Maize transformation technology development for commercial event generation

Q Que, S Elumalai, X Li, H Zhong, S Nalapalli… - Frontiers in plant …, 2014 - frontiersin.org
Maize is an important food and feed crop in many countries. It is also one of the most
important target crops for the application of biotechnology. Currently, there are more biotech …

Molecular improvement of tropical maize for drought stress tolerance in sub-Saharan Africa

S Anami, M De Block, J Machuka… - Critical Reviews in …, 2009 - Taylor & Francis
The C4 grass Zea mays (maize or corn) is the third most important food crop globally after
wheat and rice in terms of production and the second most widespread genetically modified …

Genetic variations in ZmSAUR15 contribute to the formation of immature embryo‐derived embryonic calluses in maize

Y Wang, S He, Y Long, X Zhang, X Zhang… - The Plant …, 2022 - Wiley Online Library
The ability of immature maize (Zea mays) embryos to form embryonic calluses (ECs) is
highly genotype dependent, which limits transgenic breeding development in maize. Here …

Dicamba growth regulator promotes genotype independent somatic embryogenesis from immature zygotic embryos of tropical maize inbred lines

J Akoyi, AJ Mgutu, J Machuka… - JOURNAL OF LIFE …, 2013 - biblio.ugent.be
Maize is one of the most important cereal crops in Sub-Saharan Africa and an important
source of energy for humans. However, the difference in the dedifferentiation frequency of …

Establishment of a maize callus regeneration system from haploid shoot tips

Y Long, Y Yang, F Ge, G Pan, Y Shen - Plant Cell, Tissue and Organ …, 2020 - Springer
For maize transgenic breeding, a major bottleneck is time need to produce homozygous
transgenic plants by selfing of one or more additional generations. This study established an …

[PDF][PDF] Efficient plant regeneration using mature and immature embryos of maize (Zea mays L.)

S Morshed, AB Siddique… - International Journal of …, 2014 - absnetbd.wordpress.com
Under this study an efficient protocol on callus induction (CI) and plant regeneration (PR)
was developed using immature (IE) and mature embryos (ME) of four maize varieties viz …

In vitro regeneration of selected commercial Tanzanian open pollinated maize varieties

MS Seth, LT Bedada, EE Mneney, RO Oduor… - African Journal of …, 2012 - ajol.info
Four Tanzanian open pollinated maize varieties namely; Kito, Situka M-1, Staha and TMV-1
were regenerated in vitro using immature zygotic embryos as ex-plants. Callus induction …

Production of embryogenic callus and plant regeneration from elite guizhou waxy maize inbred lines

D ZHONG, Y ZHU, D ZHAO - Agricultural Sciences in China, 2011 - Elsevier
Immature embryos from three elite Guizhou waxy maize inbred lines (W21019, B7, and
QCL5036) were evaluated for their ability of forming callus and regeneration into plants …

[HTML][HTML] Callus induction and plant regeneration from immature zygotic embryos of various maize genotypes (Zea mays L.)

JK Hong, KJ Park, GS Lee, DY Kim, JK Kim… - Journal of Plant …, 2017 - kspbtjpb.org
We investigated the callus induction and plant regeneration ability of 16 maize genotypes,
including the Korean inbred lines, using 9 to 15 day-old immature zygotic embryos from …

[PDF][PDF] Interactive effect of ga3 and polyamines on in vitro somatic embryogenesis from immature embryos in maize (zea mays I.).

R Joshi, A Shukla, P Kumar - Maydica, 2010 - academia.edu
In vitro somatic embryogenesis was studied in composite maize cultivar, Gaurav by culturing
immature embryos. To obtain efficient callus, immature embryos were inoculated in MS …