Ionomics and lipidomics for evaluating the transgenic (cp4-EPSPS gene) and non-transgenic soybean seed generations

2021 ◽  
pp. 106130
Author(s):  
Luana Ferreira da Costa ◽  
Claúdio Francisco Tormena ◽  
Marco Aurélio Zezzi Arruda
2020 ◽  
Vol 202 ◽  
pp. 110918
Author(s):  
Bruna K. de Campos ◽  
Rodrigo M. Galazzi ◽  
Bruna M. dos Santos ◽  
Tiago S. Balbuena ◽  
Fábio N. dos Santos ◽  
...  

Author(s):  
Åshild Kristin Andreassen ◽  
Anne Marie Bakke ◽  
Knut Kelkås Dahl ◽  
Knut Thomas Dalen ◽  
Merethe Aasmo Finne ◽  
...  

Soybean MON 89788 expresses the cp4 epsps gene from the plant pathogenic bacterium Agrobacterium tumefaciens (Rhizobium radiobacter) sp. strain CP4. The encoded enzyme 5enolpyruvylshikimate-3-phosphate synthase (CP4 EPSPS) protein confers tolerance to the active herbicidal substance glyphosate. Updated bioinformatics analyses of the inserted DNA and flanking sequences in soybean MON 89788 have not indicated a potential production of putative harmful proteins or polypeptides caused by the genetic modification. Genomic stability of the functional insert and consistent expression of the cp4 epsps gene, have been shown over several generations of soybean MON 89788. With the exception of the intended changes caused by the trans-genetically introduced trait, data from several field trials performed in USA and Argentina show that soybean MON 89788 is compositionally, morphologically and agronomically equivalent to its conventional counterpart and other commercial soybean varieties. A sub-chronic feeding study with rats, as well as a nutritional assessment trial with broilers has not revealed adverse effects of soybean MON 89788. These studies indicate that soybean MON 89788 is nutritionally equivalent to, and as safe as conventional soybean varieties. The CP4 EPSPS protein produced in soybean MON 89788 does not show sequence resemblance to known toxins or IgE-dependent allergens, nor has it been reported to cause IgE-mediated allergic reactions. Soybean is not cultivated in Norway, and there are no cross-compatible wild or weedy relatives of soybean in Europe.    Based on current knowledge, the VKM GMO Panel concludes that with the intended usage, there are no discernible safety concerns associated with soybean MON 89788 regarding human or animal health or to the environment in Norway.


2019 ◽  
Vol 25 (3) ◽  
pp. 779-786
Author(s):  
Muhammad Imran ◽  
Andre Luiz Barboza ◽  
Shaheen Asad ◽  
Zafar M. Khalid ◽  
Zahid Mukhtar

2017 ◽  
Author(s):  
Solmaz Khosravi ◽  
Masoud Tohidfar ◽  
Parisa Koobaz

AbstractAmong the genetically modified (GM) crops that are being approved for commercialization, herbicide resistant crops, especially those harboring cp4-epsps, have a considerable contribution. Gene-specific methods can be used to screen the presence of GMOs. To establish an effective qualitative and quantitative screening method, a set of primers were designed considering the cp4-epsps sequence. The specificity, the limit of detection, the efficiency, and the ability to quantify the GMO content were tested in GM cotton, soybean, and canola events. The results demonstrated that the primers can specifically detect cp4-epsps GM crops. The limit of detection was found to be 0.4 ng /μl DNA per PCR reaction with the ability to detect 1-16 copies of the haploid genome of each GM event. The efficiency of this screening method (which was 94-110 % with an R2 higher than 0.96) indicated that these new primers can be applied to the screening of GM samples that contain the cp4-epsps gene. Also, the gene-specific real-time PCR screening method could be successfully developed for qualification of different types of GM cotton, soybean and canola events with the construction of a serial dilution ranging from 10 % to 1 %.


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