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621.
Noreen Akhter Muhammad Aqeel Muhammad Muslim Shahnaz Ghalia S. H. Alnusairi Suliman Mohammed Alghanem Abida Kousar Mohamed Hashem Hina Kanwal Saad Alamri Aisha Ilyas Omar Mahmoud Al-zoubi Ali Noman 《Physiology and Molecular Biology of Plants》2021,27(4):687
The natural capacity of plants to endure salt stress is largely regulated by multifaceted structural and physio-biochemical modulations. Salt toxicity endurance mechanism of six ecotypes of Typha domingensis Pers. was evaluated by analyzing photosynthesis, ionic homeostasis, and stomatal physiology under different levels of salinity (0, 100, 200 and 300 mM NaCl). Typha populations were collected across different areas of Punjab, an eastern province in Pakistan. All studied attributes among ecotypes presented differential changes as compared to control. Different salt treatments not only affected gas exchange attributes but also shown significant modifications in stomatal anatomical changes. As compared to control, net photosynthetic rate, transpiration rate, total chlorophyll contents and carotenoids were increased by 111%, 64%, 103% and 171% respectively, in Sahianwala ecotype among all other ecotypes. Similarly, maximum water use efficiency (WUE), sub stomatal CO2 concentration, sodium (Na+) and chloride (Cl−) contents were observed in Sahianwala (191%, 93%, 168%, 158%) and Knotti (162%, 75%, 146%, 182%) respectively, as compared to the others ecotypes. Adaxial and abaxial stomatal areas remained stable in Sahianwala and Knotti. The highest abaxial stomatal density was observed in Gatwala ecotype (42 mm2) and maximum adaxial stomatal density was recorded in Sahianwala ecotype (43 mm2) at 300 mM NaCl salinity. The current study showed that Typha ecotypes responded varyingly to salinity in terms of photosynthesis attributes to avoid damages due to salinity. Overall, differential photosynthetic activity, WUE, and changes in stomatal attributes of Sahianwala and Knotti ecotypes contributed more prominently in tolerating salinity stress. Therefore, Typha domingensis is a potential species to be used to rehabilitate salt affected lands for agriculture and aquatic habitat.Supplementary InformationThe online version contains supplementary material available at 10.1007/s12298-021-00963-x. 相似文献
622.
623.
Robert F. Vogt Jr. Noreen A. Hynes Arthur M. Dannenberg Jr. Steven Castracane Louis Weiss 《Biotechnic & histochemistry》1983,58(4):193-205
Improved techniques were developed for processing inflammatory skin lesions in glycol methacrylate (JB-4, Polysciences, Inc.) and for quantitating their leukocyte infiltrates by light microscopy: (1) fixation of entire pelts from rabbits, guinea pigs, rats and mice bearing multiple lesions eliminated artifacts due to biopsy and produced uniformly oriented skin sections; (2) adding dimethylsulfoxide and hydrogen peroxide to the Karnovsky-type fixative increased the rate and effectiveness of fixation; (3) the presence of glycerol in the infiltrating methacrylate and the polymerized plastic block improved the sectionability of skin and other tissues; (4) coating slides with JB-4 Solution A prevented detachment of specimens; (5) Giemsa staining at a carefully selected pH provided optimal differentiation of leukocytes from the several species examined, including man. These techniques, which allowed an accurate histologic assessment of inflammatory skin lesions, were especially valuable for quantitating basophils. 相似文献
624.
Jong H Kim Noreen Mahoney Kathleen L Chan Russell J Molyneux Gregory S May Bruce C Campbell 《FEMS microbiology letters》2008,281(1):64-72
Activities of conventional antifungal agents, fludioxonil, strobilurin and antimycin A, which target the oxidative and osmotic stress response systems, were elevated by coapplication of certain benzo analogs (aldehydes and acids). Fungal tolerance to 2,3-dihydroxybenzaldehyde or 2,3-dihydroxybenzoic acid was found to rely upon mitochondrial superoxide dismutase (SOD2) or glutathione reductase (GLR1), genes regulated by the HOG1 signaling pathway, respectively. Thus, certain benzo analogs can be effective at targeting cellular oxidative stress response systems. The ability of these compounds to chemosensitize fungi for improved control with conventional antifungal agents is discussed. 相似文献
625.
Becheker Imène Melakhessou Mohamed Akram Marref Salah Eddine Grib Ismahene Mounia Amarouayache Malika Berredjem Hajira Berredjem 《化学与生物多样性》2023,20(9):e202300505
In the last few years, the interest in sulfonamides has expanded owing to their broad spectrum of biological activities. Their flexible structure turns them into amazing candidates to replace old drugs or develop modern multi-target agents. In this study, a series of new sulfonamides ( sul1-5 ) was evaluated, in vitro, for the antibacterial, cytotoxic and genotoxic effects. The antibacterial activity was investigated against 12 clinical and 4 reference strains. Cytotoxic activity was carried out by the brine shrimp bioassay and the genotoxicity was assessed in the Ames test. An interesting antibacterial activity was showed especially against Gram negative strains. The inhibition zones varied between 15 and 30 mm, and the Minimum Inhibitory Concentrations (MIC's) values between 0.5 and 256 μg/ml. No antibacterial activity was shown with S. aureus isolates. Only Sul1 and Sul4 were active against P. aeruginosa. Compounds Sul1 and Sul2 showed a significant cytotoxicity with LC50 equal to 18.29 and 18 μg/ml respectively, and a genotoxic effect against TA100 and TA1535 Salmonella strains. Only compounds Sul3 , Sul4 and Sul5 with an interesting antibacterial activity, no cytotoxicity and no genotoxic effects, could be exploited against resistant pathogens as new drugs. 相似文献
626.
Histone deacetylases (HDAC) are metal-dependent enzymes and considered as important targets for cell functioning. Particularly, higher expression of class I HDACs is common in the onset of multiple malignancies which results in deregulation of many target genes involved in cell growth, differentiation and survival. Although substantial attempts have been made to control the irregular functioning of HDACs by employing various inhibitors with high sensitivity towards transformed cells, limited success has been achieved in epigenetic cancer therapy. Here in this study, we used ligand-based pharmacophore and 2-dimensional quantitative structure activity relationship (QSAR) modeling approaches for targeting class I HDAC isoforms. Pharmacophore models were generated by taking into account the known IC50 values and experimental energy scores with extensive validations. The QSAR model having an external R2 value of 0.93 was employed for virtual screening of compound libraries. 10 potential lead compounds (C1-C10) were short-listed having strong binding affinities for HDACs, out of which 2 compounds (C8 and C9) were able to interact with all members of class I HDACs. The potential binding modes of HDAC2 and HDAC8 to C8 were explored through molecular dynamics simulations. Overall, bioactivity and ligand efficiency (binding energy/non-hydrogen atoms) profiles suggested that proposed hits may be more effective inhibitors for cancer therapy. 相似文献
627.
628.
Zafar Iqbal Khan Zahara Bibi Kafeel Ahmad Nudrat Aisha Akram Muhammad Ashraf Fahad Al-Qurainy 《人类与生态风险评估》2015,21(8):2062-2076
Rapid urbanization has no doubt provided prosperity to inhabitants but on the other hand, it has caused severe environmental problems, particularly soil and water pollution. This research was done to determine the magnitude of metal and metalloid contamination at two sites in soil and a potential vegetable crop, sponge gourd (Luffa cylindrica L.) irrigated with wastewater in the region of Sargodha, Pakistan. The results demonstrated that the metal and metalloid levels in the soil samples were relatively below the respective maximum permissible limits of various metals analyzed. Transfer factor for metal contents was greater at site-II than that observed at site-I. Health risk was also worked out due to the inhabitants' intake of L. cylindrica irrigated with municipal wastewater. At both sites, the health risk index was greater than 1 due to Mn, Mo, Pb, Cd, Cu and As, and Ni at site-1 and Zn at site-II, whereas less than 1 due to Fe, Se, and Co. It was concluded that the dietary intake of L. cylindrica was not free of risk for inhabitants around the sampling sites. To reduce the health risk effects, it is suggested to treat the industrial wastes properly and phyto-extract the overload of heavy metals and metalloids from polluted sites. But with increase in vegetable consumption by the community the situation could worsen in the future. 相似文献
629.
630.
Lambdoid phages that simplify the recovery of in vitro recombinants 总被引:54,自引:0,他引:54
Summary Derivatives of phage λ are described for use as vectors for fragments of DNA generated with theHindIII andEcoRI restriction enzymes. With some vectors, hybrid molecules are recognised by a change from a turbid to a clear plaque morphology
resulting from the insertion of a fragment of DNA into the λ gene coding for the phage regressor. Other vectors contain a
central, replaceable fragment of DNA which imparts a readily recognisable phenotype. This central fragment may include either
a gene for a mutant transfer RNA (suppressor) or a part of thelacZ gene ofE. coli able to complement alacZ host. The appropriatelacZ host and indicator plates permit the ready distinction between recombinant and vector phages by the colour of the plaques. 相似文献