Investigating network behavior from host-pathogen interactions is challenging. Here, we present the deep-learning-based protocol to construct an immune-related gene network and list the genes involved in the defense response of host to specific biotic stress. The protocol includes the steps to pre-process the interaction pairs and expression profile of plants treated with pathogen/control, feed as input for DLNet algorithm to rank genes based on their contribution to data classification. The top-ranked genes are subjected to module and enrichment analysis
Following a pathogen attack, plants defend themselves using multiple defense mechanisms to prevent i...
Abstract Background Plant pathogens cause billions of dollars of crop loss every year and are a majo...
Deciphering the networks that underpin complex biological processes using experimental data remains ...
Summary: Investigating network behavior from host-pathogen interactions is challenging. Here, we pre...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
<div><p>Intricate signal networks and transcriptional regulators translate the recognition of pathog...
Rice, apart from abiotic stress, is prone to attack from multiple pathogens. Predominantly, the two ...
AbstractNetwork analysis has been a recent focus in biological sciences due to its ability to synthe...
Network analysis has been a recent focus in biological sciences due to its ability to synthesize glo...
Machine learning (ML) is an intelligent data mining technique that builds a prediction model based o...
Transcriptional reprogramming plays a significant role in governing plant responses to pathogens. Th...
Transcriptional reprogramming plays a significant role in governing plant responses to pathogens. Th...
Even in the age of big data in Biology, studying the connections between the biological processes an...
Rice is a staple food for one-half the world's population and a model for other monocotyledonous spe...
Intricate signal networks and transcriptional regulators translate the recognition of patho-gens int...
Following a pathogen attack, plants defend themselves using multiple defense mechanisms to prevent i...
Abstract Background Plant pathogens cause billions of dollars of crop loss every year and are a majo...
Deciphering the networks that underpin complex biological processes using experimental data remains ...
Summary: Investigating network behavior from host-pathogen interactions is challenging. Here, we pre...
Intricate signal networks and transcriptional regulators translate the recognition of pathogens into...
<div><p>Intricate signal networks and transcriptional regulators translate the recognition of pathog...
Rice, apart from abiotic stress, is prone to attack from multiple pathogens. Predominantly, the two ...
AbstractNetwork analysis has been a recent focus in biological sciences due to its ability to synthe...
Network analysis has been a recent focus in biological sciences due to its ability to synthesize glo...
Machine learning (ML) is an intelligent data mining technique that builds a prediction model based o...
Transcriptional reprogramming plays a significant role in governing plant responses to pathogens. Th...
Transcriptional reprogramming plays a significant role in governing plant responses to pathogens. Th...
Even in the age of big data in Biology, studying the connections between the biological processes an...
Rice is a staple food for one-half the world's population and a model for other monocotyledonous spe...
Intricate signal networks and transcriptional regulators translate the recognition of patho-gens int...
Following a pathogen attack, plants defend themselves using multiple defense mechanisms to prevent i...
Abstract Background Plant pathogens cause billions of dollars of crop loss every year and are a majo...
Deciphering the networks that underpin complex biological processes using experimental data remains ...