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| 1 | 行距对棉花生长发育、产量及早熟性指数的影响的研究(英文)显示文摘棉花窄行密植生产是缩短棉花生长季节实现棉花早熟的主要举措,并且窄行密植对棉花的产量无显著影响。田间试验于2006年6月到2007年1月在巴基斯坦费萨拉巴德农业大学试验田进行,以确定行距对不同品系棉花的生长、生产和早熟性指数的影响。试验选取NIAB-111,CIM-496和FH-901 3个棉花品种,设置了60、75和90 cm 3种行距进行试验研究。结果表明:行距对棉花生长发育、产量和早熟性指数具有极显著影响;行距75 cm的处理产量最高达到2603 kg·hm-2,其次是行距60 cm的处理,产量为2541 kg·hm-2,但二者间差异不显著;行距60 cm的处理早熟性指数达到50.92%,显著大于其它处理;行距75 cm的处理次之。子棉产量最高的品种是FH-901,同时其早熟性指数也最高,达到54.34%。 | ANJUM Shakeel Ahmad SALEEM Muhammad Farrukh 王龙昌 薛兰兰 SHAH ID Muhammad Qasim ALI Shafaqat | 2010 | 棉花学报2010,22,6: | 11 |
| 2 | The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants显示文摘 | Fanrong Zeng Shafaqat Ali Haitao Zhang Younan Ouyang Boyin Qiu Feibo Wu Guoping Zhang | 2010 | Environmental Pollution2010,,1: | 3 |
| 3 | A Molecular Approach for Genotyping of Hepatitis B Virus Using Restriction Pattern Analysis of S Amplicon in Pakistan显示文摘 | Nazish Badar Umer Farooq Shafaqat Ali Nadia Nisar Muhammad Abubakar Javed Anwar Qureshi | 2012 | 世界最新医学信息文摘2012,12,3: | 2 |
| 4 | Caspase 3 inactivates biologically active full length interleukin-33 as a classical cytokine but does not prohibit nuclear translocation显示文摘 | Shafaqat Ali Dang Quan Nguyen Werner Falk Michael Uwe Martin | 2009 | Biochemical and Biophysical Research Communications2009,,3: | 1 |
| 5 | Differential physiological, ultramorphological and metabolic responses of cotton cultivars under cadmium stress显示文摘 | M.K. Daud Shafaqat Ali M.T. Variath S.J. Zhu | 2013 | Chemosphere2013,,10: | 1 |
| 6 | The ecotoxicologi- cal and interactive effects of chromium and aluminum on growth,oxidative damage and antioxidant enzymes on two barley genotypes differing in Aholerance 显示文摘 | Shafaqat Ali Pu Bai Zeng F R | 2011 | Environ- mental and Experimental Botany2011,70,: | 1 |
| 7 | The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants显示文摘 | Fanrong Zeng Shafaqat Ali Haitao Zhang Younan Ouyang Boyin Qiu Feibo Wu Guoping Zhang | 2010 | Environmental Pollution2010,,1: | 1 |
| 8 | The influ- ence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants显示文摘 | Zeng Fanrong Ali Shafaqat Zhang Haitao ct al | 2011 | Environmental Pollution2011,159,: | 1 |
| 9 | Phosphorus-Mobilizing Rhizobacterial Strain Bacillus cereus GS6 Improves Symbiotic Efficiency of Soybean on an Aridisol Amended with Phosphorus-Enriched Compost显示文摘Legume plants are an essential component of sustainable farming systems.Phosphorus(P) deficiency is a significant constraint for legume production, especially in nutrient-poor soils of arid and semi-arid regions.In the present study, we conducted a pot experiment to evaluate the effects of a phosphorus-mobilizing plant-growth promoting rhizobacterial strain Bacillus cereus GS6, either alone or combined with phosphate-enriched compost(PEC) on the symbiotic(nodulation-N_2 fixation) performance of soybean(Glycine max(L.) Merr.) on an Aridisol.The PEC was produced by composting food waste with addition of single super phosphate.The bacterial strain B.cereus GS6 showed considerable potential for P solubilization and mobilization by releasing carboxylates in insoluble P(rock phosphate)-enriched medium.Inoculation of B.cereus GS6 in combination with PEC application significantly improved nodulation and nodule N_2 fixation efficiency.Compared to the control(without B.cereus GS6 and PEC), the combined application of B.cereus GS6 with PEC resulted in significantly higher accumulation of nitrogen(N), P, and potassium(K) in grain, shoot, and nodule.The N:P and P:K ratios in nodules were significantly altered by the application of PEC and B.cereus GS6, which reflected the important roles of P and K in symbiotic performance of soybean.The combined application of PEC and B.cereus GS6 also significantly increased the soil dehydrogenase and phosphomonoesterase activities, as well as the soil available N, P, and K contents.Significant positive relationships were found between soil organic carbon(C) content, dehydrogenase and phosphomonoesterase activities, and available N, P, and K contents.This study suggests that inoculation of P-mobilizing rhizobacteria, such as B.cereus GS6, in combination with PEC application might enhance legume productivity by improving nodulation and nodule N_2 fixation efficiency. | Muhammad Saleem ARIF Muhammad RIAZ Sher Muhammad SHAHZAD Tahira YASMEEN Shafaqat ALI Muhammad Javed AKHTAR | 2017 | Pedosphere2017,27,6: | 1 |
| 10 | 5-Aminolevulinic Acid Ameliorates the Growth, Photosynthetic Gas Exchange Capacity, and Ultrastructural Changes Under Cadmium Stress in Brassica napus L.显示文摘 | Basharat Ali B. Wang Shafaqat Ali M. A. Ghani M. T. Hayat C. Yang L. Xu W. J. Zhou | 2013 | Journal of Plant Growth Regulation2013,,3: | 1 |
| 11 | 黄腐酸减轻制革废水灌溉引起的铬污染对小麦植株形态、光合作用和氧化性能的改变显示文摘巴基斯坦因水资源短缺,农民一直使用制革废水进行灌溉,制革废水含有的大量铬(Cr)及其他污染物对植物生长造成了影响。本文研究了制革废水对小麦植株的影响以及黄腐酸(FA)在减轻Cr毒性中的作用。结果表明:使用制革废水灌溉减缓了植物生长、降低了生物量和光合色素积累。 | Shafaqat Ali Muhammad Rizwan Abdul Waqas 李双(译) | 2019 | 腐植酸2019,,5: | 0 |
| 12 | Application of ferrous sulfate alleviates negative impact of cadmium in rice(Oryza sativa L.)显示文摘Soil contamination with toxic heavy metals[such as cadmium(Cd)]is becoming a serious global problem due to rapid development of social economy.Iron(Fe),being an important element,has been found effective in enhancing plant tolerance against biotic and abiotic stresses.The present study investigated the extent to which different levels of Ferrous sulphate(FeSO_(4))modulated the Cd tolerance of rice(Oryza sativa L.),when maintained in artificially Cd spiked regimes.A pot experiment was conducted under controlled conditions for 146 days,by using natural soil,mixed with different levels of CdCl_(2)[0(no Cd),0.5 and 1 mg/kg]together with the exogenous application of FeSO_(4) at[0(no Fe),1.5 and 3 mg/kg]levels to monitor different growth,gaseous exchange characteristics,oxidative stress,antioxidative responses,minerals accumulation,organic acid exudation patterns of O.sativa.Our results depicted that addition of Cd to the soil significantly(P<0.05)decreased plant growth and biomass,gaseous exchange parameters,mineral uptake by the plants,sugars(soluble,reducing,and non-reducing sugar)and altered the ultrastructure of chloroplasts,plastoglobuli,mitochondria,and many other cellular organelles in Cd-stressed O.sativa compared to those plants which were grown without the addition of Cd in the soil.However,Cd toxicity boosted the production of reactive oxygen species(ROS)by increasing the contents of malondialdehyde(MDA),which is the indication of oxidative stress in O.sativa and was also manifested by hydrogen peroxide(H_(2)O_(2))contents and electrolyte leakage to the membrane bounded organelles.Although,activities of various antioxidative enzymes like superoxidase dismutase(SOD),peroxidase(POD),catalase(CAT)and ascorbate peroxidase(APX)and non-enzymatic antioxidants like phenolics,flavonoid,ascorbic acid,anthocyanin and proline contents increased up to a Cd level of 0.5 mg/kg in the soil but were significantly diminished at the highest Cd level of 1 mg/kg in the soil compared to those plants which were grown without the addition of Cd in the soil.The negative impacts of Cd injury were reduced by the application of FeSO_(4) which increased plant growth and biomass,improved photosynthetic apparatus,antioxidant enzymes,minerals uptake together with diminished exudation of organic acids as well as oxidative stress indicators in roots and shoots of O.sativa by decreasing Cd retention in different plant parts.These results shed light on the effectiveness of FeSO_(4) in improving the growth and upregulation of antioxidant enzyme activities of O.sativa in response to Cd stress.However,further studies at field levels are required to explore the mechanisms of FeSO_(4)-mediated reduction of the toxicity of not only Cd,but possibly also other heavy metals in plants. | JAVARIA AFZAL XIUKANG WANG MUHAMMAD HAMZAH SALEEM XUECHENG SUN SHAHID HUSSAIN IMRAN KHAN MUHAMMAD SHOAIB RANA SHAKEEL AHMED SAMRAH AFZAL AWAN SAJID FIAZ OMAR AZIZ KASHIF ALI KUBAR SHAFAQAT ALI CHENGXIAO HU | 2021 | BIOCELL2021,45,6: | 0 |