reverse transcriptase (rt) enzyme mixture (SMOBIO Technology)
90
Structured Review
SMOBIO Technology
reverse transcriptase (rt) enzyme mixture
Reverse Transcriptase (Rt) Enzyme Mixture, supplied by SMOBIO Technology, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/reverse+transcriptase+enzyme+mixture/reverse+transcriptase+enzyme+mixture/pm39827703-73-21-25
Average 90 stars, based on 1 article reviews
Reverse Transcriptase (Rt) Enzyme Mixture, supplied by SMOBIO Technology, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/reverse+transcriptase+enzyme+mixture/reverse+transcriptase+enzyme+mixture/pm39827703-73-21-25
Average 90 stars, based on 1 article reviews
reverse transcriptase (rt) enzyme mixture - by Bioz Stars,
2026-09
90/100 stars
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Binding Assay:Article Title: Nitric Oxide Reduced Saponin Metabolite in Chenopodium quinoa Seedlings Cultivated under Salinity Article Snippet: This study explored whether the exogenously applied nitric oxide (NO; 25 μM for 12 times with 7 days intervals) triggers variations in growth, physiological traits, and molecular characteristics in quinoa Chenopodium quinoa seedlings under two electrical conductivity (EC) conditions, including 1.5 and 8 dS/m.. The foliar application of NO not only increased the number of leaves produced and the biomass of the shoots under the low EC conditions, but also mitigated the risk associated with the high EC conditions.. Higher proline levels were recorded in both the leaves and the roots of plants treated with NO and/or salinity among which the (NO + salinity) group had the highest amount. Reverse Transcription:Article Title: Nitric Oxide Reduced Saponin Metabolite in Chenopodium quinoa Seedlings Cultivated under Salinity Article Snippet: This study explored whether the exogenously applied nitric oxide (NO; 25 μM for 12 times with 7 days intervals) triggers variations in growth, physiological traits, and molecular characteristics in quinoa Chenopodium quinoa seedlings under two electrical conductivity (EC) conditions, including 1.5 and 8 dS/m.. The foliar application of NO not only increased the number of leaves produced and the biomass of the shoots under the low EC conditions, but also mitigated the risk associated with the high EC conditions.. Higher proline levels were recorded in both the leaves and the roots of plants treated with NO and/or salinity among which the (NO + salinity) group had the highest amount. Article Title: Corona discharge plasma stimulated production of atropine in callus of Datura inoxia by DNA hypomethylation and gene regulation: a novel technology for plant cell and tissue culture. Article Snippet: Few investigations have tested the practical use of cold plasma as a novel technology to meet the requirements in the plant cell and tissue culture field.. To fill the knowledge gap, we intend to respond to the question of whether plasma priming influenced DNA ultrastructure and the production of atropine (a tropane alkaloid) in Datura inoxia.. Calluses were treated with the corona discharge plasma at time durations ranging from 0 to 300 s. Significant increases (about 60%) in biomass were observed in the plasma-primed calluses. Incubation:Article Title: Nitric Oxide Reduced Saponin Metabolite in Chenopodium quinoa Seedlings Cultivated under Salinity Article Snippet: This study explored whether the exogenously applied nitric oxide (NO; 25 μM for 12 times with 7 days intervals) triggers variations in growth, physiological traits, and molecular characteristics in quinoa Chenopodium quinoa seedlings under two electrical conductivity (EC) conditions, including 1.5 and 8 dS/m.. The foliar application of NO not only increased the number of leaves produced and the biomass of the shoots under the low EC conditions, but also mitigated the risk associated with the high EC conditions.. Higher proline levels were recorded in both the leaves and the roots of plants treated with NO and/or salinity among which the (NO + salinity) group had the highest amount. cDNA Synthesis:Article Title: Nitric Oxide Reduced Saponin Metabolite in Chenopodium quinoa Seedlings Cultivated under Salinity Article Snippet: This study explored whether the exogenously applied nitric oxide (NO; 25 μM for 12 times with 7 days intervals) triggers variations in growth, physiological traits, and molecular characteristics in quinoa Chenopodium quinoa seedlings under two electrical conductivity (EC) conditions, including 1.5 and 8 dS/m.. The foliar application of NO not only increased the number of leaves produced and the biomass of the shoots under the low EC conditions, but also mitigated the risk associated with the high EC conditions.. Higher proline levels were recorded in both the leaves and the roots of plants treated with NO and/or salinity among which the (NO + salinity) group had the highest amount. |