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991.
Prunella vulgaris L. is an important medicinal plant with a variety of pharmacological activities, but limited information is available about its response to potassium chloride (KCl) supplementation. P. vulgaris seedlings were cultured in media with four different KCl levels (0, 1.00, 6.00 and 40.00 mM). Characteristics relating to the growth, foliar potassium, water and chlorophyll content, photosynthesis, transpiration, nitrogen metabolism, bioactive constituent concentrations and yield were determined after three months. The appropriate KCl concentration was 6.00 mM to result in the highest values for dry weight, shoot height, spica and root weight, spica length and number in P. vulgaris. The optimum KCl concentration resulted in a maximum net photosynthetic rate (Pn) that could be associated with the highest chlorophyll content and fully open stomata conductance. A supply of surplus KCl resulted in a higher concentration of foliar potassium and negatively correlated with the biomass. Plants that were treated with the appropriate KCl level showed a greater capacity for nitrate assimilation. The Pn was significantly and positively correlated with nitrate reductase (NR) and glutamine synthetase (GS) activities and was positively correlated with leaf-soluble protein and free amino acid (FAA) contents. Both KCl starvation (0 mM) and high KCl (40.00 mM) led to water loss through a high transpiration rate and low water absorption, respectively, and resulted in increased concentrations of ursolic acid (UA), oleanolic acid (OA) and flavonoids, with the exception of rosmarinic acid (RA). Moreover, the optimum concentration of KCl significantly increased the yields of RA, UA, OA and flavonoids. Our findings suggested that significantly higher plant biomass; chlorophyll content; Pn; stronger nitrogen anabolism; lower RA, UA, OA and flavonoid accumulation; and greater RA, UA, OA and flavonoid yields in P. vulgaris could be expected in the presence of the appropriate KCl concentration (6.00 mM).  相似文献   
992.
993.
Recent work has revealed an essential involvement of soluble CD40L (sCD40L) in inflammation and vascular disease. Activated platelets are the major source of sCD40L, which has been implicated in platelet and leukocyte activation, although its exact functional impact on leukocyte-platelet interactions and the underlying mechanisms remain undefined. We aimed to determine the impact and the mechanisms of sCD40L on neutrophils. We studied neutrophil interactions with activated, surface-adherent platelets as a model for leukocyte recruitment to the sites of injury. Our data show that CD40L contributes to neutrophil firm adhesion to and transmigration across activated surface-adherent platelets, possibly through two potential mechanisms. One involves the direct interaction of ligand-receptor (CD40L-CD40), i.e., platelet surface CD40L interaction with neutrophil CD40; another involves an indirect mechanism, i.e. soluble CD40L stimulates activation of the leukocyte-specific β2 integrin Mac-1 in neutrophils and thereby further promotes neutrophil adhesion and migration. Activation of the integrin Mac-1 is known to be critical for mediating neutrophil adhesion and migration. sCD40L activated Mac-1 in neutrophils and enhanced neutrophil-platelet interactions in wild-type neutrophils, but failed to elicit such responses in CD40-deficient neutrophils. Furthermore, our data show that the protein kinase C zeta (PKCζ) is critically required for sCD40L-induced Mac-1 activation and neutrophil adhesive function. sCD40L strongly stimulated the focal clustering of Mac-1 (CD11b) and the colocalization of Mac-1 with PKCζ in wild-type neutrophils, but had minimal effect in CD40-deficient neutrophils. Blocking PKCζ completely inhibited sCD40L-induced neutrophil firm adhesion. Moreover, sCD40L strongly stimulates neutrophil oxidative burst via CD40-dependent activation of PI3K/NF-KB, but independent of Mac-1 and PKCζ. These findings may contribute to a better understanding of the underlying mechanisms by which sCD40L/CD40 pathway contributes to inflammation and vascular diseases.  相似文献   
994.

Objective

Heart failure (HF) is one of the most serious diseases worldwide. S-propargyl-cysteine (SPRC), a novel modulator of endogenous hydrogen sulfide, is proved to be able to protect against acute myocardial ischemia. In order to produce more stable and sustainable hydrogen sulfide, we used controlled release formulation of SPRC (CR-SPRC) to elucidate possible cardioprotective effects on HF rats and investigate involved mechanisms on apoptosis and oxidation.

Methods

Left coronary artery was occluded to induce HF model of rat. The survival rats were randomly divided into 7 groups after 24 hours and treated with drugs for 6 weeks. Echocardiographic indexes were recorded to determine cardiac function. TTC staining was performed to determine infarct size. Plasmatic level of hydrogen sulfide was detected by modified sulfide electrode. Activity of enzyme and expression of protein were determined by colorimetry and Western blot, respectively.

Results

The cardioprotective effects of CR-SPRC on HF rats were confirmed by significant reduction of infarct size and improvement of cardiac function, with better effects compared to normal SPRC. CR-SPRC modulated antioxidant defenses by preserving levels of GSH, CAT and SOD and reducing CK leakage. In addition, CR-SPRC elevated ratio of Bcl-2/Bax and inhibited activity of caspases to protect against myocardial apoptosis. The cardioprotective effects of CR-SPRC were mediated by hydrogen sulfide.

Conclusions

All experiment data indicated cardioprotective effects of CR-SPRC on HF rats. More importantly, CR-SPRC exerted better effects than normal SPRC in all respects, providing a new perspective on hydrogen sulfide-mediated drug therapy.  相似文献   
995.
996.

Objective

In this study, the effect of maternal deprivation (MD) and chronic unpredictable stress (CUS) in inducing depressive behaviors and associated molecular mechanism were investigated in rats.

Methods

Maternal deprivation was established by separating pups from their mothers for 6 hours daily from postnatal day 1 to day 14. Chronic unpredictable stress was established by water deprivation, elevated open platform, food deprivation, restraint stress and electric foot shock. The depressive behaviors were determined by use of sucrose preference test and forced swim test.

Results

Rats in MD/CUS group exhibited lower sucrose preference rate, longer immobility time, and lighter body weights than rats in other groups (MD/control, non-MD/CUS and non-MD/control group). Meanwhile, higher miR-504 expression and lower dopamine receptor D1 (DRD1) and D2 (DRD2) expression were observed in the nucleus accumbens of rats in the MD/CUS group than in the other three groups. MiR-504 expression correlated negatively with DRD1 gene expression and sucrose preference rate in the sucrose preference test, but correlated positively with immobility time in forced swim test. Both DRD2 mRNA and protein expression correlated negatively with immobility time in forced swim test.

Conclusion

These results suggest that MD enhances behavioral vulnerability to stress during adulthood, which is associated with the upregulation of miR-504 and downregulation of DRD2 expression in the nucleus accumbens.  相似文献   
997.
Mutualisms are common in nature, though these symbioses can be quite permeable to cheaters in situations where one individual parasitizes the other by discontinuing cooperation yet still exploits the benefits of the partnership. In the Rhizobium-legume system, there are two separate contexts, namely nodulation and nitrogen fixation processes, by which resident Rhizobium individuals can benefit by cheating. Here, we constructed reversible and irreversible mutations in key nodulation and nitrogen-fixation pathways of Rhizobium etli and compared their interaction with plant hosts Phaseolus vulgaris to that of wild type. We show that R. etli reversible mutants deficient in nodulation factor production are capable of intra-specific cheating, wherein mutants exploit other Rhizobium individuals capable of producing these factors. Similarly, we show that R. etli mutants are also capable of cheating inter-specifically, colonizing the host legume yet contributing nothing to the partnership in terms of nitrogen fixation. Our findings indicate that cheating is possible in both of these frameworks, seemingly without damaging the stability of the mutualism itself. These results may potentially help explain observations suggesting that legume plants are commonly infected by multiple bacterial lineages during the nodulation process.  相似文献   
998.
We determined the complete mitochondrial DNA (mtDNA) sequence of a fluke, Paramphistomum cervi (Digenea: Paramphistomidae). This genome (14,014 bp) is slightly larger than that of Clonorchis sinensis (13,875 bp), but smaller than those of other digenean species. The mt genome of P. cervi contains 12 protein-coding genes, 22 transfer RNA genes, 2 ribosomal RNA genes and 2 non-coding regions (NCRs), a complement consistent with those of other digeneans. The arrangement of protein-coding and ribosomal RNA genes in the P. cervi mitochondrial genome is identical to that of other digeneans except for a group of Schistosoma species that exhibit a derived arrangement. The positions of some transfer RNA genes differ. Bayesian phylogenetic analyses, based on concatenated nucleotide sequences and amino-acid sequences of the 12 protein-coding genes, placed P. cervi within the Order Plagiorchiida, but relationships depicted within that order were not quite as expected from previous studies. The complete mtDNA sequence of P. cervi provides important genetic markers for diagnostics, ecological and evolutionary studies of digeneans.  相似文献   
999.
开发利用木质纤维素材料能显著增加地球上可再生资源的储备量。白蚁分布广泛,常见于热带和亚热带地区,它们借助细菌、古细菌、真菌等肠道微生物和原生动物协同降解食物中的木质纤维素,在生态系统的碳、氮循环中发挥着十分重要的作用。本文概括了近年来白蚁肠道微生物研究的进展,特别是近年来已被证明的肠道微生物在木质纤维素降解方面的作用,以期为后续研究木质纤维素的降解提供参考信息。  相似文献   
1000.
【目的】蜜蜂球囊菌(Ascosphaeraapis,简称球囊菌)是专性侵染蜜蜂幼虫的致死性真菌病原。MicroRNA(miRNA)作为一类重要的基因表达调控因子,能够广泛参与真菌及其宿主的相互作用过程。本研究通过比较分析球囊菌孢子(AaCK)和侵染中华蜜蜂(Apis cerana cerana,简称中蜂) 6日龄幼虫肠道内的球囊菌(AaT)的smallRNA(sRNA)组学数据对球囊菌的差异表达miRNA(differentiallyexpressed miRNA,DEmiRNA)、靶mRNA及二者间的调控网络进行全面解析,旨在揭示miRNA介导的球囊菌对中蜂幼虫的侵染机制。【方法】对于球囊菌侵染的中蜂6日龄幼虫肠道的small RNA-seq (sRNA-seq)数据,利用BLAST工具连续比对东方蜜蜂(Apiscerana)和球囊菌的参考基因组筛滤得到AaT的sRNA组学数据。分别将AaCK和AaT的sRNA组学数据比对miRBase数据库,对球囊菌侵染宿主前后miRNA的数量和结构特征进行分析。联用RNAhybrid+svm_light、Miranda和TargetScan软件预测AaCK vs AaT比较组中DEmiRNA的靶mRNA,进而利用相关生物信息学软件对上述靶mRNA进行GO分类和KEGG代谢通路富集分析。通过Cytoscape软件对DEmiRNA-mRNA调控网络进行可视化。利用Stem-loop RT-PCR、RT-qPCR和分子克隆验证测序结果的可靠性。【结果】在AaCK和AaT中分别鉴定到380和387个miRNA。结构特征分析结果显示,AaCK和AaT的mi RNA皆集中分布在18–25 nt,且首位碱基主要偏向于U。AaCKvsAaT比较组共有270个DEmiRNA,包含155个上调miRNA和115个下调miRNA,分别靶向结合6091和6145个mRNA。GO分类结果显示,上述靶mRNA主要涉及代谢进程、细胞进程、应激反应等15个生物学进程;细胞、细胞组分、细胞器等12个细胞组分;催化活性、结合、转运子活性等11个分子功能。KEGG代谢通路富集分析结果显示,上述靶mRNA富集在123条代谢通路,参与对氨基酸代谢、碳水化合物代谢以及核苷酸代谢等物质代谢,氧化磷酸化、硫代谢、氮代谢等能量代谢,以及MAPK和Hippo等信号通路的调控。球囊菌DEmiRNA与靶mRNA之间存在复杂的调控关系,其中miR-29-x、miR-250-x、miR-4968-y、miR-11200-x、novel-m0023-5p、novel-m0130-5p和novel-m0135-5p等DEmiRNA可靶向结合与球囊菌的半胱氨酸蛋白酶、DNA甲基化转移酶以及几丁质酶相关的mRNA;此外,miR-7-x、miR-9-z、miR-319-y和miR-5951-y等同时参与调控MAPK信号通路;进一步分析发现,miR-250-x同时参与对DNA甲基化转移酶、MAPK信号通路及其他酶类合成与代谢途径的调控,并可能参与球囊菌与中蜂6日龄幼虫之间的跨界调控。通过Stem-loopRT-PCR和RT-qPCR验证了4个DEmiRNA的差异表达,并利用分子克隆和Sanger测序证实miR-7-x的序列与测序结果一致。【结论】本研究解析了侵染中蜂6日龄幼虫的球囊菌的miRNA差异表达谱及DEmiRNA的调控网络,揭示了球囊菌DEmiRNA可能通过调控病原的物质和能量代谢、增殖、毒力、信号通路及相关mRNA参与对中蜂幼虫的侵染过程。miR-7-x、miR-250-x、novel-m0023-5p等关键DEmiRNA有望作为白垩病治疗的新型分子靶点。  相似文献   
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