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“电子榨菜”与媒介化社会中的情感症候
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作者 于思蕊 韩婷婷 《视听》 2025年第3期108-112,共5页
在媒介化社会中,媒介对社会进行全方位的渗透与影响。《甄嬛传》作为媒介化社会诞生的影视作品,不仅较为成功地取得海外用户的喜爱,更是成为国内年轻群体热衷的“电子榨菜”,并衍生出一系列“甄文化”“甄学家”,显著表现为网友以“放... 在媒介化社会中,媒介对社会进行全方位的渗透与影响。《甄嬛传》作为媒介化社会诞生的影视作品,不仅较为成功地取得海外用户的喜爱,更是成为国内年轻群体热衷的“电子榨菜”,并衍生出一系列“甄文化”“甄学家”,显著表现为网友以“放大镜式观看”来反复咀嚼这部出品十多年的影视作品。“电子榨菜”存在真我丧失与媒介依赖、休闲的异化与隐藏的自我劳动等隐患。“电子榨菜”现象不仅揭示了媒介化对个人心理和行为的影响,也反映了社会文化变迁的深层次动因。 展开更多
关键词 《甄嬛传》 甄学家 “电子榨菜 媒介化社会 情感劳动
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乳酸菌接种发酵对泡榨菜风味品质的影响
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作者 陈文碧 刘心发 +3 位作者 史梅莓 杨姗 程钰宸 伍亚龙 《食品与发酵科技》 2025年第1期25-33,共9页
该研究以植物乳植杆菌(Lactiplantibacillus plantarum)YQ-01、肠膜明串珠菌肠膜亚种(Leuconostoc mesenteroides subsp. Mesenteroides)PC137、发酵粘液乳杆菌(Limosilactobacillus fermentum)PC0118进行单菌及其不同多菌组合接种发酵... 该研究以植物乳植杆菌(Lactiplantibacillus plantarum)YQ-01、肠膜明串珠菌肠膜亚种(Leuconostoc mesenteroides subsp. Mesenteroides)PC137、发酵粘液乳杆菌(Limosilactobacillus fermentum)PC0118进行单菌及其不同多菌组合接种发酵泡榨菜,分析发酵过程中pH值、总酸、乳酸菌数量、挥发性风味成分的变化和感官品质评价。研究结果表明,与自然发酵相比,植物乳植杆菌YQ-01及其不同多菌组合表现出更好的发酵性能。采用顶空固相微萃取-气相色谱-质谱联用技术共检出挥发性风味物质51种,醇类和酯类物质是泡榨菜的主要挥发性风味成分;发酵后期,单菌组中LP组和Leu.m组、多菌组中L-F组和L-E组具有刺激性气味的异硫氰酸酯类物质的含量更低;主成分结果显示,接菌发酵泡榨菜其挥发性风味和自然发酵差异明显。综合各指标及感官品质评价认为:接种植物乳植杆菌YQ-01和肠膜明串珠菌肠膜亚种PC137的泡榨菜的酸味、脆度、香气等感官指标较优。研究结果可为人工接种发酵泡榨菜及其工业化应用提供理论数据。 展开更多
关键词 榨菜 植物乳植杆菌 肠膜明串珠菌肠膜亚种 发酵粘液乳杆菌 挥发性风味成分
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胖袋榨菜中1株产气微生物的分离和鉴定
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作者 IQRA 李静 +3 位作者 刘玉凌 陈孝勇 贺稚非 杨吉霞 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第9期97-104,共8页
胖袋是榨菜货架期常见的质量问题,为了获得引起胖袋的微生物种类和生理生化性质数据,从胖袋榨菜中分离纯化微生物,经过三糖铁、煌绿胆盐肉汤实验筛选出产气菌株,用榨菜污染实验验证,进一步分析菌株的生理生化性质.通过研究确定1株菌株c... 胖袋是榨菜货架期常见的质量问题,为了获得引起胖袋的微生物种类和生理生化性质数据,从胖袋榨菜中分离纯化微生物,经过三糖铁、煌绿胆盐肉汤实验筛选出产气菌株,用榨菜污染实验验证,进一步分析菌株的生理生化性质.通过研究确定1株菌株cq8,在煌绿胆盐肉汤培养基中产气,污染袋装榨菜并且抽真空封袋,引起胖袋,经检测气体为CO_(2),H_(2),NH_(3),用16S rRNA基因测序鉴定为阿氏肠杆菌(Enterobacter asburia),它可以代谢精氨酸产气,利用山梨醇,产生蛋白酶使明胶液化,产生过氧化氢酶. 展开更多
关键词 榨菜 胖袋 产气 污染实验 阿氏肠杆菌
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HS-SPME-GC-MS/MS结合非靶向代谢组学分析涪陵榨菜发酵过程中挥发性成分
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作者 卢春霞 徐俊豪 +7 位作者 余杰 尤晓慧 陈亚 李朝盛 李红敏 姬勇 唐宗贵 罗路云 《食品科学》 EI CAS CSCD 北大核心 2024年第20期206-213,共8页
为探究涪陵榨菜在“三腌三榨”加工过程中挥发性成分的差异情况,通过非靶向代谢组学结合气相色谱-串联质谱技术与多元统计学方法,分析并探讨了涪陵榨菜在自发酵过程中挥发性代谢物的变化及其显著差异代谢途径。结果表明,不同腌制阶段榨... 为探究涪陵榨菜在“三腌三榨”加工过程中挥发性成分的差异情况,通过非靶向代谢组学结合气相色谱-串联质谱技术与多元统计学方法,分析并探讨了涪陵榨菜在自发酵过程中挥发性代谢物的变化及其显著差异代谢途径。结果表明,不同腌制阶段榨菜中共检测到627种挥发性成分,主要包括烃类、酯类、杂环化合物、萜类、醛类、酮类、醇类、芳烃、酚类、胺类、含硫化合物、酸类、卤代烃、含氮化合物等。不同腌制阶段榨菜中差异显著挥发性成分存在较大差异,一腌阶段与对照组的特有差异挥发性成分为157个,二腌与一腌阶段组的特有差异挥发性成分为28个,三腌与二腌阶段组的特有差异挥发性成分为1个。经京都基因与基因组百科全书通路分析,差异挥发性成分显著富集的代谢通路包括次生代谢产物的生物合成、二萜类生物合成、单萜类生物合成、咖啡因代谢、脂肪酸生物合成等。本研究从代谢组学的角度分析了发酵榨菜的特异代谢产物,可为涪陵榨菜的标准化生产提供理论依据。 展开更多
关键词 涪陵榨菜 气相色谱-串联质谱 非靶向代谢组学 挥发性成分
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农产品区域公用品牌生态圈成长路径及形成机理——基于涪陵榨菜的纵向案例研究 被引量:3
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作者 李佛关 黄玲丹 张燚 《宏观质量研究》 CSSCI 2024年第4期115-128,共14页
农产品区域公用品牌建设是促进农业经济发展和实现乡村产业振兴的重要抓手。本文以农产品区域公用品牌生态圈作为研究对象,基于涪陵榨菜的纵向案例,运用扎根理论对农产品区域公用品牌生态圈成长路径及形成机理进行了探索性研究。涪陵榨... 农产品区域公用品牌建设是促进农业经济发展和实现乡村产业振兴的重要抓手。本文以农产品区域公用品牌生态圈作为研究对象,基于涪陵榨菜的纵向案例,运用扎根理论对农产品区域公用品牌生态圈成长路径及形成机理进行了探索性研究。涪陵榨菜农产品区域公用品牌生态圈的成长历程可分为品牌培育(2000年以前)、品牌注册与成长(2000-2009年)、品牌生态圈(2010年至今)三个阶段。研究发现:在品牌培育阶段,受实业救国思潮、改革开放、市场需求等因素的促进,核心主体政府协同企业、科研机构、合作组织、农户等相关主体,在榨菜种植加工技术探索、优良品种培育、加工等方面发挥了重要作用,涪陵榨菜得以孕育和发展;在品牌注册与成长阶段,在产业布局分散、加工技术落后、品牌少而弱等发展压力下,通过发挥政府的核心主体作用,龙头企业、合作社、科研机构、农户等的重要主体作用,涪陵榨菜得以注册和成长;在品牌生态圈阶段,在消费升级、利润率下降、产品同质化严重等发展压力下,通过发挥企业的核心主体作用,政府的重要(或边缘)主体作用,龙头企业、合作社、科研机构、农户等的重要主体作用,涪陵榨菜品牌生态圈得以形成和继续发展。 展开更多
关键词 农产品区域公用品牌 生态圈 涪陵榨菜 成长路径 机理
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Molecular mechanism of flowering time regulation in Brassica rapa:similarities and differences with Arabidopsis 被引量:1
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作者 Na Li Rui Yang +1 位作者 Shuxing Shen Jianjun Zhao 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第3期615-628,共14页
Properly regulated flowering time is pivotal for successful plant reproduction.The floral transition from vegetative growth to reproductive growth is regulated by a complex gene regulatory network that integrates envi... Properly regulated flowering time is pivotal for successful plant reproduction.The floral transition from vegetative growth to reproductive growth is regulated by a complex gene regulatory network that integrates environmental signals and internal conditions to ensure that flowering takes place under favorable conditions.Brassica rapa is a diploid Cruciferae species that includes several varieties that are cultivated as vegetable or oil crops.Flowering time is one of the most important agricultural traits of B.rapa crops because of its influence on yield and quality.The transition to flowering in B.rapa is regulated by several environmental and developmental cues,which are perceived by several signaling pathways,including the vernalization pathway,the autonomous pathway,the circadian clock,the thermosensory pathway,and gibberellin(GA)signaling.These signals are integrated to control the expression of floral integrators BrFTs and BrSOC1s to regulate flowering.In this review,we summarized current research advances on the molecular mechanisms that govern flowering time regulation in B.rapa and compare this to what is known in Arabidopsis. 展开更多
关键词 Flowering time brassica rapa VERNALIZATION PHOTOPERIOD
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Utilizing resequencing big data to facilitate Brassica vegetable breeding:tracing introgression pedigree and developing highly specific markers for clubroot resistance 被引量:1
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作者 Zhiyong Ren Jinquan Li +5 位作者 Xingyu Zhang Xingxu Li Junhong Zhang Zhibiao Ye Yuyang Zhang Qijun Nie 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第3期771-783,共13页
Clubroot caused by Plasmodiophora brassicae is a devastating disease of Cruciferous crops.Developing cultivars with clubroot resistance(CR)is the most effective control measure.For the two major Brassica vegetable spe... Clubroot caused by Plasmodiophora brassicae is a devastating disease of Cruciferous crops.Developing cultivars with clubroot resistance(CR)is the most effective control measure.For the two major Brassica vegetable species B.rapa and B.oleracea,several commercial cultivars with unclear CR pedigrees have been intensively used as CR donors in breeding.However,the continuous occurrence of CR-breaking makes the CR pedigree underlying these cultivars one of the breeders'most urgent concerns.The complex intraspecific diversity of these two major Brassica vegetables has also limited the applicability of CR markers in different breeding programs.Here we first traced the pedigree underlying two kinds of CR that have been widely applied in breeding by linkage and introgression analyses based on public resequencing data.In B.rapa,a major locus CRzi8 underlying the CR of the commercial CR donor‘DegaoCR117’was identified.CRzi8 was further shown to have been introgressed from turnip(B.rapa ssp.rapifera)and that it carried a potential functional allele of Crr1a.The turnip introgression carried CRb^(c),sharing the same coding sequence with the CRb that was also identified from chromosome C07 of B.oleracea CR cultivars with different morphotypes.Within natural populations,variation analysis of linkage intervals of CRzi8,PbBa8.1,CRb,and CRb^(c)yielded easily resolved InDel markers(>20 bp)for these fundamental CR genes.The specificity of these markers was tested in diverse cultivars panels,and each exhibited high reliability in breeding.Our research demonstrates the value of the practice of applying resequencing big data to solve urgent concerns in breeding programs. 展开更多
关键词 brassica Clubroot resistance RESEQUENCING Introgression analysis Molecular marker
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BnaWRKY75 positively regulates the resistance against Sclerotinia sclerotiorum in ornamental Brassica napus 被引量:1
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作者 Kexin Yu Yijie Zhang +4 位作者 Xiaoyuan Fei Luyue Ma Rehman Sarwar Xiaoli Tan Zheng Wang 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第3期784-796,共13页
With the development of tourism at home and abroad,Rapeseed(Brassica napus)has become an important ornamental plant.However,its ornamental value at the inflorescence stage is greatly reduced by Sclerotinia sclerotioru... With the development of tourism at home and abroad,Rapeseed(Brassica napus)has become an important ornamental plant.However,its ornamental value at the inflorescence stage is greatly reduced by Sclerotinia sclerotiorum.Identification of important genes in the defense responses is critical for molecular breeding,which is an important strategy for controlling the disease.In this study,we isolated a B.napus WRKY transcription factor gene,BnaWRKY75.BnaWRKY75 was found to encode a nucleus-localized protein and exhibited relatively high expression in the stems.Arabidopsis thaliana transgenic plants expressing BnaWRKY75 showed enhanced resistance to S.sclerotiorum,and both ProBnaWRKY75:GUS and gene expression analyses showed that BnaWRKY75 was highly responsive to S.sclerotiorum infection,indicating the involvement of BnaWRKY75 in response to this infection.Furthermore,overexpression(OE)of BnaWRKY75 in B.napus significantly enhanced the resistance to S.sclerotiorum,whereas the resistance was reduced in RNAi transgenic B.napus plants.Moreover,the BnaWRKY75-OE B.napus plants exhibited constitutive activation of salicylic acid-,jasmonic acid-,and ethylene-mediated defense responses and the inhibition of both H_(2)O_(2)and O_(2)·^(-)accumulation in response to this pathogen.By contrast,BnaWRKY75-RNAi plants showed a reverse pattern,suggesting that BnaWRKY75 is involved in hormonal signaling pathways and in the control of reactive oxygen species accumulation.In conclusion,these data indicate that BnaWRKY75,a regulator of multiple defense responses,positively regulates resistance against S.sclerotiorum,which may guide the improvement of resistance in rapeseed. 展开更多
关键词 brassica napus BnaWRKY75 Defense response Sclerotinia sclerotiorum
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Heterogeneous expression of stearoyl-acyl carrier protein desaturase genes SAD1 and SAD2 from Linum usitatissimum enhances seed oleic acid accumulation and seedling cold and drought tolerance in Brassica napus 被引量:1
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作者 Jianjun Wang Yanan Shao +4 位作者 Xin Yang Chi Zhang Yuan Guo Zijin Liu Mingxun Chen 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第6期1864-1878,共15页
Flax(Linum usitatissimum L.)is a versatile crop and its seeds are a major source of unsaturated fatty acids.Stearoyl-acyl carrier protein desaturase(SAD)is a dehydrogenase enzyme that plays a key role in oleic acid bi... Flax(Linum usitatissimum L.)is a versatile crop and its seeds are a major source of unsaturated fatty acids.Stearoyl-acyl carrier protein desaturase(SAD)is a dehydrogenase enzyme that plays a key role in oleic acid biosynthesis as well as responses to biotic and abiotic stresses.However,the function of SAD orthologs from L.usitatissimum has not been assessed.Here,we found that two LuSAD genes,LuSAD1 and LuSAD2,are present in the genome of L.usitatissimum cultivar‘Longya 10’.Heterogeneous expression of either LuSAD1 or LuSAD2 in Arabidopsis thaliana resulted in higher contents of total fatty acids and oleic acid in the seeds.Interestingly,ectopic expression of LuSAD2 in A.thaliana caused altered plant architecture.Similarly,the overexpression of either LuSAD1 or LuSAD2 in Brassica napus also resulted in increased contents of total fatty acids and oleic acid in the seeds.Furthermore,we demonstrated that either LuSAD1 or LuSAD2 enhances seedling resistance to cold and drought stresses by improving antioxidant enzyme activity and nonenzymatic antioxidant levels,as well as reducing membrane damage.These findings not only broaden our knowledge of the LuSAD functions in plants,but also offer promising targets for improving the quantity and quality of oil,and the abiotic stress tolerance of oil-producing crops,through molecular manipulation. 展开更多
关键词 LuSAD oleic acid cold tolerance drought tolerance Linum usitatissimum brassica napus
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过表达榨菜BjuJAZ8增强拟南芥对盐胁迫的敏感性
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作者 蔡兆明 程春红 +1 位作者 余红 王殿东 《西北植物学报》 CAS CSCD 北大核心 2024年第11期1743-1751,共9页
【目的】榨菜具有较高的经济价值,探讨榨菜中茉莉酸信号通路基因JAZ8在植物响应盐胁迫的功能可为培育榨菜抗逆品种提供基因资源。【方法】采用生物信息学方法分析榨菜JAZ8的基因结构、启动子顺式作用元件以及所编码蛋白的理化性质;采用... 【目的】榨菜具有较高的经济价值,探讨榨菜中茉莉酸信号通路基因JAZ8在植物响应盐胁迫的功能可为培育榨菜抗逆品种提供基因资源。【方法】采用生物信息学方法分析榨菜JAZ8的基因结构、启动子顺式作用元件以及所编码蛋白的理化性质;采用分子生物学技术克隆榨菜JAZ8基因并构建其过表达载体;采用转基因技术在模式植物拟南芥中过表达榨菜JAZ8基因并分析该基因在拟南芥响应盐胁迫过程中的具体功能。【结果】榨菜JAZ8基因蛋白编码序列全长396 bp,编码131个氨基酸,含有TIFY和CCT-2结构域;该基因启动子含有响应脱落酸、水杨酸及参与防御和应激反应的顺式作用元件;转基因植株表型分析结果表明,过表达榨菜JAZ8的拟南芥植株在萌发和转绿阶段表现为对盐胁迫更加敏感的表型。【结论】过表达榨菜JAZ8可增强拟南芥对盐胁迫的敏感性。 展开更多
关键词 榨菜 BjuJAZ8 盐胁迫 基因功能
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电子榨菜:青年精神生活的时代表征、现实成因及理性审视 被引量:1
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作者 冯惠芳 《北京青年研究》 2024年第1期57-65,共9页
青年的精神生活需要电子产品提供的娱乐性活动,满足青年的虚拟想象与现实情感的寄托。电子榨菜充斥着青年的用餐时光,经历了电视、手机为主要媒介的两个发展阶段。从时代表征来看,电子榨菜呈现为速食时代的精神快消品,视像时代的多文本... 青年的精神生活需要电子产品提供的娱乐性活动,满足青年的虚拟想象与现实情感的寄托。电子榨菜充斥着青年的用餐时光,经历了电视、手机为主要媒介的两个发展阶段。从时代表征来看,电子榨菜呈现为速食时代的精神快消品,视像时代的多文本创作,网络时代的参与式文化与数字时代的沉浸式体验。媒介依赖、时间抵抗、空间重组与孤独代偿是青年电子榨菜现象的现实成因。本文采用一分为二的观点,辩证地看待青年电子榨菜现象,厘清正向影响与负向影响,理性审视电子榨菜现象,借助媒介内容的变革,努力为青年提供更优质的精神生活产品。 展开更多
关键词 青年 精神生活 电子榨菜
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媒介化社会中的“电子榨菜”:生成逻辑与本质探析 被引量:1
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作者 侯博 《传媒》 CSSCI 2024年第8期93-95,共3页
“电子榨菜”指人们在就餐时收听或观看的音视频等——具有“榨菜”下饭性质的各类媒介文化产品。作为深度媒介化社会的文化现象,其产生具有必然逻辑。传播学理论可以系统诠释“电子榨菜”现象的生成逻辑及其内在本质。技术可供、内容... “电子榨菜”指人们在就餐时收听或观看的音视频等——具有“榨菜”下饭性质的各类媒介文化产品。作为深度媒介化社会的文化现象,其产生具有必然逻辑。传播学理论可以系统诠释“电子榨菜”现象的生成逻辑及其内在本质。技术可供、内容吸引和用户需要是“电子榨菜”现象产生的原因要素。媒介依赖的数字劳动、忙碌生活的文化速食和情感空虚的心理寄托则是“电子榨菜”的本质体现。 展开更多
关键词 电子榨菜 精神交往 媒介依赖 文化速食 心理寄托
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数字经济背景下宁波余姚榨菜新零售营销模式创新研究 被引量:3
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作者 张琳琳 《食品研究与开发》 CAS 2024年第3期I0003-I0005,共3页
近年来,数字技术的快速发展不仅为传统产业提供了新的增长机遇,同时也带来了全新的商业营销模式。宁波余姚榨菜作为传统农产品加工业的代表之一,正面临着市场环境数字化转型的深刻变革。当下,宁波余姚榨菜产业应迎合数字化趋势,调整并... 近年来,数字技术的快速发展不仅为传统产业提供了新的增长机遇,同时也带来了全新的商业营销模式。宁波余姚榨菜作为传统农产品加工业的代表之一,正面临着市场环境数字化转型的深刻变革。当下,宁波余姚榨菜产业应迎合数字化趋势,调整并创新其营销模式以适应市场的需求和变化。 展开更多
关键词 农产品加工业 营销模式 传统产业 数字化转型 零售营销 余姚榨菜 数字化趋势 增长机遇
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视频化生存:使用与满足视域下“电子榨菜”消费研究 被引量:1
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作者 许心 邵璐 《新媒体研究》 2024年第5期90-92,96,共4页
电子榨菜是视频化生存时代信息消费行为的表征,折射了当下互联网青年用户的信息消费习惯与社会心理需求。通过梳理电子榨菜的现象及特征,并结合使用与满足理论得出其盛行的原因,即满足青年用户信息速食及虚拟社交的需求,并由此形成了正... 电子榨菜是视频化生存时代信息消费行为的表征,折射了当下互联网青年用户的信息消费习惯与社会心理需求。通过梳理电子榨菜的现象及特征,并结合使用与满足理论得出其盛行的原因,即满足青年用户信息速食及虚拟社交的需求,并由此形成了正向的媒介期待及深度的媒介依赖。但在深度媒介化背景下,电子榨菜所带来的休闲异化、群体性孤独、个人体验与实践的媒介化问题仍值得反思,唯有此才能在不断的媒介更迭中始终坚守人的主体性。 展开更多
关键词 电子榨菜 视频化生存 使用与满足 媒介化 短视频
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“电子榨菜”、爽感体验与“内卷”缓解:受众心理视角下微短剧火爆因素探析 被引量:1
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作者 刘星月 《视听》 2024年第10期25-28,共4页
信息时代带来的快节奏生活为微短剧的生根发芽提供了养分。同时,微短剧凭借着快节奏、爽点强的特点迅速发展壮大,在市场上已经形成了一定的规模。微短剧在观众的碎片化时间中充当着“电子榨菜”的角色,不仅给观众带来了爽感体验,也在一... 信息时代带来的快节奏生活为微短剧的生根发芽提供了养分。同时,微短剧凭借着快节奏、爽点强的特点迅速发展壮大,在市场上已经形成了一定的规模。微短剧在观众的碎片化时间中充当着“电子榨菜”的角色,不仅给观众带来了爽感体验,也在一定程度上缓和了社会的“内卷”焦虑,但同时它自身也存在着内容同质化、专业性不足和盈利模式之困等问题,应寻求微短剧的创新与细分化、制作专业化与精品化、商业化与盈利模式的深度探索。 展开更多
关键词 受众心理 微短剧 爽感 “内卷” “电子榨菜
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榨菜新品种引种比较试验
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作者 张江浩 孙伟华 +2 位作者 陈飞 沈盟 姚祥坦 《浙江农业科学》 2024年第5期1165-1168,共4页
引进4个榨菜品种,以本地小叶种榨菜为对照,测定农艺性状、病毒病发病情况和产量,结果表明,永安小叶产量高、耐抽薹性好,甬榨6号、嘉榨3号产量较高、早熟性好,适合本地栽培。
关键词 榨菜品种 经济性状 产量
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BnaC03.BIN2 regulates plant height by affecting the main inflorescence length and first effective branch height in Brassica napus L.
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作者 Chengke Pang Jun Yu +8 位作者 Liang Zhang Min Tang Hongfang Liu Ying Cai Feng Chen Jiefu Zhang Wei Hua Xiaodong Wang Ming Zheng 《The Crop Journal》 SCIE CSCD 2024年第4期1102-1111,共10页
Rapeseed(Brassica napus L.)is one of the main oil crops in the world,and increasing its yield is of great significance for ensuring the safety of edible oil.Presently,improving rapeseed plant architecture is an effect... Rapeseed(Brassica napus L.)is one of the main oil crops in the world,and increasing its yield is of great significance for ensuring the safety of edible oil.Presently,improving rapeseed plant architecture is an effective way to increase rapeseed yield with higher planting density.However,the regulatory mechanism of rapeseed plant architecture is poorly understood.In this study,a dwarf rapeseed mutant dwarf08(df08)is obtained by ethyl methane sulfonate(EMS)-mutagenesis.The decrease in plant height of df08 is mainly caused by the reduction in main inflorescence length and first effective branch height and controlled by a single semi-dominant gene.The hybrid plants(F1)show a semi-dwarf phenotype.Through map-based cloning and transgenic assay,we confirm that the nonsynonymous single nucleotide variant(SNV)(C to T)in BnaC03.BIN2,which is homologous with Arabidopsis(Arabidopsis thaliana)BIN2,is responsible for the dwarfism of df08.BnaC03.BIN2 interacts with BnaBZR1/BES1 and involves in brassinosteroids(BRs)signal transduction.Proline to Leucine substitution in 284(P284L)enhances the protein stability of BnaC03.bin2-D,disrupts BRs signal transduction and affects the expression of genes regulating cell division,leading to dwarfism of df08.This study provides a new insight for the mechanism of rapeseed plant height regulation and creates an elite germplasm that can be used for genetic improvement of rapeseed architecture. 展开更多
关键词 brassica napus Plant height BRASSINOSTEROIDS BIN2
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Improved genome annotation of Brassica oleracea highlights the importance of alternative splicing
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作者 Yinqing Yang Lei Zhang +7 位作者 Qi Tang Lingkui Zhang Xing Li Shumin Chen Kang Zhang Ying Li Xilin Hou Feng Cheng 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第4期961-970,共10页
Brassica oleracea has been developed into many important crops,including cabbage,kale,cauliflower,broccoli and so on.The genome and gene annotation of cabbage(cultivar JZS),a representative morphotype of B.oleracea,ha... Brassica oleracea has been developed into many important crops,including cabbage,kale,cauliflower,broccoli and so on.The genome and gene annotation of cabbage(cultivar JZS),a representative morphotype of B.oleracea,has been widely used as a common reference in biological research.Although its genome assembly has been updated twice,the current gene annotation still lacks information on untranslated regions(UTRs)and alternative splicing(AS).Here,we constructed a high-quality gene annotation(JZSv3)using a full-length transcriptome acquired by nanopore sequencing,yielding a total of 59452 genes and 75684 transcripts.Additionally,we re-analyzed the previously reported transcriptome data related to the development of different tissues and cold response using JZSv3 as a reference,and found that 3843 out of 11908 differentially expressed genes(DEGs)underwent AS during the development of different tissues and 309 out of 903 cold-related genes underwent AS in response to cold stress.Meanwhile,we also identified many AS genes,including BolLHCB5 and BolHSP70,that displayed distinct expression patterns within variant transcripts of the same gene,highlighting the importance of JZSv3 as a pivotal reference for AS analysis.Overall,JZSv3 provides a valuable resource for exploring gene function,especially for obtaining a deeper understanding of AS regulation mechanisms. 展开更多
关键词 brassica oleracea Oxford nanopore technologies Gene annotation Alternative splicing
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Turnip mosaic virus pathogenesis and host resistance mechanisms in Brassica
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作者 Guanwei Wu Xinxin Fang +2 位作者 Tianqi Yu Jianping Chen Fei Yan 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第4期947-960,共14页
Turnip mosaic virus(TuMV)is a devastating potyvirus pathogen that infects a wide variety of both cultivated and wild Brassicaceae plants.We urgently need more information and understanding of TuMV pathogenesis and the... Turnip mosaic virus(TuMV)is a devastating potyvirus pathogen that infects a wide variety of both cultivated and wild Brassicaceae plants.We urgently need more information and understanding of TuMV pathogenesis and the host responses involved in disease development in cruciferous crops.TuMV displays great versatility in viral pathogenesis,especially in its replication and intercellular movement.Moreover,in the coevolutionary arms races between TuMV and its hosts,the virus has evolved to co-opt host factors to facilitate its infection and counter host defense responses.This review mainly focuses on recent advances in understanding the viral factors that contribute to the TuMV infection cycle and the host resistance mechanism in Brassica.Finally,we propose some future research directions on TuMV pathogenesis and control strategies to design durable TuMV-resistant Brassica crops. 展开更多
关键词 Turnip mosaic virus brassica Resistance genes Host factors Infection biology
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低盐方便榨菜工艺优化及其品质的变化研究
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作者 刘琳琳 刘亚飞 张雪妍 《中国调味品》 CAS 北大核心 2024年第12期155-158,共4页
高盐饮食是全球性的健康问题,与许多慢性疾病有关。低盐食品能够降低食物中的钠含量,对于需要限制钠摄入的人群,如高血压患者、心脏病患者和其他患有盐敏感性疾病的人群有益。榨菜的主要成分通常是蔬菜,含有丰富的纤维、维生素和矿物质... 高盐饮食是全球性的健康问题,与许多慢性疾病有关。低盐食品能够降低食物中的钠含量,对于需要限制钠摄入的人群,如高血压患者、心脏病患者和其他患有盐敏感性疾病的人群有益。榨菜的主要成分通常是蔬菜,含有丰富的纤维、维生素和矿物质。该研究为了促进健康饮食观念,降低盐分的过量摄入,减少对高盐食品的依赖,对低盐榨菜加工工艺中不同的杀菌条件(杀菌温度和时间)对低盐榨菜的杀菌效果、色泽、硬度、总酸度和感官评分的影响进行了研究,为低盐榨菜的广泛推广奠定了基础。 展开更多
关键词 低盐榨菜 加工工艺 品质 杀菌效果
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