{"doi":"10.1007/s00299-018-2270-0","title":"Advanced genetic tools enable synthetic biology in the oleaginous microalgae Nannochloropsis sp.","abstract":null,"journal":"Plant Cell Reports","year":2018,"id":645096,"datarank":0.7023196840686331,"base_score":4.68213122712422,"endowment":4.68213122712422,"self_citation_contribution":0.7023196840686331,"citation_network_contribution":0.0,"self_endowment_contribution":0.7023196840686331,"citer_contribution":0.0,"corpus_percentile":null,"corpus_rank":null,"citation_count":107,"citer_count":0,"citers_with_citation_signal":0,"citers_with_endowment":0,"datacite_reuse_total":4,"is_dataset":false,"is_dataset_confidence":null,"is_data_producer":false,"deposit_databanks":null,"is_oa":false,"file_count":0,"downloads":0,"has_version_chain":false,"published_date":null,"fair_score":null,"fair_percentile":null,"algorithm_id":"datarank_citation_only_1hop_v6","ranking_scope":"data_only","authors":[{"id":1679560,"name":"Eva M. 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Genome sequences are available for several species, and a number of transcriptomic datasets have been produced, making this genus a facile model for comparative genomics. There is a growing interest in Nannochloropsis species as models for the study of microalga lipid metabolism and as a chassis for synthetic biology. Recently, techniques for gene stacking, and targeted gene disruption and repression in the Nannochloropsis genus have been developed. These tools enable gene-specific, mechanistic studies and have already allowed the engineering of improved Nannochloropsis strains with superior growth, or greater bioproduction.","is_dataset_classified":null,"base_score":4.68213122712422,"endowment":4.68213122712422,"datacite_reuse_total":4,"file_count":0,"downloads":0,"views":0,"has_version_chain":false,"is_dataset":false,"is_oa":false,"pmid":"29511798","pmcid":null,"openalex_id":"https://openalex.org/W2791247674","authors":[],"funders":[{"funder_name":"National Science Foundation","grant_id":"IOS-1354721","title":null},{"funder_name":"U.S. Department of Energy","grant_id":"DE-FG02-91ER20021","title":null},{"funder_name":"National Science Foundation","grant_id":"1354721","title":"Characterization of the circadian clock in Nannochloropsis oceanica"}],"total_grants":3,"fwci":3.0955,"citation_percentile":0.92409642,"influential_citations":0,"citation_trend":[{"year":2018,"count":3},{"year":2019,"count":17},{"year":2020,"count":14},{"year":2021,"count":20},{"year":2022,"count":16},{"year":2023,"count":16},{"year":2024,"count":7},{"year":2025,"count":10},{"year":2026,"count":4}],"oa_status":"green","license":"Springer TDM","oa_locations":[{"url":"https://www.osti.gov/biblio/1608420","host_type":"repository"},{"url":"https://www.osti.gov/biblio/1608420","host_type":"repository"},{"url":"http://link.springer.com/article/10.1007/s00299-018-2270-0/fulltext.html","host_type":"publisher"},{"url":"http://link.springer.com/content/pdf/10.1007/s00299-018-2270-0.pdf","host_type":"publisher"},{"url":"https://doi.org/10.1007/s00299-018-2270-0","host_type":"journal"},{"url":"https://pubmed.ncbi.nlm.nih.gov/29511798","host_type":"repository"},{"url":"https://dx.doi.org/10.1007/s00299-018-2270-0","host_type":""}],"fields_of_study":["Algal biology and biofuel production","Microbial Metabolic Engineering and Bioproduction","Photosynthetic Processes and Mechanisms","0301 basic medicine","0303 health sciences","03 medical and health sciences"],"mesh_terms":["Carbon","Drug Resistance, Microbial","Gene Expression Regulation","Light","Photosynthesis","Protein Engineering","Lipid Metabolism","Stramenopiles","Microalgae","Synthetic Biology","Transcriptome"],"keywords":["Nannochloropsis","Biology","Polyunsaturated fatty acid","Synthetic biology","Gene","Botany","Fatty acid","Biochemistry","Computational biology","Algae","Light","Drug Resistance, Microbial","Lipid Metabolism","Protein Engineering","Carbon","Gene Expression Regulation","Microalgae","Photosynthesis","Transcriptome","Stramenopiles"],"sdg_mappings":[{"sdg_number":2,"sdg_label":"2. 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