Genetic engineering of complex metabolic pathways and multiple traits often requires the introduction of multiple genes. The construction of plasmids carrying multiple DNA fragments plays a vital role in these processes. In this study, the Gibson assembly and Gateway cloning combined Pyramiding Stacking of Multigenes (PSM) system was developed to assemble multiple transgenes into a single T-DNA. Combining the advantages of Gibson assembly and Gateway cloning, the PSM system uses an inverted pyramid stacking route and allows fast, flexible and efficient stacking of multiple genes into a binary vector. The PSM system contains two modular designed entry vectors (each containing two different attL sites and two selectable markers) and one Gatew...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Synthetic Biology requires efficient and versatile DNA assembly systems to facilitate the building o...
Genetic engineering of complex metabolic pathways and multiple traits often requires the introductio...
Transgenic technology can transfer favorable traits regardless of reproductive isolation and is an i...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
The MultiSite Gateway cloning system, based on site-specific recombination, enables the assembly of ...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
The genome information is offering opportunities to manipulate genes, polygenic characters and multi...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
Synthetic gene circuits emerge from iterative design-build-test cycles. Most commonly, the time-limi...
One of the major technical hurdles impeding the advance of plant genetic engineering and biotechnolo...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Synthetic Biology requires efficient and versatile DNA assembly systems to facilitate the building o...
Genetic engineering of complex metabolic pathways and multiple traits often requires the introductio...
Transgenic technology can transfer favorable traits regardless of reproductive isolation and is an i...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
The MultiSite Gateway cloning system, based on site-specific recombination, enables the assembly of ...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
The genome information is offering opportunities to manipulate genes, polygenic characters and multi...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
Synthetic gene circuits emerge from iterative design-build-test cycles. Most commonly, the time-limi...
One of the major technical hurdles impeding the advance of plant genetic engineering and biotechnolo...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Synthetic Biology requires efficient and versatile DNA assembly systems to facilitate the building o...