scholarly journals Scale-up production of Rehmannia glutinosa adventitious root biomass in bioreactors and improvement of its acteoside content by elicitation

2021 ◽  
Vol 172 ◽  
pp. 114059
Author(s):  
Endang Rahmat ◽  
Denis Okello ◽  
Hyoseon Kim ◽  
Jun Lee ◽  
Yuseong Chung ◽  
...  
2011 ◽  
Vol 102 (21) ◽  
pp. 10072-10079 ◽  
Author(s):  
Xi-Hua Cui ◽  
Hosakatte Niranjana Murthy ◽  
You-Xun Jin ◽  
Yong-Hyeon Yim ◽  
Ji-Yeong Kim ◽  
...  

Agronomy ◽  
2020 ◽  
Vol 10 (6) ◽  
pp. 785 ◽  
Author(s):  
Kim-Cuong Le ◽  
Thanh-Tam Ho ◽  
Jong-Du Lee ◽  
Kee-Yoeup Paek ◽  
So-Young Park

Panax ginseng Mayer is a perennial herb that has been used as a medicinal plant in Eastern Asia for thousands of years. The aim of this study was to enhance root biomass and ginsenoside content in cultured adventitious roots by colchicine mutagenesis. Adventitious P. ginseng roots were treated with colchicine at different concentrations (100, 200, and 300 mg·L−1) and for different durations (1, 2, and 3 days). Genetic variability of mutant lines was assessed using random amplification of polymorphic DNA (RAPD) analysis. Ginsenoside biosynthesis gene expression, ginsenoside content, enzyme activities, and performance in bioreactor culture were assessed in four mutant lines (100–1-2, 100–1-18, 300–1-16, and 300–2-8). The results showed that ginsenoside productivity was enhanced in all mutant lines, with mutant 100–1-18 exhibiting the most pronounced increase (4.8-fold higher than the control). Expression of some ginsenoside biosynthetic enzymes was elevated in mutant lines. Enzyme activities varied among lines, and lipid peroxidation activity correlated with root biomass. All four lines were suitable for bioreactor cultivation, with mutant 100–1-18 exhibiting the highest biomass after culture scale-up. The results indicated that colchicine mutagenesis of P. ginseng roots increased biomass and ginsenosides production. This technique, and the root lines produced in this study, may be used to increase industrial yields of P. ginseng biomass and ginsenosides.


1992 ◽  
Vol 6 (2) ◽  
pp. 252-261 ◽  
Author(s):  
William W. Donald

Several sequences of POST herbicides applied each year in fall alone, in spring alone, or both in fall and again in spring controlled Canada thistle stands in spring wheat by severely decreasing root biomass and the numbers of adventitious root buds to a depth of 50 cm over four years. These treatments included dicamba applied at 1.7 or 2.2 kg ae ha–1for the first two successive falls followed in wheat by either chlorsulfuron at 30 g ai ha–1plus nonionic surfactant, MCPA plus bromoxynil at 280 plus 280 g ha–1, or 2,4-D amine at 560 g ha–1applied annually for each of four consecutive years from the start. Chlorsulfuron at 30 g ha–1applied alone in spring for each of four years also reduced and prevented Canada thistle root growth as effectively as a sequence of fall-applied dicamba followed by spring-applied chlorsulfuron in spring wheat.


Author(s):  
L.E. Murr ◽  
J.S. Dunning ◽  
S. Shankar

Aluminum additions to conventional 18Cr-8Ni austenitic stainless steel compositions impart excellent resistance to high sulfur environments. However, problems are typically encountered with aluminum additions above about 1% due to embrittlement caused by aluminum in solid solution and the precipitation of NiAl. Consequently, little use has been made of aluminum alloy additions to stainless steels for use in sulfur or H2S environments in the chemical industry, energy conversion or generation, and mineral processing, for example.A research program at the Albany Research Center has concentrated on the development of a wrought alloy composition with as low a chromium content as possible, with the idea of developing a low-chromium substitute for 310 stainless steel (25Cr-20Ni) which is often used in high-sulfur environments. On the basis of workability and microstructural studies involving optical metallography on 100g button ingots soaked at 700°C and air-cooled, a low-alloy composition Fe-12Cr-5Ni-4Al (in wt %) was selected for scale up and property evaluation.


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