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11.
The effects of combinations of organic amendments, phytochemicals, and plant-growth promoting rhizobacteria on tomato (Lycopersicon esculentum) germination, transplant growth, and infectivity of Meloidogyne incognita were evaluated. Two phytochemicals (citral and benzaldehyde), three organic amendments (pine bark, chitin, and hemicellulose), and three bacteria (Serratia marcescens, Brevibacterium iodinum, and Pseudomonas fluorescens) were assessed. Increasing rates of benzaldehyde and citral reduced nematode egg viability in vitro. Benzaldehyde was 100% efficacious as a nematicide against juveniles, whereas citral reduced juvenile viability to less than 20% at all rates tested. Benzaldehyde increased tomato seed germination and root weight, whereas citral decreased both. High rates of pine bark or chitin reduced plant growth but not seed germination, whereas low rates of chitin increased shoot length, shoot weight, and root weight; improved root condition; and reduced galling. The combination of chitin and benzaldehyde significantly improved tomato transplant growth and reduced galling. While each of the bacterial isolates contributed to increased plant growth in combination treatments, only Brevibacterium iodinum applied alone significantly improved plant growth.  相似文献   
12.
Abstract A promoter probe shuttle vector suitable for the isolation of promoter elements from coryneform bacteria was constructed. This vector carried the neomycin phosphotransferase (NPTII) gene from transposon Tn 5 as a reporter gene, and was capable of replication in both Escherichia coli and Brevibacterium flavum . The vector was used in the construction of a B. flavum library of 899 independently isolated promoter clones. Promoters with a wide range of activities in B. flavum , including some very strong promoter elements, were isolated. Comparative analysis suggests that significant differences between B. flavum and E. coli may exist in the determinants of promoter strength.  相似文献   
13.
The murI gene encoding D-glutamate racemase plays an important role in the biosynthesis of D-glutamic acid, an essential component of cell wall peptidoglycan of almost all eubacteria. A DNA fragment that could rescue the auxotrophy of D-glutamic acid in the Escherichia coli murI mutant strain WM335 was isolated from Brevibacterium lactofermentum ATCC 13869 belonging to the coryneform bacteria. DNA sequencing reveals that it encodes a protein of 284 amino acid residues, which shows a high level of homology with D-glutamate racemases from several other bacteria.  相似文献   
14.
Aims: To isolate new micro-organisms with R-stereospecific amidase activity and to examine their potential as biocatalysts in enantioselective hydrolysis of 2,2-dimethylcyclopropanecarboxamide ( 1 ). Methods and Results: A novel R-stereospecific amidase-producing strain ZJB-07021 was isolated through a sophisticated colorimetric screening method. Based on morphology, physiological tests, Biolog system (GP2) and 16S rRNA sequence, the new isolate was identified as Brevibacterium epidermidis. After 70 min of bioconversion at 35°C, kinetic resolution of (R,S)- 1 by the amidase afforded (S)- 1 in 41·1% yield (>99% ee) and (R)- 2 in 49·9% yield (69·7% ee) with an average E-value of 23. The enantioselectivity was found to be temperature dependent and enhanced from 12·6 at 45°C to 65·9 at 14°C. Conclusions: A novel bacterial strain of B. epidermidis ZJB-07021 producing R-stereospecific amidase was isolated and characterized. The isolate exhibited high E values for kinetic resolution of racemic- 1 to (S)- 1 . Significance and Impact of the Study: To our knowledge, this was the first report on the species B. epidermidis that harboured R-stereospecific amidase. Strain ZJB-07021 could be further improved as a suitable biocatalyst for the stereoselective bioconversion of racemic- 1 after optimization of culture and biotransformation process.  相似文献   
15.
为更全面深入地理解细胞内谷氨酸代谢的调控机制,以黄色短杆菌GDK-9为供试菌株,应用MATLAB软件和代谢流分析方法定量研究添加苹果酸后L-谷氨酸发酵中、后期胞内的代谢流迁移。在L-谷氨酸发酵中、后期添加2.0g/L苹果酸后,合成副产物L-丙氨酸和乳酸的代谢流量明显减少,分别降低了22.1%和16.5%,EMP途径和乙醛酸循环的代谢流分别减少了2.26%和9.09%,HMP途径的代谢流增加了2.26%,而L-谷氨酸生物合成的代谢流从73.59%增长至79.92%,较未添加前提高了6.33%。添加适量苹果酸能使关键节点发生代谢流迁移,提高了L-谷氨酸合成中心代谢途径的代谢流量。  相似文献   
16.
17.
通过 5L自控发酵罐发酵实验 ,结合发酵过程中菌生长形态的变化 ,对L -异亮氨酸补料分批发酵进行研究 ,研究了环境因素对黄色短杆菌 (Brevibacteriumflavum)TJCN - 1的影响 ,优化出发酵最佳控制条件 ,提出分阶段发酵控制模式 ,对L -异亮氨酸生产有指导意义。  相似文献   
18.
黄色短杆菌产L-组氨酸菌株的诱变育种   总被引:5,自引:0,他引:5  
以黄色短杆菌为出发菌,采用诱变育种的方法选育得到一株能高产L-组氨酸的突变菌株。在加有150g·L-1葡萄 糖;35g·L-1硫酸铵;10g·L-1蛋白胨的发酵培养基中培养72h,产L-组氨酸128.28mg·L-1。  相似文献   
19.
目的:以黄色短杆菌XV0505为生产菌株,探讨发酵培养基和发酵控制条件对L-缬氨酸的产量和糖酸转化率的影响。方法:应用单因素实验确定发酵的工艺条件;利用纸层析-色斑洗脱比色法测定发酵液中L-缬氨酸的含量。结果:在最优发酵条件下,通过10L罐流加发酵72h,产酸量可达53.4g/L,糖酸转化率为26.7%,分别比补料分批发酵提高11.9%和3.5%。结论:环境因子和发酵控制工艺对发酵生产L-缬氨酸具有重要影响。  相似文献   
20.
NH4+浓度对黄色短杆菌XV0505发酵生产L-缬氨酸的影响   总被引:1,自引:0,他引:1  
以L-缬氨酸(L-Val)生产菌黄色短杆菌XV0505为供试菌株,以(NH4)2SO4为唯一添加N源,考察不同NH 4+浓度对发酵过程中菌体干质量、L-Val产量和葡萄糖消耗速率以及菌体内代谢流量的影响。研究表明:NH 4+浓度过高或不足都会影响发酵水平,降低L-Val的产量。合适的初始NH4+浓度为225 mmol/L,产酸期NH4+维持浓度为35 mmol/L时,有利菌体产酸。在此NH4+浓度下,在30 L发酵罐发酵60 h,发酵液中菌体生物量和L-Val质量浓度分别可达22.35和59.12 g/L。  相似文献   
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