Publications by authors named "Jyoti Rajak"

Allele variants HLA-C*01:02:01:74Q and -C*15:02:01:63 differ from -C*01:02:01:01 and -15:02:01:01 by a single nucleotide, respectively.

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The novel HLA-B*15:665 and HLA-C*12:02:02:23 alleles were detected during the routine HLA typing process.

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Novel HLA-A*33:03:62, -B*52:01:01:25 alleles and confirmatory HLA-A*02:01:209 allele were detected during the HLA typing process.

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The novel allele, HLA-B*40:02:01:39 differs from the HLA-B*40:02:01:01 allele by a single nucleotide change at gDNA position 700.

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The novel allele HLA-A*24:02:01:136 as compared with HLA-A*24:02:01:01 displays a single nucleotide polymorphism at position; gDNA 2827 (C > A).

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HLA-DPA1*02:82 differs from DPA1*02:01:01:02 by a single nucleotide at gDNA 4890 in exon 4.

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The novel alleles HLA-A*68:175:02 and -A*68:287 each differ from -A*68:01:02:02 by a single nucleotide.

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The novel allele HLA-C*04:01:01:129 as compared to HLA-C*04:01:01:01 displays polymorphism at two positions; gDNA 2905 (C → T) and 2910 (T → A).

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The novel HLA-B*52:01:01:18 allele differs from HLA-B*52:01:01:02 by A→C nucleotide change at gDNA -155.

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The novel HLA-B*51:01:01:83 allele differs from HLA-B*51:01:01:01 by A- > G nucleotide substitution at gDNA 2569.

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The novel HLA-B*13:02:01:18 allele differs from HLA-B*13:02:01:01 by A->G nucleotide change at gDNA 2477.

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The novel allele HLA-DPB1*02:01:61 as compared with HLA-DPB1*02:01:02 displays polymorphism by a single nucleotide at gDNA 9011 C->T.

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The novel HLA-C*04:01:01:102 allele differs from HLA-C*04:01:01:01 by G → A nucleotide change at gDNA 2591.

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The novel HLA-C*14:02:01:22 allele differs from HLA-C*14:02:01:01 by a nucleotide change at gDNA -156 C → T.

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Background: In recent years, agro-bionanotechnology has paved the way towards revolutionizing current practices in the food and agricultural fields. In the present study, the effect of copper nanoparticles (CuNPs) alone and in combination with the growth-promoting fungus Piriformospora indica on 2-week-old seedlings of Cajanus cajan was evaluated. Gelatin-coated stable CuNPs were synthesized by the chemical reduction method using hydrazine hydrate as a reducing agent.

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