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431.
玉米联合固氮耐铵工程菌Enterobacter gergoviae-7(E7)在不同载体及玉米根际的存活规律 总被引:2,自引:0,他引:2
以草炭、腐植酸和水为载体接种玉米联合固氮耐铵工程菌Enterobactergergoviae -7(以下简称E7)制备菌剂 ,在常温条件下放置 5dE7菌数在载体内明显增加 ,1mo后E7菌数略有下降 ,2mo后E7菌数急剧下降 ,半年后E7活菌数降至n(CFU) =5 .0× 10 6~ 93.0× 10 6g- 1 ,3种菌剂中菌数的变化趋势一致 ,E7菌数残留量 :草炭菌剂 >液体菌剂 >腐植酸菌剂 ;用草炭菌剂拌种在生长 2 0d的玉米根区 (包括根系和根际土壤 ) ,E7菌数达到最大值 ,以后E7菌数下降 ,至灌浆期玉米根际未能检测到E7;不同接种方法试验结果表明 ,以草炭菌剂拌种 +种下 2cm穴施使玉米获得最高增产率 .(表 3) 相似文献
432.
硅酸盐细菌解钾兼拮抗活性菌株的筛选 总被引:13,自引:0,他引:13
从紫色土壤中分离筛选出具有解钾拮抗双重活性的硅酸盐细菌CS1和CS29菌株。接菌处理,其水溶性钾分别增加75%和65%,转化率达0.82%和0.72%。两株菌对革兰氏阳性的蜡样芽孢杆菌,金黄色葡萄球菌,藤黄八叠球菌等和革兰氏阴性的大肠杆菌均有较强的抑菌活性。筛选菌株中91.2%具有解钾活性,但拮抗活性菌株只占总数的11.6%,表明二性状之间无相关关系。表4参7 相似文献
433.
浙江沿海藻类共生细菌的生理生化特性研究 总被引:3,自引:0,他引:3
利用梯度稀释法,从浙江象山、朱家尖等海域所采集的几种海藻中分离出海洋细菌50株,运用杯碟法研究了其胞外代谢产物活性,结果表明,100%的菌株含有胶原蛋白酶、淀粉酶,96%的菌株含有酪蛋白酶,70%的菌株含有酯酶,30%的菌株含有卵磷脂酶、脲酶,还有6%含微量的壳多糖水解酶。同时将这50株菌分别培养在高温(55℃)、高盐(质量分数5.5×10-2)、酸性(pH4.5)环境中,同样对胞外产物活性进行分析。结果显示:外界环境胁迫下,水解明胶、淀粉、酪蛋白和吐温的酶活性仍然存在,但活性有了很大的变化。因胶原蛋白酶、酪蛋白酶能分解胶原蛋白等成分,淀粉酶具分解淀粉、糖原的作用,因此,这些细菌的产物对其他生物有毒害作用,可能是致病菌,也可能对已知致病菌起抑制、破坏作用。本研究为寻找海洋活性先导化合物,为海洋药物的开发等提供了广阔的前景。 相似文献
434.
Min Gao Ziye Yang Yajie Guo Mo Chen Tianlei Qiu Xingbin Sun Xuming Wang 《Frontiers of Environmental Science & Engineering》2021,15(3):39
435.
436.
嗜盐光合细菌的分离鉴定及其营养成分分析 总被引:8,自引:0,他引:8
从大连海岸的海泥中分离到 4株海洋光合细菌 :菌株C4 10、菌株DS2、菌株E3 和E4,它们都能在厌氧光照下营光异养生长 ,菌株C4 10还能够利用还原性硫化物营光自养生长 .依菌对NaCl的需求 ,菌株C4 10、DS2归属于嗜盐光合细菌 ,菌株E3 和E4属于耐盐光合细菌 .根据形态和培养特征、生理生化特征、光合作用内膜结构、泛醌组成、(G +C)的摩尔百分比等指标 ,菌株C4 10鉴定为Rhodovulumsulfidophilus (嗜硫小红卵菌 )、菌株DS2鉴定为Rhodobiummarinum (海红菌 )、菌株E3 和E4鉴定为Rhodobacterazotoformans.4株菌的营养成分分析表明 ,它们的细胞的最大生长量为 4× 10 9mL-1.粗蛋白含量占细胞干重的 5 5 %左右 ,菌株DS2高达 6 4 .2 % .4菌株所含氨基酸种类齐全 ,特别具备人和动物所必需的氨基酸 .4株菌均含有辅酶Q10和类胡萝卜素 .其中菌株C4 10的类葫萝卜素含量最高 .图 1表 6参 14 相似文献
437.
438.
复合优势菌技术处理M废水 总被引:5,自引:0,他引:5
以某厂橡胶促进剂M废水为研究对象,通过常规生物处理工艺与复合优势菌生物处理工艺对该废水处理效果的比较,认为复合优势菌生物处理工艺是目前处理M废水的最佳工艺。 相似文献
439.
Ammonia oxidation, the first and rate-limiting step of nitrification, is mainly performed by ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB). However, the activities of AOA and AOB in soil and their relative contribution to ammonia oxidation are unclear, and whether there is a significant correlation between the quantity of AOA and AOB and the ammonia oxidation rate is also controversial. In this study, quantitative PCR combined with acetylene (C2H2) and 1-octyne inhibition methods were used to determine the quantity and activity of AOA and AOB in wheat, highland barley, and oilseed rape soils in Nyingchi, Lhatse, Sangzhuzi, and Sangri counties on the Qinghai-Tibet Plateau. The results showed that the quantity of AOB ((2.34 ± 0.84) ×105 - (2.65 ± 1.07) ×106 copies g-1 dry soil) was significantly higher than that of AOA ((0.20 ± 0.10) ×104 - (4.02 ± 0.39) ×104 copies g-1 dry soil) in all the soil samples. Soil pH was the key factor affecting the quantity of AOB, and the total phosphorus and ammonium nitrogen in soil were the key factors affecting the quantity of AOA. The rates of ammonia oxidation in the farmland soils of Lhatse (2.42 ± 0.73 mg kg-1 d-1) and Sangzhuzi (3.24 ± 1.15 mg kg-1 d-1) were significantly higher than those in the soils of Nyingchi (1.17 ± 0.43 mg kg-1 d-1) and Sangri counties (0.88 ± 0.57 mg kg-1 d-1). The rates of ammonia oxidation in the farmland soils of Lhatse and Sangzhuzi were dominated by AOB, while those in the farmland soils of Nyingchi and Sangri counties were dominated by AOA. For crops, the ammonia oxidation rates of wheat and oilseed rape soils in all four regions were significantly higher than those of highland barley soil, whereas the activity of AOA and AOB was not influenced by crops. The ratio of nitrogen to phosphorus was the key factor influencing AOA activity, whereas soil pH and total carbon were the main factors influencing AOB activity. Additionally, the quantities of AOA and AOB were not significantly correlated with the total ammonia oxidation rates and AOA and AOB activity. Overall, our study suggests that both AOA and AOB play important roles in ammonia oxidation in farmland soils of the Qinghai-Tibet Plateau. Moreover, it is unreliable to predict the activity of AOA and AOB and their relative contribution to ammonia oxidation directly based on their number of amoA genes, and the activity of AOA and AOB should be directly and accurately measured. These results are important for understanding ammonia nitrogen removal processes, slowing nitrate loss, and reducing the emission of the greenhouse gas nitrous oxide in the farmland ecosystem of the Qinghai-Tibet Plateau. © 2022 Science Press. All rights reserved. 相似文献
440.
Caroline Michel Marie-Thérèse Giudici-Orticoni Frauke Baymann Mireille Bruschi 《Water, Air, & Soil Pollution: Focus》2003,3(3):161-169
The treatment of soils and ground waters polluted by heavy metals is of economical and environmental interest. Reduction of Cr(VI) to the less toxic Cr(III) associated to its precipitation is a potentially useful process for bioremediation. In order to develop ecological processes using micro-organisms, we have compared various sulfate-reducing bacteria for enzymatic reduction of chromate. The best Cr(VI) reductase activity was obtained with Desulfomicrobium norvegicum. Despite morphological changes induced by the presence of chromate, this strain can grow in the presence of up to 500 M Cr(VI) and can decontaminate waters polluted by Cr(VI) when seeded in bioreactors. We have demonstrated the ability of several metalloenzymes (cytochromes c
3 and hydrogenases) to reduce chromate. Biophysical investigations of the chromate/protein interaction in order to get further informations on the mechanism of metal reduction by cytochromes c
3 are under the way. 相似文献