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Effects of cultivation conditions on the diversity of microbes involved in the conversion of rice straw to fodder 被引量:7
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作者 YANG Hong-yan GAO Li-juan WANG Xiao-fen WANG Wei-dong CUI Zong-jun 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2007年第1期67-73,共7页
To confirm the optimum cultivation conditions for analyzing lactic acid bacterial communities and to provide the cultivation foundation for lactic acid bacterial communities that were used to convert straw into fodder... To confirm the optimum cultivation conditions for analyzing lactic acid bacterial communities and to provide the cultivation foundation for lactic acid bacterial communities that were used to convert straw into fodder, fermented rice straw was inoculated into 13 different broths. After 48 h of cultivation, pH values, volatile products, and microbial diversity were analyzed. Except for LAB broth, the pH values of the other broths could decrease to approximately 4.5. GC/MS analysis showed that lactic acid in Tomato MRS broth, MRS broth, LAB broth, and Tomato juice broth was higher than that in the other broths. DNA concentration analysis showed that the counts of microbes in Tomato MRS broth were 2.5 times of those in other broths and that tomato juice favored the reproduction of the microbes. Denaturing gradient gel electrophoresis (DGGE) analysis showed that the number of lactic acid bacterial species in HYA broth, Tomato juice broth, and Tomato MRS broth were higher than those in the other broths. 展开更多
关键词 STRAW cultivation condition microbial diversity DGGE
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Key Techniques of Cultivation of Stropharia rugosoannulata
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作者 Senlin ZHU Qinyu ZHANG +2 位作者 Bo CHEN Xiaomin WANG Bangxi ZHANG 《Asian Agricultural Research》 2022年第5期41-44,共4页
Stropharia rugosoannulata is a straw rotting edible fungus that has developed rapidly in recent years.In the process of cultivation,key technologies have a huge impact on its yield.The key techniques for the cultivati... Stropharia rugosoannulata is a straw rotting edible fungus that has developed rapidly in recent years.In the process of cultivation,key technologies have a huge impact on its yield.The key techniques for the cultivation conditions and modes of S.rugosoannulata were summerized to promote the realization of stable and high yield of S.rugosoannulata. 展开更多
关键词 Stropharia rugosoannulata cultivation conditions cultivation mode cultivation techniques
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Effects of Fertility and Density on Biomass Production,Translocation and Lodging Resistance of Millet(Setaria italica L.)in North China 被引量:2
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作者 Qing ZHAO Guoshun ZHAO +2 位作者 Mengya YANG Susheng CHEN Kai XIAO 《Agricultural Biotechnology》 CAS 2018年第5期58-63,66,共7页
In this study, the plant biomass production, biomass translocation rates across tissues and the lodging resistant-associated traits of millet ( Setaria italica L.) in North China were investigated. Among the four su... In this study, the plant biomass production, biomass translocation rates across tissues and the lodging resistant-associated traits of millet ( Setaria italica L.) in North China were investigated. Among the four summer millet cultivars, Baogu 19 exhibited improved plant biomass (PB) production at flowering and maturity stages, biomass translocation amount (BTA) from vegetative tissues to seeds during filling period, and lodging resistant-associated (LRA) traits compared with other cultivars, including enhanced stem lignin contents, increased anti-broken resistance (ABR), anti-puncturing resistance (APR), and stem diameter (SD) of plants. Compared with treatment regular cultivation (RC), high fertility treatment (HF) increased the plant BP, BTA from vegetative tissue to seed at filling stage, and the plant LRA traits; whereas high density treatment (HD) decreased the plant BP at plant level, plant BTA from vegetative tissues to seeds at filling stage, and the plant LRA traits. Correlation analysis revealed that stem ABR is significantly correlated with the plant lodging resistant-associated traits including APR and SD in the summer millet cultivars examined under various cultivation treatments. Our investigation indicates that cultivar Baogu 19 together with suitable fertilization and density can promote the plant biomass production, enhance vegetative tissue biomass translocation to seeds, and improve the lodging resistance of summer millet plants in North China. 展开更多
关键词 Millet Setaria italica L.) cultivation condition plant biomass biomass translocation rate anti-lodging resistance
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