Preparation of expression vectors using conventional cloning strategies is laborious and not suitable for the design of metabolic pathways or enzyme cascades, which usually requires the preparation of a vector library to identify productive clones. Recently, Modular Cloning as a novel cloning technique in synthetic biology has been developed. Modular Cloning relies on Golden Gate assembly and supports preparation of individual expression vectors in one-step and one-pot reactions, thus allowing rapid generation of vector libraries. A number of Modular Cloning toolkits for specific applications has been established, providing a collection of distinct genetic elements such as promoters, ribosome binding sites and tags, that can be combined ind...
Advances in molecular and synthetic biology call for efficient assembly of multi-modular DNA constru...
Plant synthetic biology is a rapidly evolving field with new tools constantly emerging to drive inno...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
The continual demand for specialized molecular cloning techniques that suit a broad range of applica...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
Synthetic gene circuits emerge from iterative design-build-test cycles. Most commonly, the time-limi...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
<div><p>Advances in molecular and synthetic biology call for efficient assembly of multi-modular DNA...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Standardisation of genetic parts has become a topic of increasing interest over the last decades. Th...
Traditional cloning methods have limitations on the number of DNA fragments that can be simultaneous...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Advances in molecular and synthetic biology call for efficient assembly of multi-modular DNA constru...
Plant synthetic biology is a rapidly evolving field with new tools constantly emerging to drive inno...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
The continual demand for specialized molecular cloning techniques that suit a broad range of applica...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
Synthetic gene circuits emerge from iterative design-build-test cycles. Most commonly, the time-limi...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
<div><p>Advances in molecular and synthetic biology call for efficient assembly of multi-modular DNA...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Standardisation of genetic parts has become a topic of increasing interest over the last decades. Th...
Traditional cloning methods have limitations on the number of DNA fragments that can be simultaneous...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Advances in molecular and synthetic biology call for efficient assembly of multi-modular DNA constru...
Plant synthetic biology is a rapidly evolving field with new tools constantly emerging to drive inno...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...