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马克思“自然形成的共同体”与中华民族共同体
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作者 赵永帅 桑扎 常华仁 《民族学刊》 CSSCI 北大核心 2024年第3期10-18,130,共10页
马克思“自然形成的共同体”以具有“实践”特征与“历史”样貌的方式关切“生存发展”这一话题。中华民族共同体承继“自然形成的共同体”内含的人的实践主体同一关系、人与自然互构整体关系、民族生存共生关系等,生成民族、民族与国... 马克思“自然形成的共同体”以具有“实践”特征与“历史”样貌的方式关切“生存发展”这一话题。中华民族共同体承继“自然形成的共同体”内含的人的实践主体同一关系、人与自然互构整体关系、民族生存共生关系等,生成民族、民族与国家、民族国家与世界发展的基础命题,其“有形”与“无形”的在与不在都以“使命历史”与“历史使命”的方式指向生存、生产和生活状态的实现。通过对“自然形成的共同体”典型形态的还原,从历史路径起点把握人类社会初始样貌与出场逻辑;在人与自然关系原点揭示中华民族共同体关切生命生活与生存发展的时代表征与议题;扬弃“自然形成的共同体”的客观实在与解放意蕴,中华民族共同体坚守生命一体化、发展共通性、价值共同性的实现立场。中华民族共同体以其有形的解体与无形的样态与旨向,在趋向文明的共同体演进中为人类社会发展的实践形式和追求的价值内容带来正义的一致性、进步的共同性和整全的共通性。 展开更多
关键词 马克思 “自然形成的共同体” 典型形态 人的解放 中华民族共同体
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Genome-wide Dissection of Co-selected UV-B Responsive Pathways in the UV-B Adaptation of Qingke 被引量:13
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作者 Xingquan Zeng Hongjun Yuan +21 位作者 Xuekui Dong Meng Peng Xinyu Jing Qijun Xu Tang Tang Yulin Wang sang zha Meng Gao Congzhi Li Chujin Shu Zexiu Wei Wangmu Qimei Yuzhen Basang Jiabu Dunzhu Zeqing Li Lijun Bai Jian Shi Zhigang Zheng Sibin Yu Alisdair R.Fernie Jie Luo Tashi Nyima 《Molecular Plant》 SCIE CAS CSCD 2020年第1期112-127,共16页
Qingke (Tibetan hulless barley) has long been cultivated and exposed to long-term and strong UV-B radiation on the Tibetan Plateau, which renders it an ideal species for elucidating novel UV-B responsive mechanisms in... Qingke (Tibetan hulless barley) has long been cultivated and exposed to long-term and strong UV-B radiation on the Tibetan Plateau, which renders it an ideal species for elucidating novel UV-B responsive mechanisms in plants. Here we report a comprehensive metabolite profiling and metabolite-based genome-wide association study (mGWAS) using 196 diverse qingke and barley accessions. Our results demonstrated both constitutive and induced accumulation, and common genetic regulation, of metabolites from different branches of the phenylpropanoid pathway that are involved in UV-B protection. A total of 90 significant mGWAS loci for these metabolites were identified in barley-qingke differentiation regions, and a number of high-level metabolite trait alleles were found to be significantly enriched in qingke, suggesting co-selection of various phenylpropanoids. Upon dissecting the entire phenylpropanoid pathway, we identified some key determinants controlling natural variation of phenylpropanoid content, including three novel proteins, a flavone C-pentosyltransferase, a tyramine hydroxycinnamoyl acyltransferase, and a MYB transcription factor. Our study, furthermore, demonstrated co-selection of both constitutive and induced phenylpropanoids for UV-B protection in qingke. 展开更多
关键词 Tibetan hulless BARLEY UV-B radiation constitutive and induced accumulation PHENYLPROPANOID MYB transcription factor
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