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1.
Int J Mol Sci ; 24(2)2023 Jan 06.
Artículo en Inglés | MEDLINE | ID: mdl-36674672

RESUMEN

The commercial application of genetically modified plants has been seriously impeded by public concern surrounding the potential risks posed by such plants to the ecosystem and human health. Previously, we have developed a 'pollen- and seed-specific Gene Deletor' system that automatically excised all transgenes from the pollen and seeds of greenhouse-grown transgenic Nicotiana tabacum. In this study, we conducted seven field experiments over three consecutive years to evaluate the stability of transgene excision under field conditions. Our results showed that transgenes were stably excised from transgenic Nicotiana tabacum under field conditions with 100% efficiency. The stability of transgene excision was confirmed based on PCR, as well as the GUS staining patterns of various organs (roots, leaves, petiole, stem, flower, fruit, and seeds) from transgenic N. tabacum. In six transgenic lines (D4, D10, D31, D56, and D43), the transgenes were stably deleted in the T0 and T1 generations. Thus, the 'Gene Deletor' system is an efficient and reliable method to reduce pollen- and seed-mediated unintentional gene flow. This system might help to alleviate the food safety concerns associated with transgenic crops.


Asunto(s)
Ecosistema , Nicotiana , Humanos , Plantas Modificadas Genéticamente/genética , Nicotiana/genética , Transgenes , Polen/genética , Semillas/genética
2.
Int J Mol Sci ; 23(19)2022 Sep 21.
Artículo en Inglés | MEDLINE | ID: mdl-36232379

RESUMEN

The main problem of manufacturing with traditional biodegradable plastics is that it is more expensive than manufacturing with polymers derived from petroleum, and the application scope is currently limited due to poor comprehensive performance. In this study, a novel biodegradable poly(butylene adipic acid/terephthalate-co-glycolic acid) (PBATGA) copolyester with 25-60% glycolic acid units was successfully synthesized by esterification and polycondensation using cheap coal chemical byproduct methyl glycolate instead of expensive glycolic acid. The structure of the copolyester was characterized by ATR-FTIR, 1H NMR, DSC, and XRD; and its barrier property, water contact angle, heat resistance, and mechanical properties were tested. According to the experiment result, the PBATGA copolyesters showed improved oxygen (O2) and water vapor barrier character, and better hydrophilicity when compared with PBAT. The crystallization peaks of PBATGAs were elevated from 64 °C to 77 °C when the content of the GA unit was 25 mol %, meanwhile, the elongation at the break of PBATGA25 was more than 1300%. These results indicate that PBATGA copolyesters have good potentiality in high O2 and water vapor barrier and degradable packaging material.


Asunto(s)
Plásticos Biodegradables , Petróleo , Adipatos , Alquenos , Carbón Mineral , Glicolatos , Oxígeno , Ácidos Ftálicos , Poliésteres/química , Polímeros/química , Vapor
3.
Food Chem ; 315: 126236, 2020 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-32000079

RESUMEN

Mulberry leaf is a vegetable used in daily diet. It can bring delicious taste and multiple health benefits. However, the chemicals responsible for these health benefits remain unveiled. In this work, two novel prenylated flavonoids were isolated from mulberry leaf. Their structures were identified and named as morachalcone D and morachalcone E. The protective effects of these two compounds were investigated, against endogenous oxidative damage (oxytosis/ferroptosis) induced by glutamate and erastin in HT22 cells. The results revealed that morachalcone D was much more potent in preventing from glutamate- and erastin-induced cell death than morachalcone E. The neuroprotective effect of morachalcone D was related to the prevention of ROS production, glutathione depletion, and iron accumulation. Morachalcone D upregulated the expression of genes involved in antioxidant defense, including GPx4, CAT, SOD2, Nrf2, HMOX1 and SLC7A11. These findings indicated that morachalcone D was responsible for the health benefits of mulberry leaf, and could be a potent neuroprotective agent for use in dietary supplements and functional foods.


Asunto(s)
Flavonoides/farmacología , Morus/química , Fármacos Neuroprotectores/farmacología , Hojas de la Planta/química , Animales , Muerte Celular/efectos de los fármacos , Línea Celular , Ferroptosis/efectos de los fármacos , Flavonoides/química , Flavonoides/aislamiento & purificación , Regulación de la Expresión Génica/efectos de los fármacos , Ácido Glutámico/toxicidad , Hipocampo/citología , Hipocampo/metabolismo , Hierro/metabolismo , Ratones , Estructura Molecular , Fármacos Neuroprotectores/química , Piperazinas/toxicidad , Especies Reactivas de Oxígeno/metabolismo
4.
Bioresour Technol ; 128: 8-13, 2013 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-23196215

RESUMEN

In-situ alkaline transesterification of rapeseed oil with methanol for the production of biodiesel and nontoxic rapeseed meal was carried out. Water removal from milled rapeseed by methanol washing was more effective than vacuum drying. The conversion rate of rapeseed oil into FAME was 92%, FAME mass was 8.81 g, glucosinolates content in remaining rapeseed meal was 0.12% by methanol washing, while by vacuum drying the values were 46%, 4.44 g, 0.58%, respectively. In the presence of 0.10 mol/L NaOH in methanol, with methanol/oil molar ratio of 180:1 and a 3h reaction at 40 °C, a conversion rate of 98% was achieved, and the glucosinolates content was reduce to 0.07%, a value which below the GB/T 22514-2008 standard in China. Thus the rapeseed meal can be used as a source of protein in animal feed. The FAME prepared through in-situ alkaline transesterification met the ASTM specifications for biodiesel.


Asunto(s)
Álcalis/química , Biocombustibles/análisis , Brassica rapa/química , Metanol/química , Extractos Vegetales/química , Aceites de Plantas/química , Aceites de Plantas/aislamiento & purificación , Brassica rapa/toxicidad , Esterificación , Ácidos Grasos Monoinsaturados , Aceite de Brassica napus , Agua/química
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