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| 1 | Characterization of chickpea germplasm conserved in the Indian National Genebank and development of a core set using qualitative and quantitative trait data显示文摘Chickpea is the third most important pulse crop as a source of dietary protein. Ever-increasing demand in Asian countries calls for breeding superior desi-type varieties, in turn necessitating the availability of characterized germplasm to breeders. The Indian National Genebank,located at the National Bureau of Plant Genetic Resources, New Delhi, conserves 14,651 accessions of chickpea. The entire set was characterized in a single large-scale experiment.High variation was observed for eight quantitative and 12 qualitative agro-morphological traits. Allelic richness procedure was employed to assemble a core set comprising 1103 accessions, 70.0% of which were of Indian origin. Comparable values of total variation explained by the first three principal components in the entire collection(51.1%) and the core(52.4%)together with conservation of nine pairwise r values among quantitative traits in the core collection and a coincidence rate around 99.7% indicated that the chickpea core was indeed an excellent representation of the entire chickpea collection in the National Genebank. The chickpea core exhibited greater diversity than the entire collection in agro-morphological traits, as assessed by higher variance and Shannon–Weaver diversity indices, indicating that the chickpea core maximized the phenotypic diversity available in the Indian chickpea germplasm. The chickpea core, comprising mainly indigenous desi genotypes, is expected to be an excellent resource for chickpea breeders. Information on the chickpea core can be accessed at http://gffzz905398e276204fc7hxc9wnqqq90cp6vvc.ffgz.tsg.suse.edu.cn/pgrportal. | Sunil Archak Rishi K.Tyagi P.N.Harer L.B.Mahase Neeta Singh Om P.Dahiya M.Abdul Nizar Mohar Singh Vrushali Tilekar Vikas Kumar Manoranjan Dutta Narendra P.Singh Kailash C.Bansal | 2016 | The Crop Journal2016,4,5: | 7 |
| 2 | Potential of plant growth-promoting rhizobacteria-plant interactions in mitigating salt stress for sustainable agriculture:A review显示文摘Soil salinization affecting different crops is one of the serious threats to global food security.Soil salinity affects 20%and 33%of the total cultivated and irrigated agricultural lands,respectively,and has been reported to caused a global crop production loss of 27.3 billion USD.The conventional approaches,such as using salt-tolerant varieties,saline soil scrapping,flushing,leaching,and adding supplements (e.g.,gypsum and lime),often fail to alleviate stress.In this context,developing diverse arrays of microbes enhancing crop productivity under saline soil conditions without harming soil health is necessary.Various advanced omics approaches have enabled gaining new insights into the structure and metabolic functions of plant-associated beneficial microbes.Various genera of salt-tolerating rhizobacteria ameliorating biotic and abiotic stresses have been isolated from different legumes,cereals,vegetables,and oil seeds under extreme alkaline and saline soil conditions.Rapid progress in rhizosphere microbiome research has revived the belief that plants may be more benefited from their association with interacting diverse microbial communities as compared with individual members in a community.In the last decade,several salt-tolerating plant growth-promoting rhizobacteria (PGPR) that improve crop production under salt stress have been exploited for the reclamation of saline agrosystems.This review highlights that the interaction of salt-tolerating microbes with plants improves crop productivity under salinity stress along with potential salt tolerance mechanisms involved and will open new avenues for capitalizing on cultivable diverse microbial communities to strengthen plant salt tolerance and,thus,to refine agricultural practices and production under saline conditions. | Kailash Chand KUMAWAT Sharon NAGPAL Poonam SHARMA | 2022 | Pedosphere2022,32,2: | 5 |
| 3 | Weight Loss During Radiotherapy for Head and Neck Malignancies: What Factors Impact It?显示文摘 | Anusheel Munshi Manish Bhushan Pandey Tarun Durga Kailash Chander Pandey Sudhir Bahadur Bidhu Kalyan Mohanti | 2003 | Nutrition and Cancer2003,,2: | 2 |
| 4 | Understanding Brown Planthopper Resistance in Rice: Genetics, Biochemical and Molecular Breeding Approaches显示文摘Brown planthopper(BPH,Nilaparvata lugens St自I)is the most devastating pest of rice in Asia and causes significant yield loss annually.Around 37 BPH resistance genes have been identified so far in indica,African rice varieties along with wild germplasms such as Oryza officinalis,O.minuta,O.nivara,O.punctata,O.rufipogon and O,latifolia.Genes/QTLs involved in BPH resistance,including Bph1,bph2/BPH26,Bph3,Bph6,bph7,BPH9,Bph12,Bph14,Bph15,Bph17,BPH18,bph19,Bph20,Bph21(t),Bph27,Bph27©Bph28(t),BPH29,QBph3,QBph4,QBph4.2,Bph30,Bph32,Bph33,Bph35 and Bph36,have been fine-mapped by different researchers across the globe.The majority of genes/QTLs are located on rice chromosomes 1,3,4,6,11 and 12.Rice plants respond to BPH attack by releasing various endogenous metabolites like proteinase inhibitors,callose,secondary metabolites(terpenes,alkaloids,flavonoid,etc.)and volatile compounds.Besides that,hormonal signal pathways mediating(antagonistic/synergistic)resista nee responses in rice have been well studied.Marker-assisted breedi ng and genome editi ng techniq ues can also be adopted for improving resista nee to novel BPH biotypes. | Lakesh MUDULI Sukanta Kumar PRADHAN Abinash MISHRA Debendra Nath BASTIA Kailash Chandra SAMAL Pawan Kumar AGRAWAL Manasi DASH | 2021 | Rice science2021,28,6: | 2 |
| 5 | Resection of Large Hepatocellular Carcinoma Using the Combination of Liver Hanging Maneuver and Anterior Approach显示文摘 | Chih-Chi Wang Kailash Jawade Anthony Q. Yap Allan M. Concejero Chi-Yin Lin Chao-Long Chen | 2010 | World Journal of Surgery2010,,8: | 2 |
| 6 | Pullout Simulation of Postinstalled Chemically Bonded Anchors显示文摘 | Michael McVay Ronald A. Cook Kailash Krishnamurthy | 1996 | Journal of Structural Engineering1996,,9: | 2 |
| 7 | Estimating the weight of children in Nepal by Broselow, PAWPER XL and Mercy method显示文摘BACKGROUND: Resuscitation of a critically-ill child requires an accurate weight for fluids and medication dosing; however, weighing children on a scale while critically ill is not always practical. The objective of this study is to determine the accuracy of three different weight estimation methods(Broselow, PAWPER XL and Mercy tape) of children presenting to Patan Hospital, Nepal.METHODS: This was a prospective, cross-sectional study that included children presenting to the emergency department and under-fourteen outpatient clinic at Patan Hospital. Measured weight was compared to estimated weight of Broselow, PAWPER XL, and Mercy tapes. The mean percentage error and percentage of estimated weights that were within 10%(PW10) and 20%(PW20) of actual weight were calculated. Acceptable accuracy was determined as a PW10>70% and PW20>95%. A Bland-Altman analysis was done to determine agreement between each weight estimation method and actual weight.RESULTS: The study included 813 children. The mean age was 4.2 years(ranging from 4 days to 14 years) with 60% male. The mean percentage error(MPE) for Broselow, PAWPER XL and Mercy were –1.0%(SD 11.8), 0.7%(10.5) and 4.2%(11.9) respectively. The predicted weight within 10% was highest for the PAWPER XL(71.5%) followed by Broselow(63.2%) and Mercy(58.1%). The predicted weight within 20% of actual weight was 95.2%, 91.5% and 91.3% for PAWPER XL, Broselow and Mercy respectively.CONCLUSION: The PAWPER XL tape was the only method found to be accurate in estimating the weight of Nepalese children. | Karun Shrestha Prakriti Subedi Oshna Pandey Likhita Shakya Kailash Chhetri Darlene R.House | 2018 | World Journal of Emergency Medicine2018,9,4: | 1 |
| 8 | Agricultural biotechnology for crop improvement in a variable climate: hope or hype?显示文摘 | Rajeev K. Varshney Kailash C. Bansal Pramod K. Aggarwal Swapan K. Datta Peter Q. Craufurd | 2011 | Trends in Plant Science2011,,7: | 1 |
| 9 | A volume decomposition approach to machining feature extraction of casting and forging components 显示文摘 | Kailash S B Zhang Y F Fuh J Y H | 2001 | Computer-Aided Design2001,33,8: | 1 |
| 10 | Evaluation of the individuality of white rot macro fungus for the decolorization of synthetic dye显示文摘 | Priyanka Pandey Ram Praksh Singh Kailash Nath Singh Paramasivam Manisankar | 2013 | Environmental Science and Pollution Research2013,,1: | 1 |
| 11 | Incidence and management of white grub, Schizonycha ruficollis on seedlings of teak (Tectona grandis Linn, f,)显示文摘调查在圣甲虫甲壳虫的发生上在 5 月的第二个星期和 9 月的结束之间从 2002 ~ 2005 每年被进行,在一棵柚木的 Schizonycha ruficollis (赘言作家)(Tectona 宏大是 L.f ) 在 Ramdongari 的托儿所, Nagpur,印度。不成熟的阶段,那是白的,圣甲虫甲壳虫的蛴螬在苗床损坏了柚木幼苗的 14%-52% 种类的成年人,那是圣甲虫甲壳虫,在三棵新主人树上被记录(Ziziphus xylopyra,相思树阿仙药和 A。leucophloea ) 除了象 ziziphus 那样的报导主人(Z。jujuba 和 Z。mauritiana ) 。S 的甲壳虫。ruficollis 开始就在季风前淋浴以后从苗床出现并且继续 10-18 天。当时 5 的甲壳虫。ruficollis 落叶在环境可得到的树主人,甲壳虫的不成熟的阶段由用在森林苗床枯萎和死亡的症状在柚木幼苗的根系上喂引起了主要损坏。为 S 的蛴螬的管理的化学、生物的处理的结果。在苗床的 ruficollis 显示了 phorate 10% 以 20 g/m^2 和 chlorpyriphos 的率小粒 20% 可使乳化以 5.0 mL/m^2 的率专注有效。S 的蛴螬。ruficollis 没作为柚木的一个主要害虫以前被记录(T。宏大) 。这也是 S 的出现上的第一份报告。象 Z 那样的树主人上的 ruficollis 成年人。xylopyra,一。阿仙药和 A。leucophloea。白蛴螬是经济重要性和最坚韧的昆虫的害虫设法,在发生,害虫地位和 Schizonycha ruficollis 的管理上在这篇论文给的信息具有到研究人员和森林托儿所经理的重要性。 | NITIN KULKARNI KAILASH CHANDRA PRAFULLA NARAHAR WAGH KAILASH CHANDRA JOSHI RAM BHAJAN SINGH | 2007 | Insect Science2007,14,5: | 1 |
| 12 | An M/G/1 queue with second optional service显示文摘 | Kailash C Madam | | 0,,: | 1 |
| 13 | Storage Space Costs and the EOQ Model显示文摘 | Kailash Joshi | 1990 | Journal of Purchasing and Materials Management1990,26,3: | 1 |
| 14 | Evalution of hydroxyl radical-scavenging property of garlic显示文摘 | Kailash P Victor A | | 0,,: | 1 |
| 15 | Laparoscopic surgery and its potential for medical complications显示文摘 | Kailash C. Sharma Gary Kabinoff Yvan Ducheine Jennifer Tierney Robert D. Brandstetter | 1997 | Heart & Lung - The Journal of Acute and Critical Care1997,,1: | 1 |
| 16 | Clinical practice guide lines for vascular access显示文摘 | Kailash K J indal C Jean H | 1999 | AJKD1999,10,: | 1 |
| 17 | Antiplasmodial activity of silver nanoparticles: A novel green synthesis approach显示文摘Objective:To synthesize silver nanoparticles using silver nitrate by a green technique which involves different compositions of aqueous leaf extracts of Azadirachta indica(neem)and Ocimum sanctum(tulsi).Methods:Their shape and size were determined using transmission electron microscopy and UV-visible spectroscopy.Their antiplasmodial activity was studied using the malarial parasite strain(Plasmodium falciparum,3D7).The parasite strain(3D7)was collected and revived in vitro using Trager and Jensen method in RPMI 1640 medium for 7-8cycles.Half maximal effective concentration values were calculated by nonlinear regression analysis.Results:Transmission electron microscopy results confirmed the formation of silver nanoparticles with size ranging from 4.74-39.32 nm and their size differs by varying the concentrations from 20%to 100%of neem extract in neem and tulsi extracts.It was observed that samples B and C showed half maximum effective concentration of about 0.3μM.Conclusions:It can be easily established that the aqueous leaf extracts of neem and tulsi in combination can be a good source for synthesis of silver nanoparticles with small size possessing appreciable antiplasmodial activity. | Madhur Sardana Varnika Agarwal Akansha Pant Vinita Kapoor Kailash C.Pandey Sanjay Kumar | 2018 | Asian Pacific Journal of Tropical Biomedicine2018,8,5: | 1 |
| 18 | Antihypertensive activity of secoisolaricires-inol diglucoside (SDG) isolated from flaxseed : role ofguany- late cyclase显示文摘 | Kailash Prasad | 2004 | Int J Angio2004,13,: | 1 |
| 19 | Telomerase activity as an adjunct to high-risk human papillomavirus types 16 and 18 and cytology screening in cervical cancer显示文摘 | Kailash U Soundararajan CC Lakshmy R | 2006 | Br J Cancer2006,95,9: | 1 |
| 20 | Effects of probucol on hypercholesterolemia - induced changes in antioxidant enzymes显示文摘 | Subrahmanyam VM Jawahar K Kailash P | 1996 | Life Sci1996,58,: | 1 |