Biotech benefits

rhizosphere

The database contains 23 references relating to the Safety and Benefits of Biotechnology and "rhizosphere".

References relating to "rhizosphere":

  1. Comparison of bacterial diversity, root exudates and soil enzymatic activities in the rhizosphere of AVP1-transgenic and nontransgenic wheat (Triticum aestivum L.)
    (2022) Arshad M, Naqqash T, Tahir M, Leveau JH, Zaheer A, Tahira SA, et al.
  2. Root colonization and rhizospheric community structure of Arbuscular Mycorrhizal Fungi in BADH transgenic maize BZ-136 and its recipient under salt stress and neutral soil
    (2021) Li R, Zeng X, Bai X, Qu J, Wang Z
  3. Assessment of the effect on soil microbial communities of genetically modified soybean and a hybrid from crossing with wild soybean
    (2021) Oh, SD, Jang, YJ, Park SY, et al.
  4. Impact of transgenic sugarcane overexpressing SoSPS1 gene on bacterial diversity, enzyme activity and minerals content in soil rhizosphere
    (2020) Wulandari FE, Suherman, Handoyo T, Kim K-M, Sugiharto B
  5. Assembly and shifts of the bacterial rhizobiome of field grown transgenic maize line carrying mcry1Ab and mcry2Ab genes at different developmental stages
    (2020) Fazal A, Wen Z-L, Lu Y-T, Hua X-M, Yang M-K, Yin T-M, Han H-W, Lin H-Y, Wang X-M, Liu G-H, Qi J-L, Yang Y-H
  6. Effect of Cry1Ie Bt Maize on Carbon Source Metabolism of Rhizosphere Microorganisms
    (2019) Liang J, Xin L, Luan Y, Song X, Zhang Z
  7. The response of dominant and rare taxa for fungal diversity within different root environments to the cultivation of Bt and conventional cotton varieties
    (2018) Li P, Xue Y, Shi J, Tang X, Ming F
  8. Effects of Transgenic Maize with cry1Ab and Epsps Genes C0030.3.5 on the Abundance and Community Structure of Soil Nitrogen-fixing Bacteria
    (2018) Wang R, Zhu K, LI G, Liu HF, Wang J, Xiu WM, Zhao JN, Yang DL
  9. Effects of Transgenic Maize with cry1Ab and Epsps Genes C0030.3.5 on the Abundance and Community Structure of Soil Nitrogen-fixing Bacteria
    (2018) Wang R, Zhu K, Liu HF, Wang J, Xiu WM, Zhao JN, Yang DL
  10. Biosafety Assessment of Genetically Engineered Wheat (Triticum aestivum L.) under Greenhouse conditions
    (2018) Khan A, Ali GM, Ali S, Zia MA, Jan SA, Robab U-E
  11. Assessment of the Influence of Transgenic Cotton on Beneficial Soil Rhizosphere Microbes
    (2017) Mathivanan S, Raghupathi S
  12. Effects of soil salinity on rhizosphere soil microbes in transgenic Bt cotton fields
    (2016) Luo J-Y, Zhang S, Zhu X-Z, Lu L-M, Wang C-Y, LI C-H, Cui J-J, Zhou Z-G
  13. Impact of transgenic cotton expressing cry1Ac and cry2Ab genes on soil rhizosphere bacterial and fungal populations in soils of central Kenya
    (2016) Swilla J, Waturu CN, Rubindamayugi ST
  14. Effects of cultivation of OsrHSA transgenic rice on functional diversity of microbial communities in the soil rhizosphere
    (2015) , , , , , , , ,
  15. Impact of β-carotene transgenic rice with four synthetic genes on rhizosphere enzyme activities and bacterial communities at different growth stages
    (2014) , , , , , , , ,
  16. Comparison of the Rhizosphere Bacterial Communities of Zigongdongdou Soybean and a High-Methionine Transgenic Line of This Cultivar
    (2014) , , , , , , , ,
  17. Impact of Transgenic Wheat with wheat yellow mosaic virus Resistance on Microbial Community Diversity and Enzyme Activity in Rhizosphere Soil.
    (2014) , , , , , , ,
  18. Impact of coleopteran-active Bt corn on non-target nematode communities in soil and decomposing corn roots
    (2014) , ,
  19. Soil microbial properties in Bt (Bacillus thuringiensis) corn cropping systems
    (2013) ,
  20. Temporal dynamics of microbial communities in the rhizosphere of two genetically modified (GM) maize hybrids in tropical agrosystems
    (2013) , , , , ,