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| DOI | 10.1093/PLPHYS/KIAA012 | ||||
| Año | 2021 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Deciphering gene regulatory networks (GRNs) is both a promise and challenge of systems biology. The promise lies in identifying key transcription factors (TFs) that enable an organism to react to changes in its environment. The challenge lies in validating GRNs that involve hundreds of TFs with hundreds of thousands of interactions with their genome-wide targets experimentally determined by high-throughput sequencing. To address this challenge, we developed ConnecTF, a species-independent, web-based platform that integrates genome-wide studies of TF-target binding, TF-target regulation, and other TF-centric omic datasets and uses these to build and refine validated or inferred GRNs. We demonstrate the functionality of ConnecTF by showing how integration within and across TF-target datasets uncovers biological insights. Case study 1 uses integration of TF-target gene regulation and binding datasets to uncover TF mode-of-action and identify potential TF partners for 14 TFs in abscisic acid signaling. Case study 2 demonstrates how genome-wide TF-target data and automated functions in ConnecTF are used in precision/recall analysis and pruning of an inferred GRN for nitrogen signaling. Case study 3 uses ConnecTF to chart a network path from NLP7, a master TF in nitrogen signaling, to direct secondary TF2s and to its indirect targets in a Network Walking approach. The public version of ConnecTF (https://ConnecTF.org) contains 3,738,278 TF-target interactions for 423 TFs in Arabidopsis, 839,210 TF-target interactions for 139 TFs in maize (Zea mays), and 293,094 TF-target interactions for 26 TFs in rice (Oryza sativa). The database and tools in ConnecTF will advance the exploration of GRNs in plant systems biology applications for model and crop species.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Brooks, Matthew D. | Hombre |
NYU - Estados Unidos
USDA ARS - Estados Unidos New York University - Estados Unidos USDA ARS Global Change and Photosynthesis Research Unit - Estados Unidos |
| 2 | Juang, Che-Lun | - |
NYU - Estados Unidos
New York University - Estados Unidos |
| 3 | Katari, Manpreet Singh | - |
NYU - Estados Unidos
New York University - Estados Unidos |
| 4 | ALVAREZ-HERRERA, JOSE MIGUEL | Hombre |
NYU - Estados Unidos
Universidad Mayor - Chile Núcleo Milenio en Biología Sintética y Biología de Sistemas Vegetales - Chile New York University - Estados Unidos Instituto Milenio de Biología Integrativa - Chile Millennium Institute for Integrative Biology (iBio) - Chile |
| 5 | Pasquino, Angelo V. | Hombre |
NYU - Estados Unidos
New York University - Estados Unidos |
| 6 | Shih, Hung-Jui | - |
NYU - Estados Unidos
New York University - Estados Unidos |
| 7 | Huang, Ji | - |
NYU - Estados Unidos
New York University - Estados Unidos |
| 8 | Shanks, Carly | Mujer |
NYU - Estados Unidos
New York University - Estados Unidos |
| 9 | Cirrone, Jacopo | Hombre |
NYU - Estados Unidos
Courant Institute of Mathematical Sciences - Estados Unidos New York University - Estados Unidos |
| 10 | Coruzzi, Gloria M. | Mujer |
NYU - Estados Unidos
New York University - Estados Unidos |
| Fuente |
|---|
| National Science Foundation |
| NIH |
| National Institute of General Medical Sciences |
| NIH NIGMS Fellowship |
| NSF-PGRP |