{"@context":"https://schema.org","@type":"NewsArticle","generatedAt":"2026-07-28T06:20:51.496Z","headline":"我国科学家实现植物免疫受体精准定制化设计，成果登上《科学》","description":"中国科学院遗传与发育生物学研究所高彩霞团队首次提出\"可编程植物合成免疫\"新理念，并建立合成植物免疫受体设计平台。团队利用AlphaFold 3和BindCraft等AI工具，针对13种植物病毒及细菌、真菌等病原蛋白设计391个合成受体，其中71个（成功率18.2%）能特异识别靶标并激活免疫反应。经植物体内定向进化系统（GRAPE）优化的合成受体在转基因本氏烟草中展现了对番茄褐色皱果病毒的有效抗性。","url":"https://www.aioga.com/news/cmry5ypd2008groeukblzmd7f/","mainEntityOfPage":"https://www.aioga.com/news/cmry5ypd2008groeukblzmd7f/","datePublished":"2026-07-23T23:10:44.000Z","dateModified":"2026-07-23T23:10:44.000Z","inLanguage":"zh-CN","publisher":{"@type":"NewsMediaOrganization","name":"Aioga","url":"https://www.aioga.com"},"citation":["https://www.ithome.com/0/980/885.htm","https://aihot.virxact.com/items/cmry5ypd2008groeukblzmd7f"],"canonicalUrl":"https://www.aioga.com/news/cmry5ypd2008groeukblzmd7f/","directAnswer":{"@type":"Answer","text":"Aioga 编辑摘要：中国科学院遗传与发育生物学研究所高彩霞团队首次提出\"可编程植物合成免疫\"新理念，并建立合成植物免疫受体设计平台。 Aioga 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3和BindCraft等AI工具，针对13种植物病毒及细菌、真菌等病原蛋白设计391个合成受体，其中71个（成功率18.2%）能特异识别靶标并激活免疫反应。经植物体内定向进化系统（GRAPE）优化的合成受体在转基因本氏烟草中展现了对番茄褐色皱果病毒的有效抗性。","source":"IT之家（RSS）","sourceUrl":"https://www.ithome.com/0/980/885.htm","aiHotUrl":"https://aihot.virxact.com/items/cmry5ypd2008groeukblzmd7f","publishedAt":"2026-07-23T23:10:44.000Z","category":"论文研究","score":39,"selected":false,"articleBody":["IT之家：https://www.ithome.com/ 7 月 24 日消息，据央视新闻报道，中国科学院遗传与发育生物学研究所高彩霞研究员团队在植物免疫工程领域取得重大突破，首次提出“可编程植物合成免疫”新理念。","该团队成功建立了可编程的合成植物免疫受体设计平台，实现了植物免疫受体的精准定制化设计。相关研究成果于今日凌晨在《科学》以“首次在线发布”形式发表。","植物病害每年造成数千亿美元的经济损失。传统作物抗病育种高度依赖对天然抗病基因的发掘与利用，但植物基因组编码的免疫受体数量有限，且病原物持续进化变异，导致已有抗病性不断被攻破。针对这一难题，研究团队整合了人工智能辅助蛋白质设计、模块化免疫受体工程和植物体内定向进化技术。","植物 NLR 免疫受体是植物免疫系统的核心组分，主要通过高度重复的富亮氨酸重复结构域来检测病原体，传统方法难以对其进行工程化改造。此次研究利用了一类通过紧凑型模块化集成诱饵结构域识别病原体的 NLR 受体，该结构域可被新设计的病原识别模块替换。","具体实施中，团队利用 AlphaFold 3 和 BindCraft 等 AI 辅助蛋白质工具，针对病原蛋白从头设计结合蛋白，并将其整合到水稻免疫受体 Pikm-1 中，构建形成全新的合成免疫受体。整个设计过程无需依赖已有抗病基因资源，仅基于病原蛋白的结构信息即可开展。团队以马铃薯 Y 病毒衣壳蛋白为验证靶标，设计 48 个合成受体，其中 11 个能特异性识别靶标并激活免疫反应。在此基础上，团队进一步针对 13 种重要植物病毒以及细菌、真菌、卵菌等多种病原物的蛋白完成了相应设计。","研究团队共设计并测试了 391 个合成植物免疫受体，其中 71 个（成功率 18.2%）能够特异识别对应病原蛋白并有效激活植物免疫反应，首次证明了 AI 辅助的蛋白质设计技术可实现植物免疫受体的从头创制。针对部分设计存在的免疫活性不足或自激活问题，团队利用其前期建立的植物体内定向进化系统（GRAPE）对受体进行了优化。经优化的合成免疫受体在转基因本氏烟草中展现出了对番茄褐色皱果病毒的有效抗性。","论文通讯作者高彩霞研究员表示，该研究突破了天然抗病基因资源的限制，为快速应对植物新发病害和病原物变异提供了全新技术路线。","她透露，未来随着 AI、蛋白质设计与体内定向进化等技术的深度融合，植物合成免疫受体有望完全实现按需设计与迭代优化。《科学》审稿人评价称，该成果为在作物中开发持久、广谱的抗病性奠定了坚实基础。","IT之家附论文地址： https://doi.org/10.1126/science.aee1792 ：https://doi.org/10.1126/science.aee1792"],"articleImages":[{"sourceUrl":"https://img.ithome.com/newsuploadfiles/2026/7/963c5231-4477-4959-ab22-c3a9298a9096.jpg?x-bce-process=image/format,f_auto","alt":"","afterParagraph":1,"url":"/media/articles/cmry5ypd2008groeukblzmd7f/98edb5fc15cc7188.jpg"}],"mediaStatus":"ok","articleBodyZh":[],"translationStatus":"","bodyOrigin":"source-page","editorial":{"summary":"Aioga 编辑摘要：中国科学院遗传与发育生物学研究所高彩霞团队首次提出\"可编程植物合成免疫\"新理念，并建立合成植物免疫受体设计平台。 Aioga 将其归入「论文研究」方向，重点关注它对真实使用和行业竞争的影响。","background":"背景分析：模型与研究类动态需要结合能力边界、开放方式、成本、可用性和真实任务表现判断，单项指标领先不等于已经形成稳定采用。","viewpoint":"Aioga 判断：这条动态更适合作为行业观察信号，当前信息足以建立线索，但不足以推导长期结论。","implications":"影响分析：对相关团队而言，短期应先核对来源、可用范围和实际成本，再判断是否值得接入或跟进。","nextStep":"后续观察：继续观察官方文档、实际可用性、价格变化、开发者反馈和竞品回应。","evidenceRefs":["title","summary","articleBody"],"confidence":"medium","status":"published","aiGenerated":false,"autoApproved":true,"generatedBy":"rule-safe-fallback","generatedAt":"2026-07-28T06:29:10.568Z","sourceHash":"86d3a2420056119c","validation":{"passed":true,"mode":"rule-safe-fallback","checks":["schema","length","source-attribution","no-html"]}},"tags":["论文研究","IT之家（RSS）"],"translations":{"zh-CN":{"title":"我国科学家实现植物免疫受体精准定制化设计，成果登上《科学》","summary":"中国科学院遗传与发育生物学研究所高彩霞团队首次提出\"可编程植物合成免疫\"新理念，并建立合成植物免疫受体设计平台。团队利用AlphaFold 3和BindCraft等AI工具，针对13种植物病毒及细菌、真菌等病原蛋白设计391个合成受体，其中71个（成功率18.2%）能特异识别靶标并激活免疫反应。经植物体内定向进化系统（GRAPE）优化的合成受体在转基因本氏烟草中展现了对番茄褐色皱果病毒的有效抗性。","category":"论文研究","source":"IT之家","aggregationSource":"IT之家（RSS）","pageTitle":"我国科学家实现植物免疫受体精准定制化设计，成果登上《科学》 - Aioga AI资讯","description":"中国科学院遗传与发育生物学研究所高彩霞团队首次提出\"可编程植物合成免疫\"新理念，并建立合成植物免疫受体设计平台。团队利用AlphaFold 3和BindCraft等AI工具，针对13种植物病毒及细菌、真菌等病原蛋白设计391个合成受体，其中71个（成功率18.2%）能特异识别靶标并激活免疫反应。经植物体内定向进化系统（GRAPE）优化的合成受体在转基因本氏烟...","url":"https://www.aioga.com/news/cmry5ypd2008groeukblzmd7f/"},"en":{"title":"Chinese scientists achieve precise customization of plant immune receptors, results published in 'Science'","summary":"The research team led by Gao Caixia at the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, proposed for the first time the new concept of 'programmable plant immunity' and established a synthetic plant immune receptor design platform. The team used AI tools such as AlphaFold 3 and BindCraft to design 391 synthetic receptors targeting 13 plant viruses as well as bacterial and fungal pathogen proteins, of which 71 (an 18.2% success rate) were able to specifically recognize targets and activate immune responses. Synthetic receptors optimized through the in planta directed evolution system (GRAPE) demonstrated effective resistance to Tomato brown rugose fruit virus in transgenic Nicotiana benthamiana.","category":"Research","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Chinese scientists achieve precise customization of plant immune receptors, results published in 'Science' - Aioga AI News","description":"The research team led by Gao Caixia at the Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, proposed for the first time the new concept of 'programmabl...","url":"https://www.aioga.com/en/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:02:32.936Z"},"ja":{"title":"我が国の科学者が植物の免疫受容体の正確なカスタマイズ設計を実現し、その成果が『サイエンス』に掲載される","summary":"中国科学院遺伝・発生生物学研究所の高彩霞チームは初めて「プログラム可能な植物合成免疫」という新しい概念を提唱し、合成植物免疫受容体設計プラットフォームを構築しました。チームはAlphaFold 3やBindCraftなどのAIツールを用いて、13種類の植物ウイルスおよび細菌、真菌などの病原タンパク質を対象に391個の合成受容体を設計し、そのうち71個（成功率18.2％）が標的を特異的に認識し免疫反応を活性化することができました。植物体内の方向性進化システム（GRAPE）で最適化された合成受容体は、遺伝子組換えニコチアナ・ベンシス（ベンチタバコ）でトマト褐変わり皺果ウイルスに対する有効な抵抗性を示しました。","category":"論文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"我が国の科学者が植物の免疫受容体の正確なカスタマイズ設計を実現し、その成果が『サイエンス』に掲載される - Aioga AIニュース","description":"中国科学院遺伝・発生生物学研究所の高彩霞チームは初めて「プログラム可能な植物合成免疫」という新しい概念を提唱し、合成植物免疫受容体設計プラットフォームを構築しました。チームはAlphaFold 3やBindCraftなどのAIツールを用いて、13種類の植物ウイルスおよび細菌、真菌などの病原タンパク質を対象に391個の合成受容体を設計し、そのうち71個（成功率...","url":"https://www.aioga.com/ja/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:02:42.028Z"},"ko":{"title":"우리나라 과학자들이 식물 면역 수용체의 정밀 맞춤형 설계를 실현했으며, 그 성과가 《사이언스》에 게재되었다","summary":"중국과학원 유전 및 발달생물학연구소 고채하 팀은 처음으로 '프로그래밍 가능한 식물 합성 면역'이라는 새로운 개념을 제안하고, 합성 식물 면역 수용체 설계 플랫폼을 구축했습니다. 팀은 AlphaFold 3와 BindCraft 등의 AI 도구를 활용하여 13종의 식물 바이러스와 박테리아, 곰팡이 등 병원체 단백질을 대상으로 391개의 합성 수용체를 설계했으며, 이 중 71개(성공률 18.2%)가 표적을 특이적으로 인식하고 면역 반응을 활성화할 수 있었습니다. 식물체 내 지향적 진화 시스템(GRAPE)으로 최적화된 합성 수용체는 형질전환 니코티아 벤시스에서 토마토 갈색주름병 바이러스에 대한 효과적인 저항성을 나타냈습니다.","category":"연구","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"우리나라 과학자들이 식물 면역 수용체의 정밀 맞춤형 설계를 실현했으며, 그 성과가 《사이언스》에 게재되었다 - Aioga AI 뉴스","description":"중국과학원 유전 및 발달생물학연구소 고채하 팀은 처음으로 '프로그래밍 가능한 식물 합성 면역'이라는 새로운 개념을 제안하고, 합성 식물 면역 수용체 설계 플랫폼을 구축했습니다. 팀은 AlphaFold 3와 BindCraft 등의 AI 도구를 활용하여 13종의 식물 바이러스와 박테리아, 곰팡이 등 병원체 단백질을 대상으로...","url":"https://www.aioga.com/ko/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:03:33.055Z"},"es":{"title":"Científicos de nuestro país logran el diseño personalizado preciso de receptores de inmunidad de plantas, los resultados fueron publicados en 'Science'","summary":"El equipo de Gao Caixia del Instituto de Biología Genética y del Desarrollo de la Academia China de Ciencias propuso por primera vez el nuevo concepto de \"inmunidad vegetal programable\" y estableció una plataforma de diseño de receptores de inmunidad vegetal sintética. El equipo utilizó herramientas de IA como AlphaFold 3 y BindCraft para diseñar 391 receptores sintéticos dirigidos a proteínas patógenas de 13 tipos de virus, así como bacterias y hongos, de los cuales 71 (con una tasa de éxito del 18,2%) pudieron reconocer específicamente los objetivos y activar la respuesta inmune. Los receptores sintéticos optimizados mediante el sistema de evolución dirigida en plantas (GRAPE) mostraron resistencia efectiva al virus del marchitamiento marrón del tomate en tabaco transgénico.","category":"Investigación","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Científicos de nuestro país logran el diseño personalizado preciso de receptores de inmunidad de plantas, los resultados fueron publicados en 'Science' - Aioga Noticias de IA","description":"El equipo de Gao Caixia del Instituto de Biología Genética y del Desarrollo de la Academia China de Ciencias propuso por primera vez el nuevo concepto de \"inmunidad vegetal program...","url":"https://www.aioga.com/es/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:03:21.591Z"},"fr":{"title":"Les scientifiques chinois ont réalisé une conception personnalisée précise des récepteurs immunitaires des plantes, leurs résultats ont été publiés dans « Science »","summary":"L'équipe de Gao Caixia de l'Institut de biologie génétique et du développement de l'Académie chinoise des sciences a proposé pour la première fois le nouveau concept de \"immunité synthétique programmable des plantes\" et a établi une plateforme de conception de récepteurs immunitaires synthétiques pour les plantes. L'équipe a utilisé des outils d'IA tels qu'AlphaFold 3 et BindCraft pour concevoir 391 récepteurs synthétiques ciblant les protéines pathogènes de 13 types de virus, bactéries et champignons de plantes, parmi lesquels 71 (taux de réussite de 18,2 %) peuvent reconnaître spécifiquement la cible et activer la réponse immunitaire. Les récepteurs synthétiques optimisés par le système d'évolution dirigée dans les plantes (GRAPE) ont montré une résistance efficace au virus de l'enroulement brun du fruit de tomate chez le tabac de Nicotiana transgénique.","category":"Recherche","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Les scientifiques chinois ont réalisé une conception personnalisée précise des récepteurs immunitaires des plantes, leurs résultats ont été publiés dans « Science » - Aioga Actualités IA","description":"L'équipe de Gao Caixia de l'Institut de biologie génétique et du développement de l'Académie chinoise des sciences a proposé pour la première fois le nouveau concept de \"immunité s...","url":"https://www.aioga.com/fr/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:04:11.135Z"},"de":{"title":"Chinesische Wissenschaftler haben ein genaues, maßgeschneidertes Design von Pflanzen-Immunrezeptoren realisiert, die Ergebnisse wurden in „Science“ veröffentlicht","summary":"Das Team von Gao Caixia am Institut für Genetik und Entwicklungsbiologie der Chinesischen Akademie der Wissenschaften schlug erstmals das neue Konzept der \"programmierbaren pflanzlichen Syntheseimmunität\" vor und etablierte eine Plattform zur Gestaltung synthetischer pflanzlicher Immunrezeptoren. Das Team nutzte KI-Tools wie AlphaFold 3 und BindCraft, um 391 synthetische Rezeptoren gegen 13 Pflanzenviren sowie gegen bakterielle und pilzliche Pathogenproteine zu entwerfen, von denen 71 (Erfolgsquote 18,2%) das Ziel spezifisch erkennen und eine Immunreaktion auslösen konnten. Die mittels des in vivo pflanzlichen gerichteten Evolutionssystems (GRAPE) optimierten synthetischen Rezeptoren zeigten in transgenen Tabakpflanzen eine wirksame Resistenz gegen das Tomatenmosaikvirus.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Chinesische Wissenschaftler haben ein genaues, maßgeschneidertes Design von Pflanzen-Immunrezeptoren realisiert, die Ergebnisse wurden in „Science“ veröffentlicht - Aioga KI-News","description":"Das Team von Gao Caixia am Institut für Genetik und Entwicklungsbiologie der Chinesischen Akademie der Wissenschaften schlug erstmals das neue Konzept der \"programmierbaren pflanzl...","url":"https://www.aioga.com/de/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:04:09.618Z"},"pt-BR":{"title":"Cientistas do nosso país conseguiram projetar com precisão receptores de imunidade de plantas, pesquisa publicada na 'Science'","summary":"A equipe liderada por Gao Caixia do Instituto de Genética e Biologia do Desenvolvimento da Academia Chinesa de Ciências propôs pela primeira vez o novo conceito de 'imunidade vegetal programável' e estabeleceu uma plataforma de design de receptores imunes vegetais sintéticos. A equipe utilizou ferramentas de IA como AlphaFold 3 e BindCraft para projetar 391 receptores sintéticos direcionados a proteínas patogênicas de 13 tipos de vírus vegetais, bem como bactérias e fungos, dos quais 71 (taxa de sucesso de 18,2%) conseguiram reconhecer especificamente os alvos e ativar a resposta imune. Os receptores sintéticos otimizados pelo sistema de evolução direcionada em plantas (GRAPE) mostraram resistência eficaz ao vírus da mancha marrom do tomate em tabaco transgênico Nicotiana benthamiana.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Cientistas do nosso país conseguiram projetar com precisão receptores de imunidade de plantas, pesquisa publicada na 'Science' - Aioga Notícias de IA","description":"A equipe liderada por Gao Caixia do Instituto de Genética e Biologia do Desenvolvimento da Academia Chinesa de Ciências propôs pela primeira vez o novo conceito de 'imunidade veget...","url":"https://www.aioga.com/pt-BR/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:04:48.402Z"},"ru":{"title":"Китайские ученые достигли точного индивидуального проектирования иммунных рецепторов растений, результат опубликован в журнале «Science»","summary":"Команда Гао Цайся из Института генетики и развития Китайской академии наук впервые предложила новую концепцию «программируемого синтетического иммунитета растений» и создала платформу для проектирования синтетических иммунных рецепторов растений. Команда с использованием таких AI-инструментов, как AlphaFold 3 и BindCraft, спроектировала 391 синтетический рецептор для 13 видов вирусов растений, а также для белков патогенов бактерий и грибов, из которых 71 (успешность 18,2%) смогли специфически распознавать мишень и активировать иммунный ответ. Синтетические рецепторы, оптимизированные с помощью системы направленной эволюции в растениях (GRAPE), продемонстрировали эффективный уровень устойчивости к томатному вирусу бронзовой морщинистой плодов в трансгенной табаке Беншэна.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Китайские ученые достигли точного индивидуального проектирования иммунных рецепторов растений, результат опубликован в журнале «Science» - Aioga Новости ИИ","description":"Команда Гао Цайся из Института генетики и развития Китайской академии наук впервые предложила новую концепцию «программируемого синтетического иммунитета растений» и создала платфо...","url":"https://www.aioga.com/ru/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:04:53.724Z"},"ar":{"title":"حقق العلماء في بلادنا تصميمًا دقيقًا حسب الطلب لمستقبلات مناعة النباتات، وظهرت النتائج في مجلة «ساينس»","summary":"اقترحت فريق Gao Caixia من معهد البيولوجيا الوراثية والتطورية التابع للأكاديمية الصينية للعلوم لأول مرة مفهوم \"المناعة النباتية القابلة للبرمجة\"، وأقام منصة لتصميم مستقبلات المناعة النباتية الاصطناعية. استخدم الفريق أدوات الذكاء الاصطناعي مثل AlphaFold 3 وBindCraft لتصميم 391 مستقبلًا اصطناعيًا بناءً على بروتينات مسببات الأمراض الخاصة بـ 13 نوعًا من فيروسات النباتات والبكتيريا والفطريات، منها 71 مستقبلًا (بنسبة نجاح 18.2%) يمكنها التعرف بشكل محدد على الهدف وتنشيط الاستجابة المناعية. وقد أظهرت المستقبلات الاصطناعية التي تم تحسينها عبر نظام التطور الموجه داخل النبات (GRAPE) مقاومة فعالة لفيروس التفلطح البني للطماطم في نبات التبغ المعدل وراثيًا.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"حقق العلماء في بلادنا تصميمًا دقيقًا حسب الطلب لمستقبلات مناعة النباتات، وظهرت النتائج في مجلة «ساينس» - Aioga أخبار الذكاء الاصطناعي","description":"اقترحت فريق Gao Caixia من معهد البيولوجيا الوراثية والتطورية التابع للأكاديمية الصينية للعلوم لأول مرة مفهوم \"المناعة النباتية القابلة للبرمجة\"، وأقام منصة لتصميم مستقبلات المناعة...","url":"https://www.aioga.com/ar/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:05:34.175Z"},"hi":{"title":"हमारे देश के वैज्ञानिकों ने पौधों की रोग प्रतिरोधक रिसेप्टर की सटीक कस्टम डिजाइनिंग में सफलता पाई, और यह उपलब्धि 'साइंस' में प्रकाशित हुई","summary":"चीन के विज्ञान अकादमी के जेनेटिक्स और डेवलपमेंटल बायोलॉजी रिसर्च इंस्टीट्यूट की गाओ कैइक्सिया टीम ने पहली बार 'प्रोग्राम किए जाने योग्य पौधों की सिंथेटिक इम्यूनिटी' की नई अवधारणा पेश की और सिंथेटिक प्लांट इम्यून रिसेप्टर डिज़ाइन प्लेटफ़ॉर्म स्थापित किया। टीम ने AlphaFold 3 और BindCraft जैसी AI टूल्स का उपयोग करके 13 प्रकार के पौधों के वायरस और बैक्टीरिया, कवक आदि रोगजनक प्रोटीन के लिए 391 सिन्थेटिक रिसेप्टर डिज़ाइन किए, जिनमें से 71 (सफलता दर 18.2%) विशिष्ट रूप से लक्षित पहचान कर सकते हैं और इम्यून प्रतिक्रिया को सक्रिय कर सकते हैं। पौधे के शरीर में डायरेक्टेड इवोल्यूशन सिस्टम (GRAPE) द्वारा अनुकूलित सिंथेटिक रिसेप्टर ने ट्रांसजेनिक निकोटियाना टैबैकम में टमाटर ब्राउन रिंग वायरस के खिलाफ प्रभावी प्रतिरोध दिखाया।","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"हमारे देश के वैज्ञानिकों ने पौधों की रोग प्रतिरोधक रिसेप्टर की सटीक कस्टम डिजाइनिंग में सफलता पाई, और यह उपलब्धि 'साइंस' में प्रकाशित हुई - Aioga AI समाचार","description":"चीन के विज्ञान अकादमी के जेनेटिक्स और डेवलपमेंटल बायोलॉजी रिसर्च इंस्टीट्यूट की गाओ कैइक्सिया टीम ने पहली बार 'प्रोग्राम किए जाने योग्य पौधों की सिंथेटिक इम्यूनिटी' की नई अवधारणा प...","url":"https://www.aioga.com/hi/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:05:44.744Z"},"it":{"title":"I nostri scienziati hanno realizzato la progettazione precisa e personalizzata dei recettori immunitari delle piante, e i risultati sono stati pubblicati su \"Science\"","summary":"Il team di Gao Caixia dell'Istituto di Biologia Genetica e dello Sviluppo dell'Accademia Cinese delle Scienze ha proposto per la prima volta il nuovo concetto di \"immunità vegetale programmabile\" e ha istituito una piattaforma per la progettazione di recettori immunitari vegetali sintetici. Il team ha utilizzato strumenti di intelligenza artificiale come AlphaFold 3 e BindCraft per progettare 391 recettori sintetici contro proteine patogene di 13 tipi di virus vegetali, batteri e funghi, dei quali 71 (tasso di successo del 18,2%) sono stati in grado di riconoscere specificamente il bersaglio e attivare la risposta immunitaria. I recettori sintetici ottimizzati tramite il sistema di evoluzione diretta in vivo (GRAPE) hanno mostrato una resistenza efficace contro il virus del mosaico marrone del pomodoro nel tabacco di Nicotiana transgenico.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"I nostri scienziati hanno realizzato la progettazione precisa e personalizzata dei recettori immunitari delle piante, e i risultati sono stati pubblicati su \"Science\" - Aioga Notizie IA","description":"Il team di Gao Caixia dell'Istituto di Biologia Genetica e dello Sviluppo dell'Accademia Cinese delle Scienze ha proposto per la prima volta il nuovo concetto di \"immunità vegetale...","url":"https://www.aioga.com/it/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:06:28.710Z"},"nl":{"title":"Onze Chinese wetenschappers hebben een nauwkeurige op maat gemaakte ontwerp van plantaire immuunreceptoren gerealiseerd, resultaat gepubliceerd in 'Science'","summary":"Het team van Gao Caixia van het Instituut voor Genetica en Ontwikkelingsbiologie van de Chinese Academie van Wetenschappen heeft voor het eerst het nieuwe concept van 'programmeermiddelbare synthetische plantimmuniteit' voorgesteld en een ontwerpplatform voor synthetische plantimmuniteitsreceptoren opgezet. Het team gebruikte AI-instrumenten zoals AlphaFold 3 en BindCraft om 391 synthetische receptoren te ontwerpen gericht op de eiwitten van 13 soorten plantvirussen en bacteriën, schimmels en andere pathogenen, waarvan 71 (een succespercentage van 18,2%) het doel specifiek konden herkennen en een immuunrespons konden activeren. De door het plantaardig gericht evolutiesysteem (GRAPE) geoptimaliseerde synthetische receptoren toonden effectieve resistentie tegen het tomatenbruinrimpelvirus in transgene Nicotiana tabacum.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Onze Chinese wetenschappers hebben een nauwkeurige op maat gemaakte ontwerp van plantaire immuunreceptoren gerealiseerd, resultaat gepubliceerd in 'Science' - Aioga AI-nieuws","description":"Het team van Gao Caixia van het Instituut voor Genetica en Ontwikkelingsbiologie van de Chinese Academie van Wetenschappen heeft voor het eerst het nieuwe concept van 'programmeerm...","url":"https://www.aioga.com/nl/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:06:27.772Z"},"tr":{"title":"Çinli bilim insanlarımız bitki bağışıklık reseptörlerinin hassas şekilde özel tasarımını gerçekleştirdi, sonuçlar \"Science\" dergisinde yayınlandı","summary":"Çin Bilimler Akademisi Genetik ve Gelişim Biyolojisi Araştırma Enstitüsü'nden Gao Caixia ekibi, ilk kez 'programlanabilir bitki sentetik bağışıklığı' yeni kavramını ortaya koydu ve sentetik bitki bağışıklık reseptörü tasarım platformu kurdu. Ekip, AlphaFold 3 ve BindCraft gibi AI araçlarını kullanarak 13 tür bitki virüsü ile bakteri ve mantar gibi patojen proteinler için 391 sentetik reseptör tasarladı; bunlardan 71'i (%18,2 başarı oranı) hedefi özgül şekilde tanıyıp bağışıklık yanıtını aktive edebiliyordu. Bitki içi yönlendirilmiş evrim sistemi (GRAPE) ile optimize edilen sentetik reseptörler, transgenik Nicotiana benthamiana'da domates kahverengi buruşuk meyve virüsüne karşı etkili direnci gösterdi.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Çinli bilim insanlarımız bitki bağışıklık reseptörlerinin hassas şekilde özel tasarımını gerçekleştirdi, sonuçlar \"Science\" dergisinde yayınlandı - Aioga AI Haberleri","description":"Çin Bilimler Akademisi Genetik ve Gelişim Biyolojisi Araştırma Enstitüsü'nden Gao Caixia ekibi, ilk kez 'programlanabilir bitki sentetik bağışıklığı' yeni kavramını ortaya koydu ve...","url":"https://www.aioga.com/tr/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:07:10.747Z"},"vi":{"title":"Các nhà khoa học của nước tôi đã thực hiện thiết kế tùy chỉnh chính xác thụ thể miễn dịch thực vật, kết quả được đăng trên tạp chí 《Science》","summary":"Nhóm nghiên cứu của Cao Caixia tại Viện Di truyền và Sinh học Phát triển, Viện Khoa học Trung Quốc lần đầu tiên đề xuất khái niệm mới 'Miễn dịch tổng hợp lập trình cho thực vật' và xây dựng nền tảng thiết kế thụ thể miễn dịch tổng hợp cho thực vật. Nhóm đã sử dụng các công cụ AI như AlphaFold 3 và BindCraft để thiết kế 391 thụ thể tổng hợp nhắm vào protein gây bệnh của 13 loại virus thực vật cũng như vi khuẩn, nấm, trong đó 71 thụ thể (tỷ lệ thành công 18,2%) có thể nhận diện đặc hiệu mục tiêu và kích hoạt phản ứng miễn dịch. Các thụ thể tổng hợp được tối ưu thông qua hệ thống tiến hóa định hướng trong cơ thể thực vật (GRAPE) đã thể hiện khả năng kháng hiệu quả đối với Virus quả nâu nhăn của cà chua trong cây thuốc lá biến đổi gen Nicotiana benthamiana.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Các nhà khoa học của nước tôi đã thực hiện thiết kế tùy chỉnh chính xác thụ thể miễn dịch thực vật, kết quả được đăng trên tạp chí 《Science》 - Tin tức AI Aioga","description":"Nhóm nghiên cứu của Cao Caixia tại Viện Di truyền và Sinh học Phát triển, Viện Khoa học Trung Quốc lần đầu tiên đề xuất khái niệm mới 'Miễn dịch tổng hợp lập trình cho thực vật' và...","url":"https://www.aioga.com/vi/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:07:08.496Z"},"id":{"title":"Ilmuwan kita mencapai desain kustomisasi presisi reseptor imun tanaman, hasilnya dimuat di 'Science'","summary":"Tim Gao Caixia dari Institut Penelitian Genetika dan Biologi Perkembangan, Akademi Ilmu Pengetahuan Tiongkok, untuk pertama kalinya mengusulkan konsep baru 'imunitas tanaman yang dapat diprogram' dan membangun platform desain reseptor imunitas sintetis tanaman. Tim ini menggunakan alat AI seperti AlphaFold 3 dan BindCraft untuk merancang 391 reseptor sintetis yang menargetkan 13 jenis virus tanaman serta protein patogen seperti bakteri dan jamur, di antaranya 71 reseptor (tingkat keberhasilan 18,2%) mampu mengenali sasaran secara spesifik dan mengaktifkan respons imun. Reseptor sintetis yang dioptimalkan melalui sistem evolusi terarah di dalam tanaman (GRAPE) menunjukkan ketahanan efektif terhadap Tomato Brown Rugose Fruit Virus pada tembakau transgenik Nicotiana benthamiana.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Ilmuwan kita mencapai desain kustomisasi presisi reseptor imun tanaman, hasilnya dimuat di 'Science' - Berita AI Aioga","description":"Tim Gao Caixia dari Institut Penelitian Genetika dan Biologi Perkembangan, Akademi Ilmu Pengetahuan Tiongkok, untuk pertama kalinya mengusulkan konsep baru 'imunitas tanaman yang d...","url":"https://www.aioga.com/id/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:07:52.923Z"},"th":{"title":"นักวิทยาศาสตร์ของประเทศเราสามารถออกแบบตัวรับภูมิคุ้มกันของพืชได้อย่างแม่นยำ ผลงานถูกตีพิมพ์บนวารสาร Science","summary":"ทีมงานของเกาหไซ่เซียจากสถาบันวิจัยพันธุศาสตร์และชีววิทยาการพัฒนาแห่งสถาบันวิทยาศาสตร์จีนเป็นครั้งแรกที่เสนอแนวคิดใหม่ \"ภูมิคุ้มกันพืชที่สามารถโปรแกรมได้\" และได้สร้างแพลตฟอร์มการออกแบบตัวรับภูมิคุ้มกันพืชแบบสังเคราะห์ ทีมงานใช้เครื่องมือ AI เช่น AlphaFold 3 และ BindCraft ในการออกแบบตัวรับสังเคราะห์ 391 ชนิดสำหรับโปรตีนของเชื้อโรค 13 ชนิด ได้แก่ ไวรัสพืช แบคทีเรีย และเชื้อรา ซึ่งในจำนวนนี้ 71 ชนิด (อัตราความสำเร็จ 18.2%) สามารถจดจำเป้าหมายเฉพาะและกระตุ้นการตอบสนองภูมิคุ้มกัน ตัวรับสังเคราะห์ที่ได้รับการปรับปรุงโดยระบบวิวัฒนาการที่กำหนดทิศทางในพืช (GRAPE) แสดงให้เห็นถึงความต้านทานที่มีประสิทธิภาพต่อไวรัสมะเขือเทศสีน้ำตาลย่นในกระท่อมยาสูบดัดแปลงพันธุกรรม","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"นักวิทยาศาสตร์ของประเทศเราสามารถออกแบบตัวรับภูมิคุ้มกันของพืชได้อย่างแม่นยำ ผลงานถูกตีพิมพ์บนวารสาร Science - ข่าว AI Aioga","description":"ทีมงานของเกาหไซ่เซียจากสถาบันวิจัยพันธุศาสตร์และชีววิทยาการพัฒนาแห่งสถาบันวิทยาศาสตร์จีนเป็นครั้งแรกที่เสนอแนวคิดใหม่ \"ภูมิคุ้มกันพืชที่สามารถโปรแกรมได้\" และได้สร้างแพลตฟอร์มการออก...","url":"https://www.aioga.com/th/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:08:00.108Z"},"pl":{"title":"Chińscy naukowcy osiągnęli precyzyjne projektowanie receptorów odpornościowych roślin, a wyniki opublikowano w \"Science\"","summary":"Zespół Gao Caixia z Instytutu Badań nad Genetyką i Biologią Rozwojową Chińskiej Akademii Nauk po raz pierwszy zaproponował nową koncepcję „programowalnej odporności roślin” i stworzył platformę projektowania syntetycznych receptorów odporności roślin. Zespół wykorzystał narzędzia AI takie jak AlphaFold 3 i BindCraft do zaprojektowania 391 syntetycznych receptorów skierowanych przeciw 13 rodzajom wirusów roślinnych oraz białkom patogenów takich jak bakterie i grzyby, z czego 71 (wskaźnik sukcesu 18,2%) mogło specyficznie rozpoznawać cele i aktywować reakcję odpornościową. Syntetyczne receptory zoptymalizowane za pomocą systemu ewolucji ukierunkowanej w roślinie (GRAPE) wykazały skuteczną odporność na wirusa brązowego karłowatego pomidora w genetycznie zmodyfikowanym tytoniu.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Chińscy naukowcy osiągnęli precyzyjne projektowanie receptorów odpornościowych roślin, a wyniki opublikowano w \"Science\" - Aioga Wiadomości AI","description":"Zespół Gao Caixia z Instytutu Badań nad Genetyką i Biologią Rozwojową Chińskiej Akademii Nauk po raz pierwszy zaproponował nową koncepcję „programowalnej odporności roślin” i stwor...","url":"https://www.aioga.com/pl/news/cmry5ypd2008groeukblzmd7f/","contentTranslated":true,"sourceHash":"61f392228b7a3e63","translatedAt":"2026-07-28T00:08:45.600Z"}}}}