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酱香绵柔回甜调味酒的生产及应用 被引量:5
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作者 尹峤 刘波 《酿酒科技》 2020年第8期51-55,60,共6页
四川省天府名优酒研究中心利用现代生物技术,通过培养酱香功能菌及酱香生物培养液强化发酵,再经蒸馏分段收集,人工老熟,调配生产出酱香绵柔回甜调味酒。在酱香型轮次盘勾酒、酱香型中档酒及酱香型低档酒的应用中均取得良好效果。
关键词 酱香型白酒 调味酒 酱香 绵柔 回甜
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Osmotic Adjustment of Soil Biocrust Mosses in Response to Desiccation Stress 被引量:1
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作者 ZHAO Xin SHI Yong +2 位作者 LIU Yang JIA Rong-Liang LI Xin-Rong 《Pedosphere》 SCIE CAS CSCD 2015年第3期459-467,共9页
Biological soil crusts(biocrusts) widely occur in semiarid and arid regions throughout the world and play important roles in many desert ecosystems: protecting soil from wind erosion and detaining nutrient-rich dust a... Biological soil crusts(biocrusts) widely occur in semiarid and arid regions throughout the world and play important roles in many desert ecosystems: protecting soil from wind erosion and detaining nutrient-rich dust and organic carbon. An experiment was conducted in the Shapotou revegetated area of the Tengger Desert, Ningxia Hui Autonomous Region of China to investigate the physiological responses of the dominant biocrust mosses, Bryum argenteum and Didymodon vinealis, to desiccant stress using different osmotic adjustments. B. argenteum and D. vinealis accumulated K+, total soluble sugar, sucrose, trehalose, proline, and glycine betaine during desiccation. The proline content of B. argenteum was about two times higher than that of D. vinealis. The K+and glycine betaine contents in B. argenteum were slightly higher than those in D. vinealis. In contrast, the total soluble sugar, sucrose,and trehalose contents in D. vinealis were about 3 to 5 times higher than those in B. argenteum. With gradual desiccation stress,the Na+content of B. argenteum was low and did not significantly change. On the contrary, the Na+content of D. vinealis sharply increased and reached a very high level of about 10 to 18 times higher than that of B. argenteum, indicating that B. argenteum and D. vinealis gradually adapted to desiccation stress by osmotic substances accumulation to different degrees. 展开更多
关键词 biological soil crusts Bryum argenteum compatible solute Didymodon vinealis drought stress
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