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111.
Luo Wentao Zuo Xiaoan Griffin-Nolan Robert J. Xu Chong Ma Wang Song Lin Helsen Kenny Lin Yingchao Cai Jiangping Yu Qiang Wang Zhengwen Smith Melinda D. Han Xingguo Knapp Alan K. 《Plant and Soil》2019,434(1-2):343-361
Plant and Soil - Mechanisms by which soil pH affects rice growth await further elucidation. We have used a Systems Biology approach to elucidate the nature of the damage caused by extreme pH to... 相似文献
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Chen Minmin Nie Gongping Yang Liuyan Zhang Yongchun Cai Youming 《Plant Growth Regulation》2021,95(1):49-64
Plant Growth Regulation - As one of the most popular bulbous plant with high ornamental value, Lilium spp. has been used as cut flower or green plants in urban landscapes and home gardening. We... 相似文献
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黑曲霉SL2-111复合酶固体发酵工艺研究 总被引:7,自引:0,他引:7
以酸性蛋白酶酶活为响应值,采用单因素搜索和正交试验对黑曲霉(Aspergillus niger)SL2-111固体发酵工艺进行优化,结果表明最适培养基的组成为:新鲜麸皮8.25g,米糠4.5g、豆饼粉1.5g、(NH4)2SO40.3g、K2HPO40.66g、CaCl20.075g、水8.6mL,pH5.5,变温培养,前30h28℃、后30h为23℃,培养时间为60h。采用最适培养基和优化工艺,在250mL三角瓶中进行验证实验,酸性蛋白酶酶活可达12586U/g,果胶酶和纤维素酶分别为16490U/g、9822U/g。 相似文献
116.
Bystander activation of CD8+ T cells contributes to the rapid production of IFN-gamma in response to bacterial pathogens 总被引:9,自引:0,他引:9
Lertmemongkolchai G Cai G Hunter CA Bancroft GJ 《Journal of immunology (Baltimore, Md. : 1950)》2001,166(2):1097-1105
The bacterium Burkholderia pseudomallei causes a life-threatening disease called melioidosis. In vivo experiments in mice have identified that a rapid IFN-gamma response is essential for host survival. To identify the cellular sources of IFN-gamma, spleen cells from uninfected mice were stimulated with B. pseudomallei in vitro and assayed by ELISA and flow cytometry. Costaining for intracellular IFN-gamma vs cell surface markers demonstrated that NK cells and, more surprisingly, CD8(+) T cells were the dominant sources of IFN-gamma. IFN-gamma(+) NK cells were detectable after 5 h and IFN-gamma(+) CD8(+) T cells within 15 h after addition of bacteria. IFN-gamma production by both cell populations was inhibited by coincubation with neutralizing mAb to IL-12 or IL-18, while a mAb to TNF had much less effect. Three-color flow cytometry showed that IFN-gamma-producing CD8(+) T cells were of the CD44(high) phenotype. The preferential activation of NK cells and CD8(+) T cells, rather than CD4(+) T cells, was also observed in response to Listeria monocytogenes or a combination of IL-12 and IL-18 both in vitro and in vivo. This rapid mechanism of CD8(+) T cell activation may be an important component of innate immunity to intracellular pathogens. 相似文献
117.
Regio- and stereo-selective synthesis of vinyl glucose ester catalyzed by an alkaline protease of Bacillus subtilis 总被引:1,自引:0,他引:1
Qi Wu Deshui Lu Ying Cai Xingtao Xue Zhichun Chen Xianfu Lin 《Biotechnology letters》2001,23(24):1981-1985
The transesterification of -d-glucose with divinylsuccinate, divinyladipate and divinylsebacate in pyridine at 55 °C for 3 days was catalyzed by an alkaline protease from Bacillus subtilis to give corresponding 6-O-vinyl glucose esters at 30%, 53% and 35% yield, respectively. The stereo-selectivity of the alkaline protease toward the -anomer was affected by the acyl donor chain length. 6-O-Vinylsuccinyl-d-glucose was mixture of - and -anomers (/=44/56), the other two products were the pure -d-glucose derivatives. 相似文献
118.
Li J Sun L Xu C Yu F Zhou H Zhao Y Zhang J Cai J Mao C Tang L Xu Y He J 《生物化学与生物物理学报(英文版)》2012,44(4):300-306
The activation of molecular chaperone heat-shock protein 90 (Hsp90) is dependent on ATP binding and hydrolysis, which occurs in the N-terminal domains of protein. Here, we have determined three crystal structures of the N-terminal domain of human Hsp90 in native and in complex with ATP and ATP analog, providing a clear view of the catalytic mechanism of ATP hydrolysis by Hsp90. Additionally, the binding of ATP leads the N-terminal domains to be an intermediate state that could be used to partially explain why the isolated N-terminal domain of Hsp90 has very weak ATP hydrolytic activity. 相似文献
119.
Given a compounds-forming system, i.e., a system consisting of some compounds and their relationship, can it form a biologically meaningful pathway? It is a fundamental problem in systems biology. Nowadays, a lot of information on different organisms, at both genetic and metabolic levels, has been collected and stored in some specific databases. Based on these data, it is feasible to address such an essential problem. Metabolic pathway is one kind of compounds-forming systems and we analyzed them in yeast by extracting different (biological and graphic) features from each of the 13,736 compounds-forming systems, of which 136 are positive pathways, i.e., known metabolic pathway from KEGG; while 13,600 were negative. Each of these compounds-forming systems was represented by 144 features, of which 88 are graph features and 56 biological features. "Minimum Redundancy Maximum Relevance" and "Incremental Feature Selection" were utilized to analyze these features and 16 optimal features were selected as being able to predict a query compounds- forming system most successfully. It was found through Jackknife cross-validation that the overall success rate of identifying the positive pathways was 74.26%. It is anticipated that this novel approach and encouraging result may give meaningful illumination to investigate this important topic. 相似文献
120.