The prospect of economically producing useful biologics in plants has greatly increased with the advent of viral vectors. The ability of viral vectors to amplify transgene expression has seen them develop into robust transient platforms for the high-level, rapid production of recombinant proteins. To adapt these systems to stably transformed plants, new ways of deconstructing the virus machinery and linking its expression and replication to chemically controlled promoters have been developed. The more advanced of these stable, inducible hyper-expression vectors provide both activated and amplified heterologous transgene expression. Such systems could be deployed in broad acre crops and provide a pathway to fully exploit the advantages of pl...
In this study, we describe a novel protein production platform that provides both activation and amp...
Plant viruses can be engineered and utilized as transient tools for foreign gene overexpression stud...
Recent advances in genome engineering (GE) has made it possible to precisely alter DNA sequences in ...
Virus-based transgene expression systems have become particularly valuable for recombinant protein p...
Plant biotechnology relies heavily on the genetic manipulation of crops. Almost invariantly, the gen...
Molecular farming in plants can be achieved by stable or transient expression of a recombinant prote...
Abstract Background Plants are increasingly being examined as alternative recombinant protein expres...
Plant made biologics have elicited much attention over recent years for their potential in assisting...
There is a growing realization that a modern combination of molecular biology and agriculture will p...
Transient expression in plants is a valuable tool for many aspects of functional genomics and promot...
We constructed a novel autonomously replicating gene expression shuttle vector, with the aim of deve...
Over the last decade, plant virus-based vectors have been developed and successfully exploited for h...
Plus-strand RNA viruses such as Potato virus X (PVX) are often used as high-yielding expression vect...
Includes bibliographical references (p. 172-194).Plants viruses are increasingly being examined as a...
In this study, we describe a novel protein production platform that provides both activation and amp...
In this study, we describe a novel protein production platform that provides both activation and amp...
Plant viruses can be engineered and utilized as transient tools for foreign gene overexpression stud...
Recent advances in genome engineering (GE) has made it possible to precisely alter DNA sequences in ...
Virus-based transgene expression systems have become particularly valuable for recombinant protein p...
Plant biotechnology relies heavily on the genetic manipulation of crops. Almost invariantly, the gen...
Molecular farming in plants can be achieved by stable or transient expression of a recombinant prote...
Abstract Background Plants are increasingly being examined as alternative recombinant protein expres...
Plant made biologics have elicited much attention over recent years for their potential in assisting...
There is a growing realization that a modern combination of molecular biology and agriculture will p...
Transient expression in plants is a valuable tool for many aspects of functional genomics and promot...
We constructed a novel autonomously replicating gene expression shuttle vector, with the aim of deve...
Over the last decade, plant virus-based vectors have been developed and successfully exploited for h...
Plus-strand RNA viruses such as Potato virus X (PVX) are often used as high-yielding expression vect...
Includes bibliographical references (p. 172-194).Plants viruses are increasingly being examined as a...
In this study, we describe a novel protein production platform that provides both activation and amp...
In this study, we describe a novel protein production platform that provides both activation and amp...
Plant viruses can be engineered and utilized as transient tools for foreign gene overexpression stud...
Recent advances in genome engineering (GE) has made it possible to precisely alter DNA sequences in ...