systems for Ecological Restoration in the Great Lakes Basin, USA. II. New Clones Show Exceptional Promise
by Andrej Pilipović, Ronald S. Zalesny, Elizabeth R. Rogers, Bernard G. McMahon, Neil D. Nelson, Joel G. Burken, Richard A. Hallett and Chung-Ho Lin
Forests 2021, 12(4), 474; https://doi.org/10.3390/f12040474 - 13 Apr 2021
Cited by 10 | Viewed by 3225
Abstract
Poplar tree improvement strategies are needed to enhance ecosystem services’ provisioning and achieve phytoremediation objectives. We evaluated the establishment potential of new poplar clones developed at the University of Minnesota Duluth, Natural Resources Research Institute (NRRI) from sixteen phytoremediation buffer systems (phyto buffers) [...] Read more.
Poplar tree improvement strategies are needed to enhance ecosystem services’ provisioning and achieve phytoremediation objectives. We evaluated the establishment potential of new poplar clones developed at the University of Minnesota Duluth, Natural Resources Research Institute (NRRI) from sixteen phytoremediation buffer systems (phyto buffers) (buffer groups: 2017 × 6; 2018 × 5; 2019 × 5) throughout the Lake Superior and Lake Michigan watersheds. We divided clones into Experimental (testing stage genotypes) and Common (commercial and/or research genotypes) clone groups and compared them with each other and each NRRI clone (NRRI group) at the phyto buffers. We tested for differences in clone groups, phyto buffers, and their interactions for survival, health, height, diameter, and volume from ages one to four years. First-year survival was 97.1%, with 95.5%, 96.2%, and 99.6% for the 2017, 2018, and 2019 buffer groups, respectively. All trees had optimal health. Fourth-year mean annual increment of 2017 buffer group trees ranged from 2.66 ± 0.18 to 3.65 ± 0.17 Mg ha−1 yr−1. NRRI clones ‘99038022’ and ‘9732-31’ exhibited exceptional survival and growth across eleven and ten phyto buffers, respectively, for all years. These approaches advance poplar tree improvement efforts throughout the region, continent, and world, with methods informing clonal selection for multiple end-uses, including phytotechnologies. Full article
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23 pages, 1742 KB  
Article
Establishment of Regional Phytoremediation Buffer Systems for Ecological Restoration in the Great Lakes Basin, USA. I. Genotype × Environment Interactions
by Ronald S. Zalesny, Andrej Pilipović, Elizabeth R. Rogers, Joel G. Burken, Richard A. Hallett, Chung-Ho Lin, Bernard G. McMahon, Neil D. Nelson, Adam H. Wiese, Edmund O. Bauer, Larry Buechel, Brent S. DeBauche, Mike Peterson, Ray Seegers and Ryan A. Vinhal
Forests 2021, 12(4), 430; https://doi.org/10.3390/f12040430 - 2 Apr 2021
Cited by 11 | Viewed by 4451
Abstract
Poplar remediation systems are ideal for reducing runoff, cleaning groundwater, and delivering ecosystem services to the North American Great Lakes and globally. We used phyto-recurrent selection (PRS) to establish sixteen phytoremediation buffer systems (phyto buffers) (buffer groups: 2017 × 6; 2018 × 5; [...] Read more.
Poplar remediation systems are ideal for reducing runoff, cleaning groundwater, and delivering ecosystem services to the North American Great Lakes and globally. We used phyto-recurrent selection (PRS) to establish sixteen phytoremediation buffer systems (phyto buffers) (buffer groups: 2017 × 6; 2018 × 5; 2019 × 5) throughout the Lake Superior and Lake Michigan watersheds comprised of twelve PRS-selected clones each year. We tested for differences in genotypes, environments, and their interactions for health, height, diameter, and volume from ages one to four years. All trees had optimal health. Mean first-, second-, and third-year volume ranged from 71 ± 26 to 132 ± 39 cm3; 1440 ± 575 to 5765 ± 1132 cm3; and 8826 ± 2646 to 10,530 ± 2110 cm3, respectively. Fourth-year mean annual increment of 2017 buffer group trees ranged from 1.1 ± 0.7 to 7.8 ± 0.5 Mg ha−1 yr−1. We identified generalist varieties with superior establishment across a broad range of buffers (‘DM114’, ‘NC14106’, ‘99038022’, ‘99059016’) and specialist clones uniquely adapted to local soil and climate conditions (‘7300502’, ‘DN5’, ‘DN34’, ‘DN177’, ‘NM2’, ‘NM5’, ‘NM6’). Using generalists and specialists enhances the potential for phytoremediation best management practices that are geographically robust, being regionally designed yet globally relevant. Full article
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