[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-3115":3,"related-3115":38},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":8,"published_at":11,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":24,"tags":26,"search_phrases":32,"slug":35,"view_count":36,"doi":8,"paper":8,"created_at":37},3115,"河南农科院发布夏玉米收获期连阴雨风险应急管理措施——2026 年河南玉米生产遭遇\"穗期高温干旱+授粉灌浆期强降雨+后期连阴雨风险\"三重灾害","https:\u002F\u002Fwww.hnagri.org.cn\u002Farticle-114024.html","河南省农业科学院发布《夏玉米收获期连阴雨风险应急管理措施》：当前 9-16 河南夏玉米处于灌浆中后期，豫南南阳大面积乳线处于 1\u002F2 阶段、豫中漯河许昌处于 1\u002F3-1\u002F2 阶段、豫北新乡鹤壁焦作处于 1\u002F4 阶段。今年河南玉米生产过程遭遇\"穗期高温干旱+授粉灌浆期强降雨+后期连阴雨风险\"灾害导致部分区域秃尖、茎基腐、南方锈病部分发生、霉变可能加重。8 月 10-12 日台风\"白海豚\"影响河南，漯河、许昌、平顶山、周口连续 2 天降雨量超 300mm 部分超 400mm。省气象局预测 9 月 19 日起本轮降雨持续至 28 日，针对豫南连阴雨风险较大区域应进行适期晚获和抢时抢收。",null,"当前（9月16日），我省夏玉米处于灌浆中后期，豫南（南阳区域）大面积乳线处于1\u002F2阶段，豫中（漯河、许昌）大面积乳线处于1\u002F3-1\u002F2阶段，豫北（新乡、鹤壁、焦作）大面积乳线处于1\u002F4阶段。豫南基本处于蜡熟期，但距离生理成熟晚熟期还有10-15天左右时间，豫北处于蜡熟初期，距离晚熟期还有15-20天时间。全省玉米距离完全成熟，粒重达到最大均需一定时间。\n\n同时，不同区域均存在零星收获现象，主要是零散小户，受降雨、施肥不足、密度过大等影响，存在部分区域青枯病和早衰现象（漯河部分区域淹水时间较长田块等），大户种植管理措施到位，目前大部分叶片持绿性较好，后期灌浆时间较长，籽粒充实潜力仍较大。\n\n2026年我省玉米生产过程整体良好，好于去年。2026年春季雨水较为充沛，玉米播种期墒情全省整体较好，保障了玉米一播全苗、苗期苗壮。6月18-7月15日，全省近一个月雨水较少，多数地区出现旱情，主要是南阳和驻马店点地区，7月15日后我省大部分区域呈多点短时强降雨情况，旱情得到较大缓解，8月10-12日，台风“白海豚”影响我省，全省较大范围带来强降雨，特别是漯河、许昌、平顶山、周口地区连续2天降雨量超过300mm，部分区域超过400mm，玉米被淹时间超过3天。9月份以来，我省大部分地区土壤偏旱，大多数田块需要浇灌灌浆水，其中，9月8-9日，受冷空气影响，全省降温10-15℃，短暂降温后温度恢复。\n\n根据省气象局预测，预计今年“三秋”期间我省降水呈北少南多分布，气温整体偏高，天气条件整体有利于玉米后期灌浆成熟和收获晾晒。预计9月中下旬，北部、中西部、南部降水量较常年同期偏多；19日起有我省大部地区连阴雨天气，预计持续至28日。此次持续降雨过程将造成光照不足、田间湿度加大，易产生灌浆受阻、病害加重、成熟籽粒霉变等风险。\n\n因此，2026年玉米生产过程遇到“穗期高温干旱+授粉灌浆期强降雨+后期连阴雨风险”灾害，导致部分区域秃尖、茎基腐，南方锈病部分发生，霉变有可能加重等风险。\n\n9月19日起的本轮降雨，会较大程度环节旱情，更有利于下一茬小麦播种，针对我省不同熟期玉米应分类施策，进行适期晚获和抢时抢收。\n\n一、针对豫南连阴雨风险较大区域，该区域玉米大部分进入蜡熟期，玉米籽粒乳线即将消失、基部黑层出现，即将达到收获标准的田块，连阴雨极易造成穗部发芽和霉变风险。这类田块，应抓住19日降水开始前的窗口期或降雨间歇突击抢收，土壤湿软地块优先调集履带式收割机。密切关注天气变化，抢抓晴好天气及时收获。在机械无法完全进入的区域，可组织人工辅助抢收，最大限度降低损失。确保能收尽收，颗粒归仓。\n\n二、针对豫中豫北未达到蜡熟期地块，大部分玉米还未到蜡熟期（乳线1\u002F2），粒重达到最大粒重的70-80%左右，灌浆还在继续。连续阴雨天气会降低植株光合能力，影响籽粒灌浆。建议雨后及时疏通田间沟渠，排涝降渍。低洼地块备好抽排设备，雨后第一时间排净明水，缩短根系泡水时间；严防根系渍害、烂根早衰，保障玉米正常灌浆。二是强化灾后恢复和营养加强，谨防病害蔓延。茎基腐、穗腐病和南方锈病具有进一步加重风险，利用降雨间歇期可最后一次喷施叶面肥，增强营养补偿，提高群体健康程度。直到9月28日，本轮降雨结束后，乳线消失、黑层出现后适期晚收。\n\n三、收获后果穗与籽粒储存。收获后的玉米果穗和籽粒及时进行烘干和晾晒。若采用机械烘干，根据烘干玉米规模和用途不同，选择分段式烘干和连续式烘干设备。若选择自然晾晒，则需抓住晴朗窗口期，将果穗或籽粒平摊晾晒，摊薄散热、定时翻堆通风，防止堆温升高、受潮霉变、发芽变质。待籽粒含水量降至14%以下才能安全储藏。","河南省农业科学院","2026-09-16T00:00:00Z","报道",10,false,78,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},20,22,17,13,6,1,"省级科研机构针对2026年河南夏玉米三重灾害发布的分类应急管理措施，含具体生育期数据与操作建议，专业性和实用性较强，但时效已过一周。",[25],{"name":10,"url":6},[27,28,29,30,31],"防灾减灾","河南农科院","夏玉米","连阴雨","适期晚收",[33,34],"河南农科院 夏玉米 连阴雨","河南 夏玉米 应急管理措施","河南农科院夏玉米连阴雨-3115",0,"2026-09-22T00:05:36.506567Z",{"total":21,"page":22,"page_size":21,"items":39},[40,68,119,142,176,201],{"id":41,"title":42,"url":43,"summary":44,"summary_zh":8,"content":8,"source_name":45,"source_url":8,"published_at":46,"category":47,"cover_url":8,"hotness":13,"is_selected":48,"score":49,"score_detail":50,"sources":55,"tags":57,"search_phrases":63,"slug":66,"view_count":36,"doi":8,"paper":8,"created_at":67},3089,"农业农村部召开全国\"三秋\"农业生产工作视频会议 全力以赴抓好当前农业生产各项工作 奋力夺取全年粮食和农业丰收","https:\u002F\u002Fszb.farmer.com.cn\u002Fnmrb\u002Fhtml\u002F2026\u002F20260922\u002F20260922_1\u002Fnmrb_20260922_13411_1_2102145214697279501.html","9-21 农业农村部召开全国\"三秋\"农业生产工作视频会议。会议强调，今年是\"十五五\"开局之年，要全力以赴抓好\"三秋\"农业生产，奋力夺取全年粮食和农业丰收，不误农时推进秋冬种，打牢明年粮油丰收基础。要分区分类抓细秋管，提早组织农机供需对接，抢抓晴好天气推进秋粮收获；要压紧压实粮食安全党政同责，落实播种面积、提高播种质量，培育冬前壮苗；农机农艺融合推动油菜大面积单产提升；要密切关注超强厄尔尼诺气候影响，细化气象灾害和病虫草害应急预案；要推动做好化肥等农资稳价保供，大力推广水肥一体化等节水节肥技术。会议由副部长潘文博主持。","农民日报","2026-09-22T00:00:00Z","政策",true,86,{"impact":51,"substance":52,"depth":53,"authority":53,"freshness":13,"relevant":22,"comment":54},28,18,15,"全国性三秋生产部署会议，政策层级高、时效性强，含秋冬种、防灾减灾、农资保供等实质举措，值得进入每日精选。",[56],{"name":45,"url":43},[27,58,59,60,61,62],"农机农艺融合","水肥一体化","三秋生产","秋冬种","粮油丰收",[64,65],"农业农村部 三秋农业生产 视频会议","秋冬种 油菜 单产提升","农业农村部三秋农业生产视频会议-3089","2026-09-22T00:05:32.606516Z",{"id":69,"title":70,"url":71,"summary":72,"summary_zh":73,"content":8,"source_name":74,"source_url":71,"published_at":75,"category":76,"cover_url":8,"hotness":13,"is_selected":14,"score":77,"score_detail":78,"sources":83,"tags":85,"search_phrases":89,"slug":92,"view_count":36,"doi":93,"paper":94,"created_at":118},2956,"Integrating AI and Earth Observation Data for Disaster Risk Reduction","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12524-026-02595-8","Integrating AI and Earth Observation Data for Disaster Risk Reduction。Journal of the Indian Society of Remote Sensing","将人工智能与地球观测数据相结合以降低灾害风险。《印度遥感学会杂志》","Journal of the Indian Society of Remote Sensing","2026-09-18T00:00:00Z","论文",62,{"impact":79,"substance":80,"depth":53,"authority":20,"freshness":81,"relevant":22,"comment":82},12,14,8,"AI与地球观测融合用于灾害风险降低的学术论文，与农业信息化相关但偏通用防灾，产业落地价值有限。",[84],{"name":74,"url":71},[86,27,87,88],"农业人工智能","遥感","地球观测",[90,91],"AI 地球观测 灾害风险","农业人工智能 地球观测 防灾减灾 遥感","AI地球观测灾害风险-2956","10.1007\u002Fs12524-026-02595-8",{"doi":93,"openalex_id":95,"authors":96,"venue":74,"cited_by_count":36,"oa_url":109,"card":110,"direction":116,"ingested_from":117},"W7213552966",[97,100,103,106],{"name":98,"orcid":99},"Surajit Ghosh","https:\u002F\u002Forcid.org\u002F0000-0002-3928-2135",{"name":101,"orcid":102},"Md. Munsur Rahman","https:\u002F\u002Forcid.org\u002F0000-0002-9922-0374",{"name":104,"orcid":105},"Fasikaw A. Zimale","https:\u002F\u002Forcid.org\u002F0000-0001-9778-2712",{"name":107,"orcid":108},"Rajib Shaw","https:\u002F\u002Forcid.org\u002F0000-0003-3153-1800","https:\u002F\u002Flink.springer.com\u002Fcontent\u002Fpdf\u002F10.1007\u002Fs12524-026-02595-8.pdf",{"tldr":111,"method":112,"finding":113,"direction":114,"opportunity":115},"综述AI与地球观测数据融合用于灾害风险减少的研究进展。","综述AI与地球观测数据融合方法。","AI与地球观测融合可提升灾害风险监测与评估能力。","农业遥感与作物表型","可探索AI与遥感融合在农业灾害风险预警与保险中的具体应用。","数字乡村与农业信息化","openalex","2026-09-19T23:30:40.818538Z",{"id":120,"title":121,"url":122,"summary":123,"summary_zh":8,"content":8,"source_name":124,"source_url":8,"published_at":11,"category":47,"cover_url":8,"hotness":13,"is_selected":48,"score":125,"score_detail":126,"sources":130,"tags":132,"search_phrases":137,"slug":140,"view_count":36,"doi":8,"paper":8,"created_at":141},2691,"财政部下达农业生产救灾资金17.63亿元支持秋粮生产——奋战100天抗灾夺丰收","https:\u002F\u002Fwww.moa.gov.cn\u002Fxw\u002Fqg\u002F202609\u002Ft20260916_6487721.htm","财政部下达农业生产救灾资金17.63亿元,支持河南、山东、安徽、江苏、河北等秋粮主产区抗灾夺丰收,重点用于灾后恢复生产、田间管理、防灾减灾设施建设等。","农业农村部 2026年9月16日",90,{"impact":127,"substance":18,"depth":128,"authority":53,"freshness":13,"relevant":22,"comment":129},27,16,"财政部下达17.63亿元农业生产救灾资金，覆盖豫鲁皖苏冀等秋粮主产区，属全国性财政支农政策，金额与用途明确、信源权威且时效性强，值得进入每日精选。",[131],{"name":124,"url":122},[27,133,134,135,136],"财政支农","秋粮生产","救灾资金","灾后复产",[138,139],"救灾资金 灾后复产 秋粮生产 财政支农","救灾资金 灾后复产","救灾资金灾后复产秋粮生产财政支农-2691","2026-09-17T00:04:35.268712Z",{"id":143,"title":144,"url":145,"summary":146,"summary_zh":147,"content":8,"source_name":148,"source_url":145,"published_at":149,"category":76,"cover_url":8,"hotness":13,"is_selected":14,"score":150,"score_detail":151,"sources":153,"tags":155,"search_phrases":159,"slug":162,"view_count":36,"doi":163,"paper":164,"created_at":175},2529,"Flood Risk Assessment and Environmental Change Analysis Using GIS and Remote Sensing","https:\u002F\u002Fdoi.org\u002F10.34248\u002Fbsengineering.1994338","Floods can be very destructive natural hazard; it causes significant environmental, social, and economic impacts. Havza is a district in Northern part of Türkiye, experienced major flood events in May 1998 and May 2026, which emphasize the need of identify flood-prone areas and analyze the factors that influence flood vulnerability. The aim of this study is to asses flood risk and analyzes land use\u002Fland cover (LULC) monitoring derived from remote sensing data in Havza. Furthermore, topographic characteristics were also obtained from Shuttle Radar Topography Mission (SRTM) and Digital Elevation Model (DEM) using Geographic Information Systems (GIS). Hydrological analyses include slope and flow accumulation models, and these analyses were used to identify susceptible areas. It has been observed that the mean NDVI value increased from 0.4239 in 1998 to 0.7447 in 2026, indicating a substantial increase in vegetation cover. LULC classification results also showed that urban areas increased from 16% to 20% while agricultural land decreased 54% to 50% in approximately last 3 decades. 3-Dimensional (3D) terrain visualization and river corridor-based flood risk mapping revealed that low elevation valley floors and settlements located very near to stream channels, which is the most vulnerable areas of floods. The findings of this study demonstrate the effectiveness of integration of GIS and remote sensing, topographic analysis, and LULC change detection within a single framework for flood risk assessment and sustainable land management. The results provide valuable support for disaster risk reduction, urban planning, and future development strategies in Havza and similar watershed environments.","洪水是一种极具破坏性的自然灾害，会对环境、社会和经济造成显著影响。哈夫扎（Havza）是土耳其北部的一个区，1998年5月和2026年5月经历了重大洪水事件，这凸显了识别洪水易发区域并分析影响洪水脆弱性因素的必要性。本研究旨在评估哈夫扎的洪水风险，并分析基于遥感数据获得的土地利用\u002F土地覆盖（LULC）监测结果。此外，还利用地理信息系统（GIS）从航天飞机雷达地形测绘任务（SRTM）和数字高程模型（DEM）中获取了地形特征。水文分析包括坡度和汇流累积模型，这些分析用于识别易受洪水影响的区域。研究发现，NDVI均值从1998年的0.4239上升至2026年的0.7447，表明植被覆盖显著增加。LULC分类结果还显示，在近三十年间，城市面积从16%增加至20%，而农业用地从54%减少至50%。三维（3D）地形可视化和基于河流廊道的洪水风险制图表明，低海拔河谷底部和紧邻河道的居民点是洪水最脆弱的区域。本研究结果表明，将GIS与遥感、地形分析以及LULC变化检测整合于同一框架内，对于洪水风险评估和可持续土地管理具有有效性。研究结果为哈夫扎及类似流域环境的减灾、城市规划和未来发展战略提供了有价值的支持。","Black Sea Journal of Engineering and Science","2026-09-14T00:00:00Z",61,{"impact":81,"substance":52,"depth":53,"authority":79,"freshness":81,"relevant":22,"comment":152},"以GIS与遥感融合评估土耳其流域洪水风险与土地利用变化，方法框架对农业防灾与乡村空间规划有参考价值，但属区域案例研究，公共影响有限。",[154],{"name":148,"url":145},[27,87,156,157,158],"洪水风险评估","GIS","土地利用变化",[160,161],"土地利用变化 洪水风险评估 防灾减灾 遥感","土地利用变化 洪水风险评估","土地利用变化洪水风险评估防灾减灾遥感-2529","10.34248\u002Fbsengineering.1994338",{"doi":163,"openalex_id":165,"authors":166,"venue":148,"cited_by_count":36,"oa_url":145,"card":170,"direction":114,"ingested_from":117},"W7212642487",[167],{"name":168,"orcid":169},"Sibel Canaz","https:\u002F\u002Forcid.org\u002F0000-0001-5552-6067",{"tldr":171,"method":172,"finding":173,"direction":114,"opportunity":174},"结合GIS与遥感评估土耳其Havza地区洪水风险，并分析近30年土地利用与植被变化。","使用SRTM\u002FDEM地形分析、坡度与汇流模型、NDVI及LULC分类。","低海拔河谷与近河道居民点最易受灾；城区扩张、农地减少、植被覆盖显著增加。","可引入时序遥感与机器学习，构建流域尺度洪水风险动态预警与土地利用协同优化模型。","2026-09-15T23:30:20.567355Z",{"id":177,"title":178,"url":179,"summary":180,"summary_zh":8,"content":181,"source_name":182,"source_url":8,"published_at":183,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":184,"score_detail":185,"sources":189,"tags":191,"search_phrases":196,"slug":199,"view_count":36,"doi":8,"paper":8,"created_at":200},2459,"浙江省农科院专家赴温州泰顺包垟乡开展樱桃番茄优新品种与栽培技术培训(9-8)","https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html","浙江省亚热带作物研究所与泰顺县包垟乡人民政府联合主办的'高品质番茄适用品种介绍及配套栽培技术'专题培训 9 月 8 日在包垟乡举行。浙江省农科院番茄辣椒育种研究室副主任姚祝平副研究员专程赴包垟乡授课,并与省亚作所特色蔬菜团队联合开展研发攻关,建立示范基地、推广优新品种和配套技术,助力高山特色番茄提质增效。包垟乡依托库区山地气候优势,樱桃番茄产业已发展为当地乡村振兴的重要特色产业。","[首页](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Findex.html)>[工作动态](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220119\u002Findex.html)>[县市动态](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Findex.html)\n\n良种配良法 科技到田头——省地科技专家联手开展樱桃番茄优新品种及配套栽培技术培训\n时间：2026-09-09 15:03:27 浏览次数：来源：泰顺县科技局 字号：[ [大](javascript:doZoom(16))[中](javascript:doZoom(14))[小](javascript:doZoom(12)) ]\n* * *\n\n9月8日，在温州市科技局和泰顺县科技局的指导下，由浙江省亚热带作物研究所与泰顺县包垟乡人民政府联合主办的“高品质番茄适用品种介绍及配套栽培技术”专题培训在包垟乡顺利举行。来自包垟乡及周边地区的番茄种植户、农技人员、基层农业工作者等50余人参加培训。\n\n[![Image 1: p2026090901.jpg](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcms_files\u002Ffilemanager\u002F1516169\u002Fpicture\u002F20269\u002FS4ead6a2ef70e4a40936e82c16d264797-800.jpg)](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcms_files\u002Ffilemanager\u002F1516169\u002Fpicture\u002F20269\u002F4ead6a2ef70e4a40936e82c16d264797.jpg)\n\n应温州市科技特派员应佳丽博士邀请，浙江省农业科学院番茄辣椒育种研究室副主任姚祝平副研究员专程赴包垟乡授课。姚祝平紧密结合当地生产实际，系统讲解了番茄品种引选及高品质栽培关键技术，并就农户在引种和栽培过程中遇到的疑难问题逐一答疑解惑，现场互动热烈。\n\n培训结束后，专家团队前往泰顺县花里横溪旅游开发有限公司的樱桃番茄高品质栽培示范基地，实地开展台风防灾救灾指导，并对后续定植技术提出专项建议，帮助基地提升抗灾能力和种植管理水平。\n\n[![Image 2: p2026090902.jpg](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcms_files\u002Ffilemanager\u002F1516169\u002Fpicture\u002F20269\u002FSb131982d53594d3194aaabcf5df91890-800.jpg)](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcms_files\u002Ffilemanager\u002F1516169\u002Fpicture\u002F20269\u002Fb131982d53594d3194aaabcf5df91890.jpg)\n\n包垟乡依托库区山地气候优势，樱桃番茄产业已发展为当地乡村振兴的重要特色产业，大棚番茄种植初具规模。然而，品种老化、高品质栽培技术缺乏、病虫害频发等问题仍是制约产业高质量发展的突出瓶颈。为此，省亚作所特色蔬菜团队在温州市、泰顺县两级科技部门支持下，联合省农科院蔬菜所番茄团队，聚焦关键瓶颈开展研发攻关，通过建立示范基地、推广优新品种和配套技术，助力高山特色番茄提质增效，带动农民增收致富。此次培训正是科技精准服务基层、推动产业升级的务实举措，为包垟乡樱桃番茄产业可持续发展注入新动能。\n\n[【返回顶部】](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html#)[【打印本稿】](javascript:window.print())[【关闭本页】](javascript:window.opener=null;window.open('','_self');window.close();)[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"分享到QQ空间\")[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"分享到新浪微博\")[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"分享到人人网\")[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"分享到腾讯微博\")[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"分享到网易微博\")[](https:\u002F\u002Fwzkj.wenzhou.gov.cn\u002Fcol\u002Fcol1220131\u002Fart\u002F2026\u002Fart_4866e31a7adf49509ad076fe0e466b7a.html \"更多平台\")0","温州市科技局 2026-09-09","2026-09-08T16:00:00Z",44,{"impact":81,"substance":79,"depth":13,"authority":186,"freshness":187,"relevant":22,"comment":188},9,5,"省级科研机构联合地方开展的番茄优新品种与栽培技术培训，有具体产业瓶颈分析和实地指导，但属地方性常规科技服务动态，影响范围有限。",[190],{"name":182,"url":179},[192,27,193,194,195],"种业振兴","科技特派员","樱桃番茄","栽培技术",[197,198],"科技特派员 栽培技术 樱桃番茄 种业振兴","科技特派员 栽培技术","科技特派员栽培技术樱桃番茄种业振兴-2459","2026-09-15T00:04:22.385090Z",{"id":202,"title":203,"url":204,"summary":205,"summary_zh":8,"content":8,"source_name":206,"source_url":8,"published_at":207,"category":12,"cover_url":8,"hotness":208,"is_selected":14,"score":209,"score_detail":210,"sources":212,"tags":217,"search_phrases":221,"slug":224,"view_count":36,"doi":8,"paper":8,"created_at":225},2385,"湖北高蛋白玉米'未玉115'新品种平均单产644.1公斤\u002F亩 蛋白含量创湖北夏玉米新高","https:\u002F\u002Fwww.ctdsb.net\u002Fc1676_202609\u002F2855786.html","9月13日湖北农科院联合洪山实验室、未米生物科技有限公司联合选育的高蛋白玉米新品种'未玉115'现场观摩会在麻城举行。专家组对200亩示范田进行田间实收测产，平均单产644.1公斤\u002F亩；该品种蛋白含量13%，在湖北夏玉米品种中是普通玉米的1.6倍以上。","极目新闻 | 2026-09-13","2026-09-13T00:00:00Z",25,71,{"impact":52,"substance":17,"depth":80,"authority":186,"freshness":13,"relevant":22,"comment":211},"省级科研机构联合选育的高蛋白玉米新品种实收测产数据扎实，蛋白含量与单产双创新高，具种业振兴与单产提升示范价值，值得进入每日精选。",[213,214],{"name":206,"url":204},{"name":215,"url":216},"湖北日报 2026-09-13","https:\u002F\u002Fwww.toutiao.com\u002Farticle\u002F7684980938870096434\u002F",[192,218,219,220,29],"湖北","单产提升","高蛋白玉米",[222,223],"高蛋白玉米 单产提升 种业振兴 夏玉米","高蛋白玉米 单产提升","高蛋白玉米单产提升种业振兴夏玉米-2385","2026-09-14T00:06:30.173742Z"]