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12篇 您的检索式:作者名="KAILASH Singh"
    题名 作者 年代 出处 被引量
1Characterization 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://gffzz905398e276204fc7hu0pocn9w99nc6p0o.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 2016The Crop Journal2016,4,5:7
2Evaluation 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 2013Environmental Science and Pollution Research2013,,1:1
3Incidence 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 2007Insect Science2007,14,5:1
4Model predictive control and neural network predictive control of TAME reactive 显示文摘NEHA Sharma KAILASH Singh 2012Chemical Engineering and Processing : Process Intensification2012,59,:1
5Clinical significance of anti-Sin antibody in systemic lupus erythematosus & related disorders显示文摘SINGH R R MALAVIYA A N KAILASH S 1991Indian J Med Res1991,94,:1
6Clinical significance of antibody in systemic lupus crythematosus & related disorders 显示文摘Singh RR Malaviya AN Kailash S 1991Indian J Med Res1991,94,:1
7HER2 status predicts the presence of circulating tumor cells in patients with operable breast cancer显示文摘Julie E. Lang Kailash Mosalpuria Massimo Cristofanilli Savitri Krishnamurthy James Reuben Balraj Singh Isabelle Bedrosian Funda Meric-Bernstam Anthony Lucci 2009Breast Cancer Research and Treatment2009,,3:1
8Clinical significance of anti - Sm antibody in systemic lupus erythematosus & related disorders显示文摘Singh RR Malaviya AN Kailash S 1991Indian J Med Res1991,94,:1
9Polyethylenimine nanoparticles as efficient transfecting agents for mammalian cells显示文摘Surendra Nimesh Anita Goyal Vikas Pawar Sujatha Jayaraman Pradeep Kumar Ramesh Chandra Yogendra Singh Kailash C. Gupta 2005Journal of Controlled Release2005,,2:1
10Cobalt exchanged zeolites for heterogeneous catalytic oxidation of phenol in the presence of peroxymonosulphate 显示文摘Pradeep Shukla Shaobin Wang Kailash Singh 2010Applied Catalysis B : Environmental2010,99,12:1
11Silicon and plant nutrition—dynamics,mechanisms of transport and role of silicon solubilizer microbiomes in sustainable agriculture:A review显示文摘Silicon(Si)is the second most abundant element in the Earth’s crust and has numerous roles in both soils and plants,although it is inaccessible to plants in its native state(insoluble silicate minerals).This inaccessibility can lead to insufficiency,which induces anomalies in plant growth and development.Specifically,Si alleviates various biotic and abiotic stresses in plants by enhancing tolerance mechanisms at different stages of uptake/deposition as a monosilicic acid.Exclusive utilization of conventional Si fertilizers to boost agricultural productivity in an attempt to meet the world’s ever-increasing food demand may result in surface and groundwater pollution,waterway eutrophication,soil fertility depletion,and accumulation of hazardous elements such as arsenic in soil.By addressing the drawbacks of chemical fertilizers,this review emphasizes an environmentally friendly alternative,namely,Si-solubilizing microorganisms(SSMs),as bioinoculants to liberate soluble Si and thus making it available to plants.A deep understanding of recent advances in the functional diversity,colonization patterns,modes of action,role in biogeochemical cycling,and plant stress tolerance of SSMs and their implementation in Si-based agrowaste management through the fabrication of nanoparticles,could help to establish a reliable tool for economically and environmentally sustainable agriculture.From this perspective,in this review,we comprehensively summarize the latest methodologies for the isolation,screening,and characterization of SSMs and Si solubilization mechanisms,including ligands(divalent cations),acids(inorganic and organic),alkali(nucleophilic attack),extracellular polysaccharides,and factors affecting them,as well as Si-mediated regulation of gene expression involved in Si uptake,transportation,and mineralization.We have critically revised the role of SSMs according to the current literature.The contributions of SSMs to biofertilization are still being explored;hence,we also discuss trajectories for future research in relation to SSM-mediated increases in bioavailable Si.This will create new strategies to reduce the use of agrochemicals,improve plant health,and help us to globally gravitate towards more sustainable agricultural practices,based on the concept of a circular economy.Barkha SHARMA Kailash Chand KUMAWAT Shalini TIWARI Ajay KUMAR Rouf Ahmad DAR Ummed SINGH Massimiliano CARDINALE 2023Pedosphere2023,33,4:0
12Co-inoculation of indigenous Pseudomonas oryzihabitans and Bradyrhizobium sp.modulates the growth,symbiotic efficacy,nutrient acquisition,and grain yield of soybean显示文摘Soil microbes play a vital role in improving plant growth,crop productivity,and soil health through solubilization of essential nutrients.Present investigation was conducted to access the efficacy of Bradyrhizobium sp.LSBR-3 and the indigenous phosphate-solubilizing Pseudomonas oryzihabitans LSE-3 in improving the symbiosis,nutrient accumulation,and yield of soybean.The isolate LSE-3,selected on the basis of phosphate solubilization,was screened for beneficial traits,antagonistic activities,and pathogenicity.The levels of indole acetic acid production(50.34±2.35μg mL^(-1)),phosphate solubilization(184.4±7.4 mg L^(-1)),biofilm formation(optical density at 560 mm,1.3896±0.04),siderophore production(121.46±1.61μg mL^(-1)),and 1-aminocyclopropane-1-carboxylate deaminase activity(0.51±0.07 mmolα-ketobutyrateμg^(-1) protein h^(-1))were significantly higher with the dual inoculants(LSBR-3 and LSE-3)than with the single inoculant LSBR-3.The plant growth-promoting traits of single and dual inoculants were evaluated for the synergistic effects on soybean under field conditions.Soybean plots treated with LSBR-3+LSE-3 exhibited improvement in seed germination,plant height,plant biomass,and chlorophyll content compared with the uninoculated control.Dual inoculant treatments resulted in significantly higher symbiotic efficacy evidenced by increased nodulation(40.0±0.75 plant^(-1)),nodule biomass(188.52±6.29 mg plant^(-1)),and leghemoglobin content(11.02±0.83 mg g^(-1) fresh nodule),and significantly increased activities of phosphatase(75.16±3.17 and 58.77±6.08μg p-nitrophenol g^(-1) h^(-1) for alkaline and acid phosphatase,respectively)and dehydrogenase(32.66±1.92μg triphenylformazan g^(-1) h^(-1))compared with the control.Dual inoculation with LSBR-3 and LSE-3 enhanced the uptake of macro-and micronutrients,reduced Na content in shoots,and resulted in 10.85%higher grain yield and ca.US$96.80 ha^(-1) higher profit compared with the control.This is the first report on the effectiveness of combined inoculation of LSE-3 and LSBR-3 in promoting the growth,symbiotic efficacy,and yield of soybean for sustainable agriculture.Kailash Chand KUMAWAT Inderjeet SINGH Sharon NAGPAL Poonam SHARMA Rajeev Kumar GUPTA Asmita SIRARI 2022Pedosphere2022,32,3:0
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