[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2924":3,"related-2924":45},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":8,"source_name":9,"source_url":6,"published_at":10,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":14,"score_detail":15,"sources":23,"tags":25,"search_phrases":30,"slug":33,"view_count":34,"doi":35,"paper":36,"created_at":44},2924,"Climate-Smart Agriculture Package Combinations and Household Food and Nutrition Security among Smallholder Farmers in Southwestern Ethiopia","https:\u002F\u002Fdoi.org\u002F10.21203\u002Frs.3.rs-11073051\u002Fv1","Climate-Smart Agriculture Package Combinations and Household Food and Nutrition Security among Smallholder Farmers in Southwestern Ethiopia。Research Square",null,"Research Square","2026-09-18T00:00:00Z","论文",10,false,56,{"impact":16,"substance":17,"depth":18,"authority":19,"freshness":20,"relevant":21,"comment":22},8,18,15,6,9,1,"研究主题契合气候智慧型农业与小农户粮食安全，但属区域性论文且来源为预印本平台，公共影响与权威性有限，暂不建议进入每日精选。",[24],{"name":9,"url":6},[26,27,28,29],"粮食安全","小农户","气候智慧型农业","埃塞俄比亚",[31,32],"埃塞俄比亚 小农户 气候智慧型农业","气候智慧型农业 埃塞俄比亚 粮食安全 小农户","埃塞俄比亚小农户气候智慧型农业-2924",0,"10.21203\u002Frs.3.rs-11073051\u002Fv1",{"doi":35,"openalex_id":37,"authors":38,"venue":9,"cited_by_count":34,"oa_url":6,"card":8,"direction":42,"ingested_from":43},"W7213535845",[39],{"name":40,"orcid":41},"Tesfaye Gafaro Ololo","https:\u002F\u002Forcid.org\u002F0009-0006-7838-5264","智慧农业 \u002F 农业物联网","openalex","2026-09-19T23:30:10.838601Z",{"total":19,"page":21,"page_size":19,"items":46},[47,84,134,177,209,251],{"id":48,"title":49,"url":50,"summary":51,"summary_zh":52,"content":8,"source_name":53,"source_url":50,"published_at":54,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":55,"score_detail":56,"sources":61,"tags":63,"search_phrases":66,"slug":69,"view_count":34,"doi":70,"paper":71,"created_at":83},2508,"Food Insecurity: The Hungry Face of Climate Change","https:\u002F\u002Fdoi.org\u002F10.56201\u002Fjbgr.vol.11.no4.2025.pg88.95","Climate change is rapidly reshaping global food systems, intensifying food insecurity across both the Global North and South. Rising temperatures, erratic precipitation, extreme weather events, and land degradation are undermining agricultural productivity and destabilizing food access, particularly among marginalized and low-income populations. This paper examines the complex interplay between climate change and food insecurity, drawing on recent empirical studies and cross-regional data to analyze environmental, economic, and social dimensions. It highlights how climate-related disruptions disproportionately affect women, children, indigenous groups, and smallholder farmers, compounding existing structural inequities. The review evaluates current adaptation and mitigation efforts, including climate-smart agriculture, water resource management, and renewable energy integration. It also assesses policy gaps and proposes a holistic, equity-centered framework that integrates sustainable agriculture, community empowerment, and climate resilience. The study emphasizes the urgency of embedding food security into climate policy at all levels to safeguard livelihoods and promote sustainable development in an era of intensifying climate risk.","气候变化正在迅速重塑全球粮食系统，加剧全球北方和全球南方的粮食不安全。气温上升、降水异常、极端天气事件和土地退化正在削弱农业生产力并破坏粮食获取的稳定性，尤其是对边缘化和低收入群体而言。本文借鉴近期实证研究和跨区域数据，分析环境、经济和社会维度，考察气候变化与粮食不安全之间复杂的相互作用。文章强调，与气候相关的扰动对妇女、儿童、原住民群体和小农的影响尤为不成比例，并加剧了现有的结构性不平等。本文评估了当前的适应和减缓努力，包括气候智慧型农业、水资源管理和可再生能源整合。文章还评估了政策缺口，并提出一个以公平为中心的整体框架，将可持续农业、社区赋权和气候韧性相结合。研究强调，在气候风险日益加剧的时代，将粮食安全纳入各级气候政策以保障生计和促进可持续发展具有紧迫性。","JOURNAL OF BIOLOGY AND GENETIC RESEARCH","2026-09-14T00:00:00Z",78,{"impact":57,"substance":17,"depth":58,"authority":59,"freshness":16,"relevant":21,"comment":60},22,17,13,"跨区域综述揭示气候变化对全球粮食安全的系统性冲击，并提出以公平为核心的适应框架，对农业政策与气候韧性建设具参考价值。",[62],{"name":53,"url":50},[26,27,64,28,65],"气候变化","农业适应",[67,68],"气候智慧型农业 农业适应 气候变化 粮食安全","气候智慧型农业 农业适应","气候智慧型农业农业适应气候变化粮食安全-2508","10.56201\u002Fjbgr.vol.11.no4.2025.pg88.95",{"doi":70,"openalex_id":72,"authors":73,"venue":53,"cited_by_count":34,"oa_url":76,"card":77,"direction":42,"ingested_from":43},"W7212575816",[74],{"name":75,"orcid":8},"Ahmed Farida Mohammed","https:\u002F\u002Fiiardjournals.org\u002Fget\u002FJBGR\u002FVOL. 11 NO. 4 2025\u002FFood Insecurity The Hungry 88-95.pdf",{"tldr":78,"method":79,"finding":80,"direction":81,"opportunity":82},"综述气候变化与粮食不安全的复杂关联，提出以公平为中心的综合应对框架。","基于近期实证研究与跨区域数据，分析环境、经济和社会维度。","气候冲击对妇女、儿童、原住民和小农影响尤甚，需将粮食安全嵌入各级气候政策。","农业绿色发展与碳","可量化气候智能农业与水资源管理对弱势群体粮食安全的公平性效益，填补政策评估空白。","2026-09-15T23:30:08.313374Z",{"id":85,"title":86,"url":87,"summary":88,"summary_zh":89,"content":8,"source_name":90,"source_url":87,"published_at":10,"category":11,"cover_url":8,"hotness":91,"is_selected":13,"score":92,"score_detail":93,"sources":97,"tags":101,"search_phrases":105,"slug":108,"view_count":34,"doi":109,"paper":110,"created_at":133},2931,"UNDERSTANDING THE CONSTRAINTS OF CLIMATE-SMART AGRICULTURE AMONG SMALLHOLDER FARMERS IN SOUTHWESTERN NIGERIA","https:\u002F\u002Fdoi.org\u002F10.5281\u002Fzenodo.22832901","Climate-smart agriculture (CSA) has gained increasing attention as an approach for improving agricultural productivity and strengthening the resilience of farming systems to climate variability and change. However, the willingness of farmers to embrace CSA does not necessarily translate into implementation. This study examined the factors influencing the willingness of 190 smallholder farmers in Akinyele Local Government Area of Oyo State, southwestern Nigeria, to implement CSA, the principal constraints to implementation, sources of agricultural information, institutional support and farmers' preferred strategies for strengthening implementation among 190 smallholder farmers in Akinyele Local Government Area of Oyo State, southwestern Nigeria. Data were collected using a structured questionnaire and analysed mainly with frequencies and percentages, while ordered response-scale variables were summarised with appropriate scale-based measures. Cost of implementation was the most frequently identified factor influencing willingness (32.7%), followed by knowledge and information (28.4%) and resources (22.6%). Cost was also the dominant implementation constraint (54.7%), followed by uncertainty about the effectiveness of CSA practices (25.8%) and difficulty learning new techniques (19.5%). Most respondents (94.7%) reported receiving some form of agricultural or institutional support, although financial assistance accounted for only 13.7% of the reported support. Government extension officers were the principal source of agricultural information (55.3%), while government incentives or subsidies were the most preferred strategy for strengthening implementation (50.5%). Demonstration farms and farmer field schools were the most preferred learning approaches (32.6% each). The findings indicate that the central challenge is not simply awareness or willingness but farmers' capacity to convert willingness into practical action. Therefore, strengthening CSA implementation requires coordinated financial, technical, informational, and institutional support rather than awareness creation alone.","气候智慧型农业(CSA)作为提高农业生产力和增强农业系统对气候变率与气候变化适应力的方法，日益受到关注。然而，农民接受气候智慧型农业的意愿并不必然转化为实际实施。本研究考察了尼日利亚西南部奥约州阿基涅莱地方政府区190户小农户实施气候智慧型农业意愿的影响因素、实施的主要制约因素、农业信息来源、制度支持以及农民偏好用于加强实施的策略。数据通过结构化问卷收集，主要以频数和百分比进行分析，有序响应量表变量则采用适当的量表测量指标进行汇总。实施成本是影响意愿最常被提及的因素(32.7%)，其次是知识和信息(28.4%)以及资源(22.6%)。成本也是主要的实施制约因素(54.7%)，其次是对气候智慧型农业实践有效性的不确定性(25.8%)和学习新技术的困难(19.5%)。大多数受访者(94.7%)报告获得了某种形式的农业或制度支持，尽管财政援助仅占所报告支持的13.7%。政府推广人员是农业信息的主要来源(55.3%)，而政府激励或补贴是加强实施最受偏好的策略(50.5%)。示范农场和农民田间学校是最受偏好的学习方式(各占32.6%)。研究结果表明，核心挑战不仅仅是意识或意愿问题，而是农民将意愿转化为实际行动的能力。因此，加强气候智慧型农业的实施需要协调的财政、技术、信息和制度支持，而非仅仅开展意识宣传。","Zenodo (CERN European Organization for Nuclear Research)",25,62,{"impact":16,"substance":17,"depth":94,"authority":95,"freshness":12,"relevant":21,"comment":96},14,12,"基于190户小农户问卷的实证研究，揭示气候智慧型农业落地瓶颈在于成本与能力而非意愿，对农业推广信息化有参考价值，但属区域性案例、影响层级有限。",[98,99],{"name":90,"url":87},{"name":90,"url":100},"https:\u002F\u002Fdoi.org\u002F10.5281\u002Fzenodo.22832902",[27,28,102,103,104],"农业推广","尼日利亚","农业信息获取",[106,107],"尼日利亚 小农户 气候智慧型农业","Oyo State 农业推广 信息","尼日利亚小农户气候智慧型农业-2931","10.5281\u002Fzenodo.22832901",{"doi":109,"openalex_id":111,"authors":112,"venue":90,"cited_by_count":34,"oa_url":87,"card":127,"direction":42,"ingested_from":43},"W7213579850",[113,115,117,119,121,123,125],{"name":114,"orcid":8},"Folasade J. Odekunle",{"name":116,"orcid":8},"Jechoniah AGABI",{"name":118,"orcid":8},"Adedotun A. Adetunji",{"name":120,"orcid":8},"Omotunde M. KILASHO",{"name":122,"orcid":8},"Idris O. JINADU",{"name":124,"orcid":8},"Gabriel O. Adebayo",{"name":126,"orcid":8},"Adedayo S. Adediran",{"tldr":128,"method":129,"finding":130,"direction":131,"opportunity":132},"研究尼日利亚小农户实施气候智慧农业的意愿、制约因素与支持需求。","对190户小农户问卷调查，用频数和百分比等描述性统计分析。","成本是首要制约，核心挑战在于农户将意愿转化为行动的能力不足。","数字乡村与农业信息化","可探索数字信息服务和金融支持如何协同提升小农户CSA实施能力。","2026-09-19T23:30:11.397222Z",{"id":135,"title":136,"url":137,"summary":138,"summary_zh":139,"content":8,"source_name":140,"source_url":137,"published_at":141,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":142,"score_detail":143,"sources":146,"tags":148,"search_phrases":152,"slug":155,"view_count":34,"doi":156,"paper":157,"created_at":176},2637,"Determinants of CSA Adoption in Coastal Bangladesh: An Application of Structural Path Analysis","https:\u002F\u002Fdoi.org\u002F10.59978\u002Far04030018","Climate-smart agriculture (CSA) is widely promoted to reconcile productivity, resilience, and emissions goals among smallholder farmers, yet adoption of capital-intensive CSA technologies remains low and uneven in climate-vulnerable coastal agriculture. This study examines socio-demographic, institutional, and behavioral determinants of CSA adoption among farming households in selected coastal districts of Bangladesh. This cross-sectional study interviewed 386 farmers from 3 selected coastal districts of Bangladesh following a multi-stage random sampling. Results were interpreted using descriptive statistics, Spearman’s correlation, adoption-difficulty (quadrant) analysis, and structural path analysis. Adoption levels varied widely across 30 CSA practices. Low-cost, knowledge-based practices such as raised bed homestead gardening, airtight seed storage, and heat and salinity-tolerant crops were widely adopted, whereas capital-intensive technologies such as poly-net houses, solar irrigation, and the sorjan method remained rare. Extension communication showed the strongest association with extension strategies for promoting CSA (β = 0.551), whereas strategies for promoting CSA, knowledge of CSA, and climate change perception were important predictors of CSA adoption. Importantly, the ICT usage had a negative relationship with climate change perception, indicating a digital paradox whereby the higher connectivity does not lead to a better understanding of the issues related to climate change. The research shows that there is a necessity for combined extension approaches based on face-to-face extension efforts, participatory learning platforms, and credible digital technologies combined with strong farmer organizations for increasing CSA adoption in coastal Bangladesh.","气候智慧型农业(CSA)被广泛推广，以期在小农户中协调生产力、韧性与排放目标，但在气候脆弱的沿海农业中，资本密集型CSA技术的采用率仍然较低且不均衡。本研究考察了孟加拉国部分沿海地区农户采用CSA的社会人口、制度与行为决定因素。本横断面研究采用多阶段随机抽样方法，访谈了孟加拉国3个选定沿海地区的386名农民。研究结果通过描述性统计、斯皮尔曼相关分析、采用难度(象限)分析和结构路径分析进行解读。30项CSA实践的采用水平差异很大。低成本、知识型实践，如高垄庭院种植、密封种子储藏以及耐热耐盐作物，被广泛采用；而资本密集型技术，如Poly-net温室、太阳能灌溉和sorjan法，则仍然很少见。推广沟通与促进CSA的推广策略关联最强(β = 0.551)，而促进CSA的策略、CSA知识和气候变化认知是CSA采用的重要预测因素。重要的是，信息通信技术(ICT)使用与气候变化认知呈负相关，表明存在一种数字悖论，即更高的连通性并未带来对气候变化相关问题更好的理解。研究表明，有必要采取综合推广方式，以面对面推广工作、参与式学习平台和可信数字技术为基础，并结合强大的农民组织，以提高孟加拉国沿海地区对CSA的采用。","Agricultural & Rural Studies","2026-09-16T00:00:00Z",73,{"impact":95,"substance":144,"depth":58,"authority":59,"freshness":12,"relevant":21,"comment":145},21,"基于386户问卷的结构路径分析，揭示ICT使用与气候变化认知的“数字悖论”，对气候智慧型农业推广与数字乡村建设有实证参考价值。",[147],{"name":140,"url":137},[149,27,150,151,28],"农业信息化","农技推广","数字鸿沟",[153,154],"气候智慧型农业 农业信息化 农技推广 数字鸿沟","气候智慧型农业 农业信息化","气候智慧型农业农业信息化农技推广数字鸿沟-2637","10.59978\u002Far04030018",{"doi":156,"openalex_id":158,"authors":159,"venue":140,"cited_by_count":34,"oa_url":137,"card":171,"direction":42,"ingested_from":43},"W7213241723",[160,163,166,168],{"name":161,"orcid":162},"Md. Sumon Howlader","https:\u002F\u002Forcid.org\u002F0009-0009-8951-3307",{"name":164,"orcid":165},"Md. Mamun-ur-Rashid","https:\u002F\u002Forcid.org\u002F0000-0001-7632-1829",{"name":167,"orcid":8},"Md. Kamrul Hasan",{"name":169,"orcid":170},"Md. Ektear Uddin","https:\u002F\u002Forcid.org\u002F0000-0002-8003-8134",{"tldr":172,"method":173,"finding":174,"direction":131,"opportunity":175},"研究孟加拉沿海农户气候智慧型农业(CSA)采纳的社会、制度与行为决定因素。","386户多阶段随机抽样，用描述统计、Spearman相关、象限分析和结构路径分析","推广沟通影响最强；ICT使用与气候变化认知负相关，存在数字悖论。","可探究ICT使用为何未提升气候认知，检验数字鸿沟、信息质量与信任的中介机制。","2026-09-16T23:30:09.724808Z",{"id":178,"title":179,"url":180,"summary":181,"summary_zh":182,"content":8,"source_name":183,"source_url":180,"published_at":184,"category":11,"cover_url":8,"hotness":12,"is_selected":13,"score":142,"score_detail":185,"sources":188,"tags":190,"search_phrases":192,"slug":195,"view_count":34,"doi":196,"paper":197,"created_at":208},1826,"Challenges and opportunities in adopting climate-smart agricultural practices and technologies: implications for food security","https:\u002F\u002Fdoi.org\u002F10.1080\u002F09537325.2026.2723505","Smallholder farmers in East Africa face growing climate risks from rainfall variability and droughts. Using the Sustainable Livelihoods Framework, this study examined how livelihood capital influences Climate-Smart Agriculture (CSA) adoption and household food security. The study proposes a capital threshold hypothesis, suggesting that households require sufficient livelihood capital endowments to overcome adoption barriers and successfully implement CSA practices. Data from 600 households across three districts were analyzed with an Endogenous Switching Regression model to address selection bias and endogeneity. Results showed major adoption barriers, including limited credit (48%) and inadequate technical training (28%). CSA adoption increased Household Dietary Diversity Scores by 19.5% and reduced Food Insecurity Experience Scale scores by 41.6%. Adopters possessed stronger human and physical capital. Policies should expand weather-index micro-insurance programs.","东非小农户正面临由降雨变率和干旱带来的日益增长的气候风险。本研究运用可持续生计框架，考察生计资本如何影响气候智能型农业的采纳及农户粮食安全。研究提出资本阈值假说，认为农户需具备充足的生计资本禀赋，方能克服采纳障碍并成功实施气候智能型农业实践。采用内生转换回归模型对三个地区的600户农户数据进行分析，以处理选择偏差和内生性问题。结果显示，主要采纳障碍包括信贷有限（48%）和技术培训不足（28%）。气候智能型农业的采纳使家庭膳食多样性得分提高19.5%，并将粮食不安全体验量表得分降低41.6%。采纳者拥有更强的人力资本和物质资本。政策应扩大天气指数微型保险计划。","Technology Analysis and Strategic Management","2026-09-05T00:00:00Z",{"impact":17,"substance":57,"depth":17,"authority":95,"freshness":186,"relevant":21,"comment":187},3,"研究揭示东非小农户采纳气候智慧农业的资本门槛，量化增产与减饥效果，对农业科技推广有参考价值。",[189],{"name":183,"url":180},[26,27,191],"气候智慧农业",[193,194],"气候智慧农业 粮食安全 小农户","气候智慧农业 粮食安全","气候智慧农业粮食安全小农户-1826","10.1080\u002F09537325.2026.2723505",{"doi":196,"openalex_id":198,"authors":199,"venue":183,"cited_by_count":34,"oa_url":8,"card":203,"direction":42,"ingested_from":43},"W7208831289",[200],{"name":201,"orcid":202},"Yanmei Gao","https:\u002F\u002Forcid.org\u002F0009-0009-8396-9178",{"tldr":204,"method":205,"finding":206,"direction":81,"opportunity":207},"研究东非小农户采用气候智慧农业的影响因素及其对粮食安全的作用。","可持续生计框架、内生转换回归模型，分析600户数据。","CSA采用提高饮食多样性19.5%，降低粮食不安全41.6%，但受信贷和培训限制。","可探索气候智慧农业采用的门槛效应，以及如何通过政策干预提升小农户资本禀赋。","2026-09-07T23:30:08.945197Z",{"id":210,"title":211,"url":212,"summary":213,"summary_zh":214,"content":8,"source_name":215,"source_url":212,"published_at":216,"category":11,"cover_url":8,"hotness":217,"is_selected":13,"score":218,"score_detail":219,"sources":222,"tags":229,"search_phrases":231,"slug":233,"view_count":34,"doi":234,"paper":235,"created_at":250},1825,"Do productivity and income gains from climate-smart agriculture practices translate into food security? Evidence from smallholder farmers in central Malawi","https:\u002F\u002Fdoi.org\u002F10.6084\u002Fm9.figshare.33441414","Climate-smart agriculture (CSA) is widely promoted to improve smallholder livelihoods under increasing climate risks, yet evidence on impacts beyond productivity, particularly multidimensional food security, remains limited. This study examines determinants of adoption of selected CSA practices and their effects on maize productivity, farm income, food expenditure share, and dietary diversity among 510 smallholder households in Kasungu District, central Malawi. Using 2023 cross-sectional survey data, we employ a multinomial endogenous switching regression model to address potential selection bias across eight mutually exclusive adoption options based on three CSA practices. Gender of the household head, extension participation, and cooperative membership are significantly associated with adoption, with female-headed households more likely to adopt multiple-practice combinations. Average treatment effect on the treated (ATT) estimates indicate significant maize-yield and farm-income gains for certain options relative to the estimated non-adoption counterfactual. However, no practice option shows a statistically significant ATT estimate for dietary diversity measured by the Food Consumption Score, indicating a disconnect between estimated farm-income gains and dietary outcomes. The findings suggest that CSA may support productivity and income, but complementary nutrition-sensitive interventions may be needed to achieve multidimensional food security.","气候智能型农业（CSA）被广泛推广以在日益加剧的气候风险下改善小农户生计，然而关于其超越生产力层面影响（尤其是多维粮食安全）的证据仍然有限。本研究考察了马拉维中部卡松古区510户小农户采纳特定CSA实践的决定因素及其对玉米生产力、农场收入、食品支出份额和膳食多样性的影响。利用2023年横截面调查数据，我们采用多项内生转换回归模型，以解决基于三种CSA实践形成的八种互斥采纳选项中的潜在选择偏差。户主性别、推广参与和合作社成员身份与采纳行为显著相关，其中女性户主家庭更倾向于采纳多种实践组合。处理组平均处理效应（ATT）估计表明，相对于估计的非采纳反事实情景，某些选项在玉米产量和农场收入方面具有显著增益。然而，没有任何实践选项在食品消费得分衡量的膳食多样性方面显示出统计显著的ATT估计值，这表明估计的农场收入增益与膳食结果之间存在脱节。研究结果表明，CSA可能有助于提高生产力和收入，但实现多维粮食安全可能需要补充营养敏感型干预措施。","Figshare","2026-09-06T00:00:00Z",40,64,{"impact":95,"substance":57,"depth":17,"authority":12,"freshness":220,"relevant":21,"comment":221},2,"研究揭示CSA增产增收但未改善膳食多样性，对政策制定有参考价值。",[223,224,227],{"name":215,"url":212},{"name":225,"url":226},"Cogent Food & Agriculture","https:\u002F\u002Fdoi.org\u002F10.1080\u002F23311932.2026.2725385",{"name":215,"url":228},"https:\u002F\u002Fdoi.org\u002F10.6084\u002Fm9.figshare.33441414.v1",[230,26,27,191],"非洲",[232,194],"气候智慧农业 粮食安全 小农户 非洲","气候智慧农业粮食安全小农户非洲-1825","10.6084\u002Fm9.figshare.33441414",{"doi":234,"openalex_id":236,"authors":237,"venue":215,"cited_by_count":34,"oa_url":212,"card":244,"direction":42,"ingested_from":43},"W7210263968",[238,240,242],{"name":239,"orcid":8},"Jinwon Suh",{"name":241,"orcid":8},"Seongtae Ji",{"name":243,"orcid":8},"Tabitha C. Nindi-Chigwe",{"tldr":245,"method":246,"finding":247,"direction":248,"opportunity":249},"研究气候智能农业对马拉维小农户粮食安全的影响，发现其提升产量和收入但未改善膳食多样性。","使用2023年横截面调查数据，采用多项式内生转换回归模型分析510户农户。","气候智能农业提高玉米产量和农场收入，但对膳食多样性无显著影响，需营养敏感干预。","农业人工智能与决策模型","可探索将营养指标纳入CSA推广评估，或设计结合营养干预的农业技术组合，以弥合收入与膳食鸿沟。","2026-09-07T23:30:08.624334Z",{"id":252,"title":253,"url":254,"summary":255,"summary_zh":8,"content":256,"source_name":257,"source_url":8,"published_at":258,"category":259,"cover_url":8,"hotness":12,"is_selected":13,"score":260,"score_detail":261,"sources":266,"tags":268,"search_phrases":273,"slug":276,"view_count":34,"doi":8,"paper":8,"created_at":277},2978,"活力中国调研行·华中农大洪山实验室：\"超级玉米\"蛋白超12% 2026年全国预计突破100万亩","https:\u002F\u002Fnews.youth.cn\u002Fjsxw\u002F202609\u002Ft20260916_16873086.htm","中青报9-18报道湖北洪山实验室由湖北省政府批复组建、华中农业大学牵头建设，聚焦生物育种领域服务国家粮食安全战略。华中农业大学严建兵教授团队在高蛋白玉米领域取得重大突破，培育出蛋白含量超12%的\"超级玉米\"，2026年全国种植面积预计突破100万亩，通过AI育种和基因调控技术实现\"高产、高蛋白、低氮肥\"的协同提升，能替代部分进口大豆。","【活力中国调研行】湖北“超级玉米”有望缓解我国大豆进口压力\n\n发稿时间：2026-09-16 23:22:00 来源： 中国青年报客户端\n\n[Video 4](https:\u002F\u002Fres-cyol.m.youth.cn\u002Fimage\u002Fvideo\u002F20260916\u002Fd4d45dbdd7b14edbb38c5ffadabedc98.mp4?_t=1789862722779)\nClick to unmute\n\nError occured while playing， Please close or refresh\n\ncode:4400\n\nuuid:78F35B7B-6E27-49BF-8BCE-566E352329F3\n\nrequestId(player):1CC2E66F-8304-4298-A657-C31561807883\n\nTime:2026-09-20 00:05:22\n\n提示信息\n\n9月15日，记者在参加“活力中国调研行”主题采访时来到湖北洪山实验室。该实验室由湖北省政府批复组建，华中农业大学牵头建设，聚焦生物育种领域，服务国家粮食安全战略。它与30余家企业深化合作，推动一批科技成果加速转化落地。截至 2026年9月，华中农业大学严建兵教授团队在高蛋白玉米领域取得重大突破，培育出蛋白含量超12%的“超级玉米”，2026年全国种植面积预计突破100万亩？。这项成果不仅能替代部分进口大豆，还通过AI育种和基因调控技术实现了“高产、高蛋白、低氮肥”的协同提升。（中青报·中青网见习记者 杨蕾 记者 雷宇 实习生 李婉婷）\n\n责任编辑：张毅\n\n首页|上一页 1 下一页|尾页","中国青年网","2026-09-18T13:12:00Z","报道",83,{"impact":262,"substance":144,"depth":263,"authority":59,"freshness":264,"relevant":21,"comment":265},26,16,7,"央媒报道的全国性种业重大突破，蛋白含量与推广面积数据具体，AI育种与替代进口大豆的产业价值突出，值得进入每日精选。",[267],{"name":257,"url":254},[269,270,26,271,272],"农业人工智能","种业振兴","生物育种","高蛋白玉米",[274,275],"华中农业大学 高蛋白玉米 超级玉米","洪山实验室 严建兵 生物育种","华中农业大学高蛋白玉米超级玉米-2978","2026-09-20T00:03:00.760930Z"]