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安徽芜湖农业局培训照片3.jpg](http:\u002F\u002Fzj.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1819212450\u002Fpicture\u002F20268\u002FS9ea1b11056f64103a3eacc5267fe2abf-800.jpg)](http:\u002F\u002Fzj.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F1819212450\u002Fpicture\u002F20268\u002F9ea1b11056f64103a3eacc5267fe2abf.jpg)[](http:\u002F\u002Fzj.jaas.ac.cn\u002Fxwzx\u002Fart\u002F2026\u002Fart_768fa083352d43e5ae2e0a3d2619bf3f.html)","江苏省农科院镇江所 2026-09-11","2026-09-10T16:00:00Z",41,{"impact":20,"substance":12,"depth":20,"authority":12,"freshness":101,"relevant":21,"comment":102},5,"地市级农技参观培训通稿，含品种推介与绿色防控培训等实质内容，但影响范围限于区域，公共价值有限。",[104],{"name":97,"url":94},[106,26,107,28,108],"水稻","绿色防控","农技培训",[110,111],"农技培训 种业振兴 绿色防控 良种良法","农技培训 种业振兴","农技培训种业振兴绿色防控良种良法-2463","2026-09-15T00:04:22.657773Z",{"id":115,"title":116,"url":117,"summary":118,"summary_zh":8,"content":119,"source_name":120,"source_url":8,"published_at":121,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":122,"score_detail":123,"sources":125,"tags":127,"search_phrases":131,"slug":134,"view_count":35,"doi":8,"paper":8,"created_at":135},2462,"江苏省农科院国家小麦产业技术体系南京综合试验站召开 2026 年夏收总结会(9-8)","https:\u002F\u002Fnewcrops.jaas.ac.cn\u002Fxww\u002Fgzdt\u002Fart\u002F2026\u002Fart_f652bef31c1e4ef4867d1137861c3b52.html","国家小麦产业技术体系南京综合试验站 2026 年度夏收工作总结会议 9 月 8 日在扬州召开,张鹏研究员主持。来自海安、如东、仪征、靖江、泰兴等示范县市作栽站的农技推广人员、体系技术专家及业务骨干,以及江苏省大华种业集团、江苏天丰种业等合作企业代表共 20 余人参加。会议邀请李伟、薛利红、马鸿翔、蔡剑等专家分别就病害绿色防控、土壤地力提升、种肥精量条播等作专题交流,大华种业、天丰种业就宁麦 38、宁麦 44 等优良品种示范推广与各示范县深入对接。","9月8日，国家小麦产业技术体系南京综合试验站2026年度夏收工作总结会议在扬州顺利召开，南京综合试验站站长、小麦遗传育种团队张鹏研究员主持会议。来自海安、如东、仪征、靖江、泰兴等示范县（市）作栽站的农技推广人员、体系技术专家及业务骨干，以及江苏省大华种业集团有限公司、江苏天丰种业有限公司等合作企业代表共20余人参加会议。\n\n会上，各示范县（市）代表围绕2026年度小麦试验示范与技术推广工作进行了系统汇报，重点介绍了当地上年度小麦生产情况、取得成效及存在的突出问题。针对小麦生产期间遭遇的晚播、后期倒伏风险等不利因素，各示范县坚持“以点带面”推进技术落地，扎实开展应变性技术培训与指导，有效促进了苗情转化升级，有力保障了夏粮丰产丰收。\n\n为进一步提升技术支撑能力，会议特邀国家小麦产业技术体系根茎部病害防控岗位专家李伟研究员、南方土壤障碍消减与地力提升岗位专家薛利红研究员，以及扬州大学马鸿翔教授，分别就病害绿色防控、土壤地力提升及综合配套技术作专题交流。南京农业大学蔡剑老师应邀作《小麦种肥精量条带压播机艺融合研发与应用》专题报告，为精准播种提供了技术新思路。会议期间，大华种业、天丰种业分别就高产优质强筋品种宁麦38、宁麦44等优良品种的示范推广，与各示范县进行了深入对接和研讨。\n\n与会代表还围绕品种合理选用、秋播高质量整地、病虫草害综合防控及轻简化栽培等生产关键环节展开热烈讨论，强调要推动良种、良法、良机、良田有机融合，抓实抓细秋冬小麦播种与示范推广工作，切实夯实来年丰产基础，助力小麦大面积单产提升行动落地见效，为保障区域粮食安全持续贡献技术力量。\n\n![Image 1](https:\u002F\u002Fnewcrops.jaas.ac.cn\u002Fcms_files\u002Ffilemanager\u002F382566596\u002Fpicture\u002F20268\u002FS66f8763e06c94892b1809d21d614f56e-700.png)","江苏省农科院 2026-09-09","2026-09-08T16:00:00Z",56,{"impact":19,"substance":75,"depth":19,"authority":77,"freshness":101,"relevant":21,"comment":124},"国家小麦产业技术体系试验站的夏收总结会，属细分领域常规工作动态，有品种推广与技术对接的实质内容，但影响层级限于区域，时效性一般。",[126],{"name":120,"url":117},[26,128,129,130,28],"粮食安全","小麦","农技推广",[132,133],"农技推广 种业振兴 粮食安全 良种良法","农技推广 种业振兴","农技推广种业振兴粮食安全良种良法-2462","2026-09-15T00:04:22.587665Z",{"id":137,"title":138,"url":139,"summary":140,"summary_zh":8,"content":141,"source_name":142,"source_url":8,"published_at":143,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":144,"score_detail":145,"sources":148,"tags":150,"search_phrases":153,"slug":156,"view_count":35,"doi":8,"paper":8,"created_at":157},2388,"'禾两优631'百亩示范方测产验收活动在三明尤溪举行 平均亩产824.2公斤","https:\u002F\u002Fwww.toutiao.com\u002Farticle\u002F7683393469867426355\u002F","9月8日福建省农科院水稻研究所利用自育的抗病优质强恢复系'福恢631'与'双抗'两系不育系'禾9S'配组育成的中籼两系杂交稻品种'禾两优631'百亩示范方测产验收，最终平均干谷亩产达824.2公斤。今年水稻抽穗灌浆关键期遇台风暴雨等不利天气，但该品种未出现大面积倒伏，结实率高、抗倒性强、穗大粒多。","9月8日，“禾两优631”百亩示范方测产验收暨现场观摩会在尤溪县举行。来自全国各地的水稻育种专家、农技推广人员及种植户代表齐聚田间，共同见证这一优质水稻新品种的田间表现。\n\n“禾两优631”是省农科院水稻研究所利用自育的抗病、优质强恢复系“福恢631”与“双抗”两系不育系“禾9S”配组育成的中籼两系杂交稻品种。这个品种在2023年福建省水稻中稻组区试中位列小组第一，2024年完成续试和生产试验，2025年正式通过福建省农作物品种审定委员会审定。今年，省农科院水稻研究所在尤溪县管前镇鸭墓村建立“禾两优631”百亩示范方，通过良种良法配套、农机农艺融合，集成推广绿色高质高效栽培技术。目前，示范方稻田长势良好，稻穗饱满、整齐度高，展现出良好的丰产潜力。\n\n测产验收现场，专家组严格按照农业农村部超级稻测产验收规范，在全面考察示范方的基础上，随机选取3块代表性田块，采用收割机收割脱粒，进行实割实测，称重、丈量面积、测定水分杂质等环节严谨有序。经去杂，测定水分含量，折成标准稻谷产量，最终得出“禾两优631”平均干谷亩产达824.2公斤的测产结果。该品种进入超级稻家族，是研究人员追求的目标。今年是该品种进入超级稻确认程序的第一年，首次验收即达到高产预期，前景喜人。\n\n“今年水稻抽穗、灌浆的关键时期遇到台风、暴雨等不利天气影响，但现场可见‘禾两优631’并未出现大面积倒伏情况。结合本次测产数据来看，这个品种结实率高、抗倒性强、穗大粒多，综合表现优良，在福建多丘陵的种植环境下拥有非常广阔的推广前景。”测产验收组组长、中国水稻研究所研究员朱德峰说。\n\n鸭墓村村民吴绍灿今年参与了“禾两优631”的示范种植，种植面积共4亩。“这个品种好管理，虫害少，稻秆偏矮，不容易倒伏。”看着自家田里的稻谷颗粒归仓，吴绍灿满脸笑意，“之前还担心台风过后会减产，没想到产量比预想得高很多。”\n\n“我们将持续围绕市场和产业需求，在种质创制，品种选育和配套栽培技术研究上持续攻关，形成可复制、可推广的技术模式，为保障粮食安全、促进农民增收提供坚实的科技支撑。”福建省农业科学院水稻研究所水稻分子设计育种团队负责人朱永生博士说。\n\n（转载请备注完整出处）\n\n来源：三明市融媒体中心\n\n文字：尤溪记者站 陈建荣 通讯员 黄功兴\n\n新媒体编辑：欧贝妮","三明市融媒体中心 | 2026-09-09","2026-09-09T00:00:00Z",68,{"impact":16,"substance":17,"depth":18,"authority":146,"freshness":38,"relevant":21,"comment":147},9,"省级农科院选育的两系杂交稻新品种首次百亩示范方实割测产达824.2公斤\u002F亩，数据具体、专家与农户多方信源齐全，对福建丘陵稻区推广有实质参考价值，但属区域品种进展，未达全国性重大突破层级。",[149],{"name":142,"url":139},[26,128,151,152,28],"水稻育种","杂交水稻",[154,155],"杂交水稻 水稻育种 种业振兴 粮食安全","杂交水稻 水稻育种","杂交水稻水稻育种种业振兴粮食安全-2388","2026-09-14T00:06:30.379312Z",{"id":159,"title":160,"url":161,"summary":162,"summary_zh":163,"content":8,"source_name":164,"source_url":161,"published_at":165,"category":166,"cover_url":8,"hotness":12,"is_selected":13,"score":167,"score_detail":168,"sources":170,"tags":172,"search_phrases":177,"slug":180,"view_count":35,"doi":181,"paper":182,"created_at":209},3344,"Variability in cooking time, mineral content and in vitro iron bioavailability in common beans (Phaseolus vulgaris L.) from Ghana","https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffsufs.2026.1906607","Introduction Common bean ( Phaseolus vulgaris L.) is recognized as a potential food vehicle for improving dietary iron intake because it can provide bioavailable iron. However, evidence on the cooking characteristics and nutritional quality of dry beans produced in Ghana remains limited, particularly in West African contexts where beans are non-traditional staple foods. Methods This study evaluated cooking time, iron and zinc concentrations, and iron bioavailability assessed by in vitro Caco-2 cell ferritin formation among 40 common bean genotypes representing the white, cranberry, red, beige, red mottled, black, and purple market classes. Cowpea cultivars (Zamzam and Tona) were included as local checks for measured traits. Results and discussion Cowpea cooked substantially faster (10–14 min) than all common bean market classes (28–143 min). Substantial variation was observed in cooked bean iron (42.4–79.3 μg\u002Fg) and zinc (24.5–41.6 μg\u002Fg) concentrations, compared with ranges of 47–59 μg\u002Fg and 40–52 μg\u002Fg, respectively, in cowpea. Iron concentration was not correlated with in vitro iron bioavailability ( r = −0.128, 95% CI: −0.423 to 0.191; p = 0.430) in cooked beans, whereas shorter cooking times were associated with higher in vitro iron bioavailability ( r = −0.452, 95% CI: −0.669 to −0.163; p = 0.003). In the multivariable model, market class was the only significant predictor of in vitro Caco-2 cell ferritin formation after adjustment for iron concentration, cooking time, and seed water uptake. White beans showed higher adjusted mean in vitro Caco-2 cell ferritin formation (11.88 ± 0.83 ng ferritin\u002Fmg cell protein) despite having low or comparable Fe concentration, significantly exceeding all colored market classes (2.09–3.67 ng ferritin\u002Fmg cell protein; Bonferroni-adjusted p \u003C 0.001). The identified white bean genotypes are promising candidates for further evaluation and breeding efforts aimed at increasing consumer access to beans with greater potential to provide bioavailable iron after cooking.","引言 普通菜豆（Phaseolus vulgaris L.）因其能够提供生物可利用铁，被认为是改善膳食铁摄入的潜在食物载体。然而，关于加纳生产的干豆的烹饪特性和营养品质的证据仍然有限，尤其是在豆类并非传统主粮的西非地区。方法 本研究评估了代表白色、蔓越莓色、红色、米色、红纹、黑色和紫色市场类别的40个普通菜豆基因型的烹饪时间、铁和锌浓度，以及通过体外Caco-2细胞铁蛋白形成评估的铁生物利用率。豇豆品种（Zamzam和Tona）作为当地对照纳入所测性状的比较。结果与讨论 豇豆的烹饪速度（10–14分钟）显著快于所有普通菜豆市场类别（28–143分钟）。熟豆的铁浓度（42.4–79.3 μg\u002Fg）和锌浓度（24.5–41.6 μg\u002Fg）存在显著变异，而豇豆的相应范围分别为47–59 μg\u002Fg和40–52 μg\u002Fg。在熟豆中，铁浓度与体外铁生物利用率不相关（r = −0.128，95% CI：−0.423至0.191；p = 0.430），而较短的烹饪时间与较高的体外铁生物利用率相关（r = −0.452，95% CI：−0.669至−0.163；p = 0.003）。在多变量模型中，在调整铁浓度、烹饪时间和种子吸水率后，市场类别是体外Caco-2细胞铁蛋白形成的唯一显著预测因子。白豆表现出较高的调整后平均体外Caco-2细胞铁蛋白形成量（11.88 ± 0.83 ng铁蛋白\u002Fmg细胞蛋白），尽管其铁浓度较低或相当，但显著超过所有有色市场类别（2.09–3.67 ng铁蛋白\u002Fmg细胞蛋白；Bonferroni校正p \u003C 0.001）。所鉴定的白豆基因型是有前景的候选材料，可用于进一步评估和育种工作，旨在增加消费者获得烹饪后更有可能提供生物可利用铁的豆类。","Frontiers in Sustainable Food Systems","2026-09-23T00:00:00Z","论文",69,{"impact":20,"substance":50,"depth":51,"authority":77,"freshness":146,"relevant":21,"comment":169},"针对加纳普通菜豆种质资源的蒸煮特性与铁生物利用度研究，数据扎实、结论明确，对豆类营养育种有参考价值，但属区域性基础研究，公共影响有限。",[171],{"name":164,"url":161},[26,173,174,175,176],"膳食营养","豆类作物","铁营养","加纳农业",[178,179],"加纳 普通菜豆 铁生物利用度","Phaseolus vulgaris 蒸煮时间 锌含量","加纳普通菜豆铁生物利用度-3344","10.3389\u002Ffsufs.2026.1906607",{"doi":181,"openalex_id":183,"authors":184,"venue":164,"cited_by_count":35,"oa_url":161,"card":202,"direction":206,"ingested_from":208},"W7214121190",[185,187,189,191,193,196,198,200],{"name":186,"orcid":8},"Charity B. Wiredu",{"name":188,"orcid":8},"Jason A. Wiesinger",{"name":190,"orcid":8},"Herman E. Lutterodt",{"name":192,"orcid":8},"Maxwell Lamptey",{"name":194,"orcid":195},"Stephen Yeboah","https:\u002F\u002Forcid.org\u002F0000-0002-6811-6355",{"name":197,"orcid":8},"James Y. Asibuo",{"name":199,"orcid":8},"Raymond P. Glahn",{"name":201,"orcid":8},"Reginald A. Annan",{"tldr":203,"method":204,"finding":205,"direction":206,"opportunity":207},"评估加纳40个菜豆基因型的烹饪时间、铁锌含量及体外铁生物利用度。","测定40个菜豆基因型烹饪时间、矿物元素及Caco-2细胞铁蛋白法体外铁生物利用度","白粒菜豆铁生物利用度最高，烹饪时间短与铁生物利用度正相关，铁含量与生物利用度无关。","其他","可挖掘菜豆烹饪时间与铁生物利用度的遗传机制，为高生物利用度品种选育提供靶点。","openalex","2026-09-24T23:30:07.979709Z"]