[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2266":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":8,"source_name":9,"source_url":8,"published_at":10,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":14,"score_detail":15,"sources":22,"tags":24,"view_count":30,"doi":8,"paper":31,"created_at":40},2266,"中国农大蒋才富团队在Nature Plants发表玉米驯化驱动耐盐性增强机制研究","https:\u002F\u002Fcbs.cau.edu.cn\u002Fart\u002F2026\u002F9\u002F7\u002Fart_35535_1135822.html","2026年9月1日,中国农业大学生物学院蒋才富教授团队在Nature Plants发表研究,克隆调控玉米耐盐性关键基因MYB28,揭示CIPK20-MYB28-HAK4模块减少Na+根到地上部转运机制,SNP1409T关键氨基酸位点改变解释了现代玉米较野生大刍草耐盐性显著增强的遗传基础。",null,"中国农业大学 Nature Plants","2026-08-31T16:00:00Z","论文",10,true,88,{"impact":16,"substance":16,"depth":17,"authority":18,"freshness":19,"relevant":20,"comment":21},24,19,15,6,1,"中国农大团队在Nature Plants发表玉米耐盐关键基因与分子机制研究，属种业与耐盐碱育种的重大科研突破，学术权威性和信息增量高，但距发布已近两周，时效性一般。",[23],{"name":9,"url":6},[25,26,27,28,29],"种业振兴","玉米","耐盐碱","农业科技","基因挖掘",0,{"doi":8,"openalex_id":8,"authors":32,"venue":8,"cited_by_count":30,"oa_url":8,"card":33,"direction":37,"ingested_from":39},[],{"tldr":34,"method":35,"finding":36,"direction":37,"opportunity":38},"克隆玉米耐盐关键基因MYB28，揭示其调控钠离子转运的驯化机制。","基因克隆、SNP位点分析与CIPK20-MYB28-HAK4模块机制解析。","MYB28的SNP1409T位点改变使现代玉米较野生大刍草耐盐性显著增强。","农业人工智能与决策模型","可基于MYB28优异等位基因开发耐盐分子标记，用于玉米耐盐育种与盐碱地品种改良。","agent","2026-09-13T00:04:04.609168Z"]