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651.
Wen-Chi Yin Thevagi Satkunendran Rong Mo Sorana Morrissy Xiaoyun Zhang Eunice Shiao Huang Liis Uusküla-Reimand Huayun Hou Joe Eun Son Weifan Liu Yulu C. Liu Jianing Zhang Jessica Parker Xin Wang Hamza Farooq Hayden Selvadurai Xin Chen Elly Sau-Wai Ngan Chi-chung Hui 《Developmental cell》2019,48(2):167-183.e5
652.
Muhammad Farooq Waleed Anjum Manzoor Hussain Zafeer Saqib Khalid Rasheed Khan Abbas Hussain Shah Sagheer Gul Saira Jabeen 《农业工程》2019,39(1):9-13
The current work was carried out in Upper Tanawal which lies in the mid of Western part of lesser Himalaya. The area lies between 34°0.34.40′ N to 34°0.48.88′ N latitude and 72°0.84.27′ E to 73°0.10.50′ E longitude. Upper Tanawal is rich in biodiversity. No work regarding forest and forest situation is done previously in this area. (Farooq, et al., 2017). The area was once housing notable and thick forest strands famous for their habitat uniqueness to harbor number of pheasant and other wildlife species. Due to security reasons and worse situation of law and order compromising government writ the area remained scientifically as well departmentally neglected resulting rapid and vigorous ruthless deforestation. The area was extensively visited and sampled using Quadrate method for phytosociological data collection. Phytosociological attributes like density, cover, and frequency were also Calculated and recorded for all tree species of the area in each quadrat. Altitude, slope angle, atmospheric humidity and temperature were also considered as environmental variables for each sampling site. Results reflect that Upper Tanawal hosts 52 different tree species of 39 genera belonging to 25 tree families.The important forests of Upper Tanawal are under high anthropogenic and environmental disturbances. Some of them may easily be managed because of the presence of large number of seedling; however, some areas need serious attention. It was observed that Pinus roxburghii and Pinus wallichiana are the potential tree species for reforestation and afforestation in the area. This study will be the baseline for new researchers in the study area. 相似文献
653.
Azam F Barodia SK Anwer T Alam MM 《Journal of enzyme inhibition and medicinal chemistry》2009,24(3):808-817
Increased oxidative stress has been implicated in the pathogenesis of dopaminergic neurodegeneration leading to the development of Parkinson's disease. In this study, we investigated whether naphtha[1,2-d]thiazol-2-amine (NTA) may ameliorate haloperidol-induced catalepsy and oxidative damage in mice brain. Haloperidol-induced catalepsy was measured with the standard bar test. The extent of oxidative stress has been evaluated by measuring levels of MDA, GSH and activities of antioxidant enzymes (SOD and GSH-Px) from brain homogenate. Haloperidol treatment significantly induced the catalepsy as observed from increased descent time measured in the bar test. Pretreatment with NTA significantly reduced the catalepsy induced by haloperidol in a dose-dependent manner. The elevated level of MDA in haloperidol-treated mice was significantly decreased by NTA pretreatment. The decreased level of GSH as well as SOD and GSH-Px activities in haloperidol-treated mice were significantly increased by NTA pretreatment. NTA reduces the oxidative stress allowing recovery of detoxifying enzyme activities and controlling free radical production, suggesting a potential role of the drug as an alternative/adjuvant drug in preventing and treating the neurodegenerative diseases, such as Parkinson's disease. 相似文献
654.
Drought stress hampers rice performance principally by disrupting the plant–water relations and structure of biological membranes.
This study appraised the role of polyamines (PAs) in improving drought tolerance in fine grain aromatic rice (Oryza sativa L.). Three PAs [putrescine (Put), spermidine (Spd) and spermine (Spm)] were used each at 10 μM as seed priming (by soaking
seeds in solution) and foliar spray. Primed and non-primed seeds were sown in plastic pots with normal irrigation in a phytotron.
At four-leaf stage, plants were subjected to drought stress by bringing the soil moisture down to 50% of field capacity by
halting water supply. For foliar application, 10 μM solutions each of Put, Spd and Spm were sprayed at five-leaf stage. Results
revealed that drought stress severely reduced the rice fresh and dry weights, while PAs application improved net photosynthesis,
water use efficiency, leaf water status, production of free proline, anthocyanins and soluble phenolics and improved membrane
properties. PAs improved drought tolerance in terms of dry matter yield and net photosynthesis was associated with the maintenance
of leaf water status and improved water use efficiency. Among the antioxidants, catalase activity was negatively related to
H2O2 and membrane permeability, which indicated alleviation of oxidative damage on cellular membranes by PAs application. Foliar
application was more effective than the seed priming, and among the PAs, Spm was the most effective in improving drought tolerance. 相似文献
655.
Maura Manganelli Francesca Malfatti Ty J. Samo B. Greg Mitchell Haili Wang Farooq Azam 《PloS one》2009,4(9)
Carbon cycling in Southern Ocean is a major issue in climate change, hence the need to understand the role of biota in the regulation of carbon fixation and cycling. Southern Ocean is a heterogeneous system, characterized by a strong seasonality, due to long dark winter. Yet, currently little is known about biogeochemical dynamics during this season, particularly in the deeper part of the ocean. We studied bacterial communities and processes in summer and winter cruises in the southern Drake Passage. Here we show that in winter, when the primary production is greatly reduced, Bacteria and Archaea become the major producers of biogenic particles, at the expense of dissolved organic carbon drawdown. Heterotrophic production and chemoautotrophic CO2 fixation rates were substantial, also in deep water, and bacterial populations were controlled by protists and viruses. A dynamic food web is also consistent with the observed temporal and spatial variations in archaeal and bacterial communities that might exploit various niches. Thus, Southern Ocean microbial loop may substantially maintain a wintertime food web and system respiration at the expense of summer produced DOC as well as regenerate nutrients and iron. Our findings have important implications for Southern Ocean ecosystem functioning and carbon cycle and its manipulation by iron enrichment to achieve net sequestration of atmospheric CO2. 相似文献
656.
Victor E. Tapia Emilia Nicolaescu Caleb B. McDonald Valeria Musi Tsutomu Oka Yujin Inayoshi Adam C. Satteson Virginia Mazack Jasper Humbert Christian J. Gaffney Monique Beullens Charles E. Schwartz Christiane Landgraf Rudolf Volkmer Annalisa Pastore Amjad Farooq Mathieu Bollen Marius Sudol 《The Journal of biological chemistry》2010,285(25):19391-19401
657.
Suppressing IL-32 in monocytes impairs the induction of the proinflammatory cytokines TNFα and IL-1β
Jaewoo Hong Suyoung Bae Youngsun Kang Doyoung Yoon Xiyuan Bai Edward D. Chan Tania Azam Charles A. Dinarello Siyoung Lee Erk Her Gyujin Rho Soohyun Kim 《Cytokine》2010,49(2):171-176
Targeting major proinflammatory cytokines such as IL-1β and TNFα is of great interest in patients with chronic inflammatory diseases, including rheumatoid arthritis, colitis, and psoriasis. The cytokine Interleukin (IL)-32 induces proinflammatory cytokines such as TNFα, IL-1β, IL-6, and chemokines. We previously used an IL-32 ligand-affinity column to purify proteinase 3, which is abundantly expressed in neutrophil and monocytic leukocytes but not in other cell types, and found that IL-32 is mainly produced by monocytic leukocytes. This evidence suggested that silencing endogenous IL-32 by short hairpin RNA (shRNA) in monocytic cells might reveal the precise function of endogenous IL-32. Indeed, lipopolysaccharide (LPS)- or phorbol myristate acetate (PMA)-induced proinflammatory cytokine production was significantly inhibited in shRNA/IL-32 stable clones as compared to control clones. Furthermore, macrophages in PMA-differentiated shRNA/IL-32 stable clones displayed remarkably impaired LPS- and IL-1β-induced proinflammatory cytokine production. These data suggest that IL-32 is not only involved in host defense against pathogens, but also might play a role in chronic inflammatory diseases. IL-32 production leads to major proinflammatory cytokine production during the initial immune response. 相似文献
658.
A new compound, 6a,11a-dihydro-6H-[1] benzofuro [3,2-c][1,3]dioxolo[4,5-g]chromen-9-ol was isolated from the ethyl acetate fraction of Vitex agnus-castus. The structure of this compound was identified with the help of spectroscopic techniques ((13)C NMR, (1)H NMR, HMBC, HMQC, NOESY and COSY). The compound showed low urease- (32.0%) and chymotrypsin- (31.4%) inhibitory activity, and moderate (41.3%) anti-inflammatory activity. The crude extract and various fractions obtained from the aerial parts of the plant were also screened for possible in vitro hemagglutination, antibacterial and phytotoxic activities. No hemagglutination activity against human erythrocytes was observed in crude extracts and fractions of V. agnus-castus. The fractions and crude methanolic extract showed moderate and low antibacterial activity. Exceptions were the CHCl(3) fraction, which showed significant antibacterial activity against Klebsiella pneumonia (81% with MIC(50)=2.19 mg/mL), the n-hexane fraction, which exhibited no activity against Salmonella typhi, and the CHCl(3) and aqueous fractions, which showed no activity against Bacillus pumalis. Moderate phytotoxic activity (62.5%) was observed by n-hexane fraction of V. agnus-castus against Lemna minor L at 1000 μg/mL. 相似文献
659.
Stabilized rice bran (SRB), a source of complex carbohydrates, tocols, gamma-oryzanols, and polyphenols, was treated with carbohydrases and heat to yield two fractions, rice bran water solubles (RBWS), and rice bran fiber concentrates (RBFC). Stabilized rice bran and its fractions were fed for 60 days to insulin-dependent and noninsulin-dependent diabetes mellitus (IDDM = Type I and NIDDM = Type II) subjects to determine possible effects on serum hemoglobin, carbohydrate and lipid parameters. The Type I subjects (n = 22, 26, and 20) fed Stabilized rice bran, rice bran water solubles, and rice bran fiber concentrates plus AHA Step-1 diet reduced glycosylated hemoglobin 1%, 11%, and 10%, respectively. The fasting serum glucose levels were also reduced significantly (P < 0.01) with stabilized rice bran (9%), rice bran water solubles (29%), and rice bran fiber concentrates (19%).The Type II subjects (n = 31, and 26) fed rice bran water solubles and rice bran fiber concentrates plus AHA Step-1 diet had decreased levels of glycosylated hemoglobin (15% and 11%) and fasting glucose (33% and 22%; P < 0.001), respectively. Serum insulin levels were increased (4%) with rice bran water solubles in both types of diabetes. The reduction of glycosylated hemoglobin and a slight increase in insulin levels indicate that consumption of rice bran water solubles can control blood glucose levels in human diabetes. Serum total cholesterol, LDL-cholesterol, apolipoprotein B, and triglycerides levels were reduced with rice bran fiber concentrates in the Type I (10, 16, 10, 7%) and Type II groups (12, 15, 10, 8%), respectively. These results indicate that rice bran water solubles significantly reduces hyperglycemia (P < 0.01), whereas rice bran fiber concentrates reduces hyperlipidemia (P < 0.05) in both types of diabetes. Therefore, these natural products can be used as nutritional supplements for the control of both types of diabetes mellitus in humans. 相似文献
660.