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Gene expression and metabolite profiles of cotton fiber during cell elongation and secondary cell wall synthesis 被引量:49
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作者 Jin-Ying Gou Ling-Jian Wang +2 位作者 shuang-ping chen Wen-Li Hu Xiao-Ya chen 《Cell Research》 SCIE CAS CSCD 2007年第5期422-434,共13页
棉花纤维在延伸的开始以后很快伸长,最后导致大量纤维素的存款。为了在快延伸和第二等的细胞壁合成揭示棉花纤维房间的特征,上演,我们比较了 respectivetranscriptomes 和代谢物侧面。由 cDNA 数组的 transcriptomes 的比较分析识别... 棉花纤维在延伸的开始以后很快伸长,最后导致大量纤维素的存款。为了在快延伸和第二等的细胞壁合成揭示棉花纤维房间的特征,上演,我们比较了 respectivetranscriptomes 和代谢物侧面。由 cDNA 数组的 transcriptomes 的比较分析识别了是在纤维开发期间调整的差别的 633 基因。用变量把纤维样品划分了成四的表示基因的 Principalcomponent 分析(PCA ) 组织,它发育阶段是诊断的。如果,类似的组织结果也被发现我们是的 usenon 极或极的代谢物为开发纤维的 PCA 的变量。植物生长素发信号,松开墙并且脂类代谢在纤维延伸期间是高度活跃的,而纤维素生合成是占优势的,许多另外的新陈代谢的小径是在第二等的细胞壁合成调整的 down,上演。抄本和代谢物侧面和酶活动在向纤维素合成表明棉花纤维开发的一个专门化过程是一致的。这些数据证明在某个阶段的那个棉花纤维房间有它棉花纤维房间的自己的唯一的特征,和发育阶段能被他们的抄本和代谢物侧面区分。在第二等的细胞壁合成阶段期间,新陈代谢的小径被流进纤维素合成。 展开更多
关键词 棉纤维 细胞延长 细胞壁合成 基因表达 代谢产物
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Effect of different bottom blowing elements on stirring characteristics of molten bath in converter
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作者 Ming Lv shuang-ping chen +2 位作者 Hong-min Guo Yi-jie Hao Xiang-dong Xing 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2024年第2期368-376,共9页
The bottom blowing element is the key equipment to ensure the bottom blowing effect of the converter.Three types of bottom blowing elements,dispersive type(D1),double circular seam(D2)and straight cylinder type(D3),we... The bottom blowing element is the key equipment to ensure the bottom blowing effect of the converter.Three types of bottom blowing elements,dispersive type(D1),double circular seam(D2)and straight cylinder type(D3),were built,and the effects of bottom blowing element type on molten bath flow,wall erosion and furnace bottom erosion were simulated.It was found that when the bottom blowing elements of dispersive type(D1)and double circular seam(D2)were used,the dead zone area in the lower part of the molten bath was smaller,and the high-speed zone area was larger;therefore,the stirring effect on the bottom melt was better.When the straight cylinder type(D3)bottom blowing element was used,the gas penetrated the molten bath at a faster rate to reach the surface of molten bath and failed to disperse in the bottom molten bath,and the wall shear stress near the nozzle outlet was larger.When argon was blown by three different bottom blowing elements,the area of the wall shear stress greater than 3 Pa was 4.8,5.6 and 8.7 cm2,respectively,within 0.2 m of the bottom blowing nozzle outlet. 展开更多
关键词 Converter steelmaking Bottom blowing element Molten bath stirring Wall erosion
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