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991.
The 2,3-butanediol (2,3-BD) dehydrogenase gene budC of Serratia marcescens G12 was disrupted to construct the acetoin (AC) producing strain G12M. In shake-flask cultures, AC production was enhanced by increased concentrations of glucose or sodium acetate in G12M. In fed-batch fermentation, G12M produced 47.5 g/L AC along with 9.8 g/L 2,3-BD. The expression of the key enzymes for AC synthesis was further investigated. Alpha-acetolactate synthase gene budB decreased its expression significantly in G12M compared with G12. This probably explained the moderate AC production in G12M cultures. Additionally, overexpression of budB gene and α-acetolactate decarboxylase gene budA was conducted in G12M and no significant increase of AC was observed. The results suggested that intracellular AC accumulation might inhibit the expression of budB and budA gene and induce budC gene expression in G12M. Our analyses offered the bases for further genetic manipulations in improving AC production in microbial fermentations.  相似文献   
992.
【目的】研究双七瓢虫Coccinula quatuordecimpustulata(Linnaeus)对蚜虫的捕食习性,为其保护利用提供依据。【方法】采用13种蚜虫分别饲喂双七瓢虫1~4龄幼虫及成虫,观察记录24 h的捕食数量;选取大豆蚜Aphis glycines Matsumura、豌豆蚜Acyrthosiphon pisum(Harris)和白杨毛蚜Chaitophrus populeti(Panzer)分别对双七瓢虫进行饲养,记录瓢虫发育历期。【结果】双七瓢虫对供试的13种蚜虫捕食数量存在显著差异,其嗜食程度依照对蚜虫的日捕食生物量依次为:大豆蚜、菊小长管蚜Macrosiphoniella sanborni(Gillette)、月季长管蚜Sitobion rosivorum(Zhang)、豌豆蚜、甘蓝蚜Brevicoryne brassicae(Linnaeus)等;用大豆蚜和豌豆蚜饲养,双七瓢虫各虫态发育历期较短,用白杨毛蚜饲养则发育历期较长,3种蚜虫饲养的双七瓢虫,蛹均能正常羽化。【结论】双七瓢虫对供试蚜虫均有捕食行为,但捕食量存在明显差异;不同蚜虫对双七瓢虫的发育历期具有一定影响。  相似文献   
993.
994.
995.
The behavior and fate of mercury (Hg) in soil is mainly controlled by adsorption and desorption processes with various adsorbents, particularly dissolved organic matter (DOM). This study was conducted to assess the effect of DOM from wheat straw (DOMw) and swine manure (DOMs) on Hg (II) adsorption of black, red, and fluvo-aquic soils in China. Results showed that the Hg (II) adsorption isotherms fitted well with Langmuir and Freundlich equations. The maximum Hg (II) potential adsorption capacity by the three soils followed this trend: black soil > red soil > fluvo-aquic soil. The amount of Hg (II) adsorbed on the soils significantly decreased when DOMw and DOMs were added to the soil samples. Furthermore, the extent by which DOMw affected the Hg (II) adsorption of the three soils was higher than the effect of equivalent amounts of DOMs. Therefore, DOM is important to determine the fate of Hg (II) and control Hg (II) pollution in the environment.  相似文献   
996.
Cadmium (Cd), a toxic environmental contaminant, induces neurodegenerative diseases. Celastrol, a plant‐derived triterpene, has shown neuroprotective effects in various disease models. However, little is known regarding the effect of celastrol on Cd‐induced neurotoxicity. Here, we show that celastrol protected against Cd‐induced apoptotic cell death in neuronal cells. This is supported by the findings that celastrol strikingly attenuated Cd‐induced viability reduction, morphological change, nuclear fragmentation, and condensation, as well as activation of caspase‐3 in neuronal cells. Concurrently, celastrol remarkably blocked Cd‐induced phosphorylation of c‐Jun N‐terminal kinase (JNK), but not extracellular signal‐regulated kinases 1/2 and p38, in neuronal cells. Inhibition of JNK by SP600125 or over‐expression of dominant negative c‐Jun potentiated celastrol protection against Cd‐induced cell death. Furthermore, pre‐treatment with celastrol prevented Cd down‐regulation of phosphatase and tensin homolog deleted on chromosome 10 (PTEN) and activation of phosphoinositide 3′‐kinase/protein kinase B (Akt)/mammalian target of rapamycin (mTOR) signaling in neuronal cells. Over‐expression of wild‐type PTEN enhanced celastrol inhibition of Cd‐activated Akt/mTOR signaling and cell death in neuronal cells. The findings indicate that celastrol prevents Cd‐induced neuronal cell death via targeting JNK and PTEN‐Akt/mTOR network. Our results strongly suggest that celastrol may be exploited for the prevention of Cd‐induced neurodegenerative disorders.

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997.
East Asia has the most diverse temperate flora in the world primarily due to the lack of Pleistocene glaciation and the geographic heterogeneity. Although increasing phylogeography studies in this region provided more proofs in this issue, discrepancies and uncertainty still exist, especially in northern temperate deciduous broad‐leaved and coniferous mixed forest region (II). And a widespread plant species could reduce the complexity to infer the relationship between diversity and physiographical pattern. Hence, we studied the evolution history of a widespread temperate tree, Acer mono, populations in region II and the influence of physiographic patterns on intraspecific genetic diversity. Analyses of chloroplast sequences and nuclear microsatellites indicated high levels of genetic diversity. The diversity distribution was spatially heterogeneous and a latitudinal cline existed in both markers. The spatial distribution pattern between genetic diversity within A. mono and the diversity at species level was generally consistent. Western subtropical evergreen broad‐leaved forest subregion (IVb) had a unique ancient chloroplast clade (CP3) and a nuclear gene pool (GP5) with dominance indicating the critical role of this area in species diversification. Genetic data and ecological niche model results both suggested that populations in region II disappeared during the last glacial maximum (LGM) and recovered from south of Changbai Mt. and the Korean Peninsula. Two distribution centers were likely during the LGM, one in the north edge of warm temperate deciduous broad‐leaved forest region (III) and another in the south edge of region III. This was reflected by the genetic pattern with two spatially independent genetic groups. This study highlights the key role of region III in sustaining genetic diversity in the northern range and connecting diversity between southern and northern range. We elucidated the diversity relationship between vegetation regions which could facilitate the understanding of biodiversity origin and maintenance in East Asia.  相似文献   
998.
999.
Telomerase contributes to cell proliferation and survival through both telomere‐dependent and telomere‐independent mechanisms. In this report, we discovered that endoplasmic reticulum (ER) stress transiently activates the catalytic components of telomerase (TERT) expression in human cancer cell lines and murine primary neural cells. Importantly, we show that depletion of hTERT sensitizes cells to undergo apoptosis under ER stress, whereas increased hTERT expression reduces ER stress‐induced cell death independent of catalytically active enzyme or DNA damage signaling. Our findings establish a functional link between ER stress and telomerase, both of which have important implications in the pathologies associated with aging and cancer.  相似文献   
1000.
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