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Creating Collaborations between Shanghai Jiaotong University and Cornell University in Agriculture and Biology
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作者 Dr. Norman R Scott 《Journal of Shanghai Jiaotong university(Science)》 EI 2005年第S1期188-189,共2页
关键词 Creating Collaborations between Shanghai Jiaotong university and cornell university in Agriculture and Biology NNSFC
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Cornell University
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作者 曾超 《建筑技艺》 2011年第5期198-201,共4页
“2009年康奈尔大学太阳能全能竞赛住宅”采用了可持续性模块化设计,为一个特殊的圆形和矩形的构筑物,其中圆形模块延续了纽约州的民居建筑.住宅由三个调控的“有生命的”圆柱体和一个中间四方的院子组成,一个悬浮的直线阵列的太阳能光... “2009年康奈尔大学太阳能全能竞赛住宅”采用了可持续性模块化设计,为一个特殊的圆形和矩形的构筑物,其中圆形模块延续了纽约州的民居建筑.住宅由三个调控的“有生命的”圆柱体和一个中间四方的院子组成,一个悬浮的直线阵列的太阳能光伏板罩住了整个建筑结构. 展开更多
关键词 太阳能住宅 新能源住宅 cornell university 起居室
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Cornell University and Tsinghua Form Strategic Partnership
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作者 Li Han 《Tsinghua Science and Technology》 SCIE EI CAS 2005年第1期90-90,共1页
关键词 FORM cornell university and Tsinghua Form Strategic Partnership
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Establishment and evaluation of a peanut association panel and analysis of key nutritional traits 被引量:5
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作者 Xiurong Zhang Suqing Zhu +4 位作者 Kun Zhang Yongshan Wan Fengzhen Liu Qingfang Sun Yingjie Li 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2018年第3期195-215,共21页
Breeding programs aim to improve the yield and quality of peanut (Arachis hypogaea L.); using association mapping to identify genetic markers linked to these quantitative traits could facilitate selection efficiency... Breeding programs aim to improve the yield and quality of peanut (Arachis hypogaea L.); using association mapping to identify genetic markers linked to these quantitative traits could facilitate selection efficiency. A peanut association panel was established consisting of 268 lines with extensive phenotypic and genetic variation, meeting the requirements for associa- tion analysis. These lines were grown over 3 years and the key agronomic traits, including protein and oil content were examined. Population structure (Q) analysis showed two subpopulations and clustering analysis was consistent with Q-based membership assignment and closely related to botanical type. Relative Kinship (K) indicated that most of the panel members have no or weak familial related- ness, with 52.78% of lines showing K=o. Linkagedisequilibrium (LD) analysis showed a high level of LD occurs in the panel. Model comparisons indicated false positives can be effectively controlled by taking Q and K into consideration and more false positives were generated by K than Q. A preliminary association analysis using a Q+ K model found markers significantly associated with oil, protein, oleic acid, and linoleic acid, and identified a set of alleles with positive and negative effects. These results show that this panel is suitable for association analysis, providing a resource for marker-assisted selection for peanut improvement. 展开更多
关键词 Georg Jander cornell university USA
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Elevated CO2 differentially affects tobacco and rice defense against lepidopteran larvae via the jasmonic acid signaling pathway 被引量:4
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作者 Chengkai Lu Jinfeng qi +9 位作者 Christian Hettenhausen Yunting Lei Jingxiong Zhang Mou Zhang Cuiping Zhang Juan Song Jing Li Guoyan Cao Saif ul Malook Jianqiang Wu 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2018年第5期412-431,共20页
Atmospheric CO2 levels are rapidly increasing due to human activities. However, the effects of elevated CO2 (ECO2) on plant defense against insects and the underlying mechanisms remain poorly understood. Here we sho... Atmospheric CO2 levels are rapidly increasing due to human activities. However, the effects of elevated CO2 (ECO2) on plant defense against insects and the underlying mechanisms remain poorly understood. Here we show that ECO2 increased the photosynthetic rates and the biomass of tobacco and rice plants, and the chewing lepidopteran insects Spodoptera litura and Mythimna separata gained less and more mass on tobacco and rice plants, respectively. Consistently, under ECO2, the levels of jasmonic acid (JA), the main phytohormone controlling plant defense against these lepidopteran insects, as well as the main defense-related metabolites, were increased and decreased in insectdamaged tobacco and rice plants. Importantly, bioassays and quantification of defense-related metabolites in tobacco and rice silenced in JA biosynthesis and perception indicate that ECO2 changes plant resistance mainly by affecting the JA pathway. We further demonstrate that the defensive metabolites, but not total N or protein, are the main factors contributing to the altered defense levels under ECO2. This study illustrates that ECO2 changes the interplay between plants and insects, and we propose that crops should be studied for their resistance to the major pests under ECO2 to predict the impact of ECO2 on future agroecosystems. 展开更多
关键词 Georg Jander cornell university USA
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