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| 1 | Autochthonous halotolerant plant growth-promoting rhizobacteria promote bacoside A yield of Bacopa monnieri(L.)Nash and phytoextraction of salt-affected soil显示文摘Phytoremediation is a promising approach for reclamation of salt-affected soil.Phytoextraction is the most commonly used process,which exploits plants to absorb,immobilize,and accumulate salt in their shoots.In this study,halotolerant plant growth-promoting rhizobacteria(PGPR)were isolated from the rhizosphere of wild grasses growing naturally in salt-affected areas of Lucknow,Uttar Pradesh(India)and were tested for their efficacies of salt-tolerance and plant growth-promoting(PGP)abilities.Based on 16S rRNA sequences,the most efficient halotolerant isolates possessing PGP traits were identified as Pseudomonas plecoglossicida(KM 233646),Acinetobacter calcoaceticus(KM 233647),Bacillus flexus(KM 233648),and Bacillus safensis(KM 233652).Application of these isolates as bio-inoculants significantly(P<0.05)increased the growth and bacoside A yield of a medicinal plant,Bacopa monnieri(L.)Nash,grown on natural salt-affected soil.The phytoremediation of salt-affected soil was evident by the substantial increase in shoot Na^+:K^+ratio of bio-inoculant-treated plants.When compared to un-inoculated control plants,the soil physico-chemical properties of bio-inoculant-treated plants were improved.The shoot and root biomass(fresh and dry weights),soil enzymes,and soil nutrient parameters showed significant positive correlations with the shoot Na+:K+ratio.Consequently,the halotolerant PGPR screened in this study could be useful for the reclamation of saline soils concomitant with improved plant growth and bacoside A yield. | Umesh PANKAJ Durgesh Narain SINGH Pooja MISHRA Pooja GAUR C.S.Vivek BABU Karuna SHANKER Rajesh Kumar VERMA | 2020 | Pedosphere2020,30,5: | 9 |
| 2 | Strategies to mitigate the adverse effect of drought stress on crop plants-influences of soil bacteria:A review显示文摘Drought stress affects plant growth and causes significant issues in meeting global demand for food crops and fodder.Drought can cause physiological,physicochemical,and morphological changes in plants,which negatively affects plant growth and productivity.To combat this under the increasing global threat of water shortage and rapid population expansion,it is crucial to develop strategies to meet global food demands.Plant growth-promoting rhizobacteria(PGPR)may provide a safe solution to enhancing crop yields through various mechanisms.These soil bacteria can provide drought tolerance to crop plants,allowing them to survive and thrive in water-scarce conditions.Productions of phytohormones,free radical-scavenging enzymes,and stress-combating enzymes that can increase tolerance to drought-induced stress are key features of plant-associated microbial communities.This review summarizes the beneficial properties of microbes that help plants tolerate water scarcity and highlights the bacterial mechanisms that enhance drought tolerance in plants. | Priyanka CHANDRA Amoolya WUNNAVA Pooja VERMA Amaresh CHANDRA Rakesh Kumar SHARMA | 2021 | Pedosphere2021,31,3: | 4 |
| 3 | From bacterial genomics to metagenomics: concept, tools and recent advances显示文摘 | Pooja Sharma Hansi Kumari Mukesh Kumar Mansi Verma Kirti Kumari Shweta Malhotra Jitendra Khurana Rup Lal | 2008 | Indian Journal of Microbiology2008,,2: | 1 |
| 4 | Iridoid glycosides from Gmelina arborea显示文摘 | Neerja Tiwari Akhilesh K. Yadav Pooja Srivastava Karuna Shanker Ram K. Verma Madan M. Gupta | 2008 | Phytochemistry2008,,12: | 1 |
| 5 | Bilateral facial weakness following dengue fever显示文摘Dengue,an acute viral disease transmitted by Aedes mosquitoes,is highly endemic in many tropical and subtropical areas of the world.Dengue has a wide clinical spectrum,ranging from mild clinical febrile illness to severe life-threatening conditions like dengue hemorrhagic fever and dengue shock syndrome.Neurological complications of dengue infection have been observed more frequently in the recent past.They are widespread and may involve almost all parts of nervous system through various pathogenic mechanisms.We report a case of a 30-year old male who developed bilateral facial weakness after dengue fever. | Samir Patel Rajeev Ranjan Ritu Verma C.S.Agrawal Pooja Gupta | 2016 | Neuroimmunology and Neuroinflammation2016,3,1: | 0 |
| 6 | Enhanced osseointegration of drug eluting nanotubular dental implants: An in vitro and in vivo study显示文摘Faster and predictable osseointegration is crucial for the success of dental implants, especially in patients with compromised local or systemic conditions. Despite various surface modifications on the commercially available Titanium (Ti) dental implants, the bioactivity of Ti is still low. Thus, to achieve both biological and therapeutic activity on titanium surfaces, surface modification techniques such as titanium nanotubes have been studied as nanotube surfaces can hold therapeutic drugs and molecules. The main aim of the present research work is to study the early osseointegration around the novel Simvastatin drug eluting nanotubular dental implant. In the present research, the titanium nanotubes were fabricated on the screw-shaped dental implant surface and the Simvastatin drug was loaded into the nanotubes using the ultrasonication dip method. In vitro and In vivo studies were carried out on the modified dental implants. In vitro cell culture study reported enhanced osteogenic activity on the drug-loaded nanotube surface implants. The in vivo animal studies were evaluated by micro-CT, histopathology, and reverse torque removal analysis methods. The test results showed faster osseointegration with the strong interface on the Simvastatin drug-loaded implant surface at 4 weeks of healing as compared to the control implants. | Pankaj Chauhan Alok Srivastava Pooja Bhati Manish Chaturvedi Vinay Patil Sriram Kunnoth Nisha Kumari Vedpal Arya Madhur Pandya Mohit Agarwal Smiti Bhardwaj Farrukh Faraz Sanjay Chauhan Mahesh Verma Veena Koul Naresh Bhatnagar | 2023 | Bioactive Materials2023,,10: | 0 |
| 7 | Clinical effect of Ayurveda medicine in recurrent post-operative ovary carcinoma: a case report显示文摘Background Abnormal growth of cell called as cancer or malignancy.Although it may be seen in any age,more commonly seen in patients more than 50 years of age.where epithelial ovarian cancer has been commonly seen[1].Approximately 70%of ovarian cancers have been diagnosed at progressive stage where only 30%of women suffering from this cancer,expect to survive up to 5 years.Ovarian malignancy constitutes about 15-20 percent of genital malignancy.In India the incidence of ovarian carcinoma(age adjustable to range from 1.7 to 15.2 from 2012 to 2014)in various population-based registers of cancer.Approximately 59,276 have been estimated as new ovarian cancer causes by the end of 2020 and twenty percent of neoplasms are malignant.It is the fourth most common cause of cancer death in women exceeded only by breast,colon and lung malignancies.Again,the recurrent ovarian cancer is a fatal disease with few survivors.Despite the fact that most patients have uniform surgery and chemotherapy,the status of recurring disease varies.The location of recurrence and the periods between recurrences are likewise widely dispersed.After recurrence,approximately 70%of advanced stage ovarian cancer patients relapse,and even in stage I or II patients,the relapse rate is 20%-25%.Because the survival curve following recurrence never plateaus,the goal of treatment for recurrent ovarian cancer is to control the disease and its symptoms,limit treatment-related damage,and preserve or improve quality of life[2].There seems to be no doubt that Ayurveda,with its holistic approach,is the finest way to limit the adverse treatment outcomes while also enhancing the patient’s quality of life. | Pooja Verma Priyanka Katru Sharad Porte | 2022 | TMR Integrative Medicine2022,6,13: | 0 |
| 8 | 石墨炔:一种用于合成水污染物有效吸附剂的新型炭材料显示文摘石墨炔(GDY)是一种新生的二维材料,其在去除水溶液中污染物的研究方面引起了广泛关注。GDY是sp和sp2杂化碳原子的框架,其在二维对称网络中存在苯环和二乙基键,因此具有优异的共轭性、独特的可调谐电子性能、以及优异的化学和热稳定性。GDY的分子中有C≡C键,且具有均匀分布的三角形孔,可提供更多的反应位点和多种反应路径。因而,GDY具有吸附性,其作为吸附剂时在去除污染水中的油、有机污染物、染料和金属方面表现优异。在已发表的文献中,GDY被用作吸附剂的报道十分有限。本文综述了GDY的合成方法、GDY作为吸附剂的应用以及GDY基吸附剂的表征,并展望了GDY在污染物修复中的应用前景。 | Gaurav Sharma Yaksha Verma Amit Kumar Pooja Dhiman WANG Tong-tong Florian JStadler | 2024 | 新型炭材料(中英文)2024,39,2: | 0 |