<HashMap><database>biostudies-literature</database><scores/><additional><submitter>Jiang S</submitter><funding>Chinese Agriculture Research System of MOF and MARA of China</funding><pagination>15778</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC9778975</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>23(24)</volume><pubmed_abstract>Nuclear factor Y (NF-Y) is a heterotrimeric transcription factor that binds to the CCAAT &lt;i>cis&lt;/i>-element in the promoters of target genes and plays critical roles in plant growth, development, and stress responses. In the present study, we aimed to re-characterize the &lt;i>ClNF-Y&lt;/i> family in watermelon, examine the assembly of ClNF-Y complexes, and explore their possible involvement in disease resistance. A total of 25 &lt;i>ClNF-Y&lt;/i> genes (7 &lt;i>ClNF-YAs&lt;/i>, 10 &lt;i>ClNF-YBs&lt;/i>, and 8 &lt;i>ClNF-YCs&lt;/i>) were identified in the watermelon genome. The &lt;i>ClNF-Y&lt;/i> family was comprehensively characterized in terms of gene and protein structures, phylogenetic relationships, and evolution events. Different types of &lt;i>cis&lt;/i>-elements responsible for plant growth and development, phytohormones, and/or stress responses were identified in the promoters of the &lt;i>ClNF-Y&lt;/i> genes. ClNF-YAs and ClNF-YCs were mainly localized in the nucleus, while most of the ClNF-YBs were localized in the cytoplasm of cells. ClNF-YB5, -YB6, -YB7, -YB8, -YB9, and -YB10 interacted with ClNF-YC2, -YC3, -YC4, -YC5, -YC6, -YC7, and -YC8, while ClNF-YB1 and -YB3 interacted with ClNF-YC1. A total of 37 putative ClNF-Y complexes were identified, e.g., ClNF-YA1, -YA2, -YA3, and -YA7 assembled into 13, 8, 8, and 8 ClNF-Y complexes with different ClNF-YB/-YC heterodimers. Most of the &lt;i>ClNF-Y&lt;/i> genes responded with distinct expression patterns to defense hormones such as salicylic acid, methyl jasmonate, abscisic acid, and ethylene precursor 1-aminocyclopropane-1-carboxylate, and to infection by the vascular infecting fungus &lt;i>Fusarium oxysporum&lt;/i> f. sp. &lt;i>niveum&lt;/i>. Overexpression of &lt;i>ClNF-YB1&lt;/i>, &lt;i>-YB8&lt;/i>, &lt;i>-YB9&lt;/i>, &lt;i>ClNF-YC2&lt;/i>, and &lt;i>-YC7&lt;/i> in transgenic Arabidopsis resulted in an earlier flowering phenotype. Overexpression of &lt;i>ClNF-YB8&lt;/i> in Arabidopsis led to enhanced resistance while overexpression of &lt;i>ClNF-YA2&lt;/i> and &lt;i>-YC2&lt;/i> resulted in decreased resistance against &lt;i>Botrytis cinerea&lt;/i>. Similarly, overexpression of &lt;i>ClNF-YA3&lt;/i>, &lt;i>-YB1&lt;/i>, and &lt;i>-YC4&lt;/i> strengthened resistance while overexpression of &lt;i>ClNF-YA2&lt;/i> and &lt;i>-YB8&lt;/i> attenuated resistance against &lt;i>Pseudomonas syringae&lt;/i> pv. &lt;i>tomato&lt;/i> DC3000. The re-characterization of the &lt;i>ClNF-Y&lt;/i> family provides a basis from which to investigate the biological functions of &lt;i>ClNF-Y&lt;/i> genes in respect of growth, development, and stress response in watermelon, and the identification of the functions of some &lt;i>ClNF-Y&lt;/i> genes in disease resistance enables further exploration of the molecular mechanism of &lt;i>ClNF-Ys&lt;/i> in the regulation of watermelon immunity against diverse pathogens.</pubmed_abstract><journal>International journal of molecular sciences</journal><pubmed_title>The NF-Y Transcription Factor Family in Watermelon: Re-Characterization, Assembly of ClNF-Y Complexes, Hormone- and Pathogen-Inducible Expression and Putative Functions in Disease Resistance.</pubmed_title><pmcid>PMC9778975</pmcid><funding_grant_id>CARS-25</funding_grant_id><pubmed_authors>Wen Y</pubmed_authors><pubmed_authors>Li D</pubmed_authors><pubmed_authors>Liang J</pubmed_authors><pubmed_authors>Jiang S</pubmed_authors><pubmed_authors>Song F</pubmed_authors><pubmed_authors>Wang H</pubmed_authors></additional><is_claimable>false</is_claimable><name>The NF-Y Transcription Factor Family in Watermelon: Re-Characterization, Assembly of ClNF-Y Complexes, Hormone- and Pathogen-Inducible Expression and Putative Functions in Disease Resistance.</name><description>Nuclear factor Y (NF-Y) is a heterotrimeric transcription factor that binds to the CCAAT &lt;i>cis&lt;/i>-element in the promoters of target genes and plays critical roles in plant growth, development, and stress responses. In the present study, we aimed to re-characterize the &lt;i>ClNF-Y&lt;/i> family in watermelon, examine the assembly of ClNF-Y complexes, and explore their possible involvement in disease resistance. A total of 25 &lt;i>ClNF-Y&lt;/i> genes (7 &lt;i>ClNF-YAs&lt;/i>, 10 &lt;i>ClNF-YBs&lt;/i>, and 8 &lt;i>ClNF-YCs&lt;/i>) were identified in the watermelon genome. The &lt;i>ClNF-Y&lt;/i> family was comprehensively characterized in terms of gene and protein structures, phylogenetic relationships, and evolution events. Different types of &lt;i>cis&lt;/i>-elements responsible for plant growth and development, phytohormones, and/or stress responses were identified in the promoters of the &lt;i>ClNF-Y&lt;/i> genes. ClNF-YAs and ClNF-YCs were mainly localized in the nucleus, while most of the ClNF-YBs were localized in the cytoplasm of cells. ClNF-YB5, -YB6, -YB7, -YB8, -YB9, and -YB10 interacted with ClNF-YC2, -YC3, -YC4, -YC5, -YC6, -YC7, and -YC8, while ClNF-YB1 and -YB3 interacted with ClNF-YC1. A total of 37 putative ClNF-Y complexes were identified, e.g., ClNF-YA1, -YA2, -YA3, and -YA7 assembled into 13, 8, 8, and 8 ClNF-Y complexes with different ClNF-YB/-YC heterodimers. Most of the &lt;i>ClNF-Y&lt;/i> genes responded with distinct expression patterns to defense hormones such as salicylic acid, methyl jasmonate, abscisic acid, and ethylene precursor 1-aminocyclopropane-1-carboxylate, and to infection by the vascular infecting fungus &lt;i>Fusarium oxysporum&lt;/i> f. sp. &lt;i>niveum&lt;/i>. Overexpression of &lt;i>ClNF-YB1&lt;/i>, &lt;i>-YB8&lt;/i>, &lt;i>-YB9&lt;/i>, &lt;i>ClNF-YC2&lt;/i>, and &lt;i>-YC7&lt;/i> in transgenic Arabidopsis resulted in an earlier flowering phenotype. Overexpression of &lt;i>ClNF-YB8&lt;/i> in Arabidopsis led to enhanced resistance while overexpression of &lt;i>ClNF-YA2&lt;/i> and &lt;i>-YC2&lt;/i> resulted in decreased resistance against &lt;i>Botrytis cinerea&lt;/i>. Similarly, overexpression of &lt;i>ClNF-YA3&lt;/i>, &lt;i>-YB1&lt;/i>, and &lt;i>-YC4&lt;/i> strengthened resistance while overexpression of &lt;i>ClNF-YA2&lt;/i> and &lt;i>-YB8&lt;/i> attenuated resistance against &lt;i>Pseudomonas syringae&lt;/i> pv. &lt;i>tomato&lt;/i> DC3000. The re-characterization of the &lt;i>ClNF-Y&lt;/i> family provides a basis from which to investigate the biological functions of &lt;i>ClNF-Y&lt;/i> genes in respect of growth, development, and stress response in watermelon, and the identification of the functions of some &lt;i>ClNF-Y&lt;/i> genes in disease resistance enables further exploration of the molecular mechanism of &lt;i>ClNF-Ys&lt;/i> in the regulation of watermelon immunity against diverse pathogens.</description><dates><release>2022-01-01T00:00:00Z</release><publication>2022 Dec</publication><modification>2026-04-08T11:02:24.021Z</modification><creation>2024-11-08T14:39:20.586Z</creation></dates><accession>S-EPMC9778975</accession><cross_references><pubmed>36555422</pubmed><doi>10.3390/ijms232415778</doi></cross_references></HashMap>