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Genome-wide association study and transcriptome analysis reveal new QTL and candidate genes for nitrogen-deficiency tolerance in rice 被引量:4
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作者 Qing Li Xueli Lu +16 位作者 Changjian Wang Lan Shen Liping Dai Jinli He Long Yang Peiyuan Li yifeng hong Qiang Zhang Guojun Dong Jiang Hu Guangheng Zhang Deyong Ren Zhenyu Gao Longbiao Guo Qian Qian Li Zhu Dali Zeng 《The Crop Journal》 SCIE CSCD 2022年第4期942-951,共10页
The development of rice cultivars with improved nitrogen use efficiency(NUE)is desirable for sustainable agriculture.Achieving this goal depends in part on understanding how rice responds to low soil nitrogen(N)and id... The development of rice cultivars with improved nitrogen use efficiency(NUE)is desirable for sustainable agriculture.Achieving this goal depends in part on understanding how rice responds to low soil nitrogen(N)and identifying causative genes underlying this trait.To identify quantitative trait loci(QTL)or genes associated with low N response,we conducted a genome-wide association study(GWAS)using a diverse panel of 230 rice accessions and performed a transcriptomic investigation of rice accessions with differential responses to low N stress at two N levels.We detected 411 GWAS-associated genes in 5 QTL and 2722 differentially expressed genes in response to low N,of which 24 were identified by both methods and ranked according to gene annotations,literature queries,gene expression,and genetic diversity analysis.The large-scale datasets obtained from this study reveal low N-responsive characteristics and provide insights towards understanding the regulatory mechanisms of N-deficiency tolerance in rice,and the candidate genes or QTL would be valuable resources for increasing rice NUE via molecular biotechnology. 展开更多
关键词 NITROGEN NUE RICE GWAS RNA-SEQ
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梯度多孔材料部分填充圆管强化换热的研究 被引量:1
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作者 王柏村 王鹏飞 +1 位作者 yifeng hong 许忠斌 《热能动力工程》 CAS CSCD 北大核心 2016年第8期12-17,120-121,共6页
基于GPM(梯度多孔材料)的优良特性,本工作设计了GPM部分填充圆管强化换热的结构。当Rp(多孔材料填充率)为0.8时,结合管内充分发展段的速度分布图、管内流动阻力系数和平均Nu数,分别研究了dp(填充梯度孔径)多孔材料、ε(梯度孔隙率)多孔... 基于GPM(梯度多孔材料)的优良特性,本工作设计了GPM部分填充圆管强化换热的结构。当Rp(多孔材料填充率)为0.8时,结合管内充分发展段的速度分布图、管内流动阻力系数和平均Nu数,分别研究了dp(填充梯度孔径)多孔材料、ε(梯度孔隙率)多孔材料对于管内流体流动以及传热特性的影响规律,并将其与HPM(均匀多孔材料)填充圆管时的结果做了对比分析。在此基础上,比较了各种多孔材料填充结构的换热与流动综合评价性能(简称PEC)。结果表明,通过合理设计GPM的结构,能够在强化换热的基础上,有效地降低圆管流动阻力,从而得到较好的综合评价性能(PEC)。 展开更多
关键词 梯度多孔材料 流体流动 强化传热 数值模拟
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