南通农机化中心开展水稻机插秧常规施肥与侧深施肥对比试验
为深入实施粮食单产提升行动,探索减肥减药的环境友好型农业生产新途径。近日,江苏省南通市农机化技术推广中心联合市作物栽培技术指导站、耕地质量保护站在通州区石港镇开展水稻机插秧常规施肥与侧深施肥对比试验。 本次试验选用同一品…
补齐丘陵山区玉米生产机械化短板:阳城对玉米全程机械化技术推广项目开展中期指导
为补齐丘陵山区玉米生产机械化短板,加快玉米全程机械化技术示范落地,保障项目按期完成建设任务,日前,山西省阳城县农业农村局工作人员深入项目实施主体,开展玉米全程机械化技术推广项目中期实地指导。 工作人员走进项目实施主体&m…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Inside Faraday Earth’s bid to make cheap green ammonia without Haber-Bosch
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Faraday Earth] Can a container-sized plasma reactor…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Inside Faraday Earth’s bid to make cheap green ammonia without Haber-Bosch
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Faraday Earth] Can a container-sized plasma reactor…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Inside Faraday Earth’s bid to make cheap green ammonia without Haber-Bosch
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Faraday Earth] Can a container-sized plasma reactor…
南农大沈其荣院士团队揭开木霉菌促生密码,开辟微生物肥料分子靶点新路径
世界农化网中文网报道:7月23日,南京农业大学资源与环境科学学院、中国工程院院士沈其荣团队在国际权威期刊Cell发表题为″Trichoderma swollenin activates AtABCB5-dependent auxin efflux to promote plant development″的研究论文,论文揭示了哈茨木霉分泌类膨胀蛋白(ThSWO)调控植物生长的一条重要分子通路,首次阐明木霉效应蛋白靶向激活拟南芥AtABCB5生长素转运蛋白、调控植物内源生长素外排及相关响应,为微生物肥料提质、作物绿色增产开辟全新分子靶点与应用路径。
中国水稻研究所在一系法杂交水稻研究中取得里程碑突破
世界农化网中文网报道:7月21日,中国水稻研究所王克剑团队在Vita上发表题为《Fixing hybrid vigor in rice: achieving near-100% clonal seed production with normal seed set》的研究论文,这也是该刊创刊以来首篇植物科学领域的科研成果。团队成功挖掘出水稻内源″华胥″基因,并据此构建了克隆效率超99%的Fix8无融合生殖体系,由此培育出一系法杂交水稻实证性品种″一系1号″。该品种在保持克隆效率超99%的同时,结实率亦保持正常。这标志着一系法杂交水稻成功实现了关键指标的跨越式突破,向着″固定杂种优势″的终极目标迈出了关键一步。
