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Raizada, A.

Publications and source records attributed to Raizada, A..

2 recordsLinked to original sources

Comparative Transcriptomic Analysis Revealed Complex Molecular Mechanisms Underlying Pests, Pathogens Resistance and Seed Development in Wild and Cultivated Blackgram

Blackgram is a widely cultivated pulse crop in Asia. Bruchid pests and yellow mosaic disease (YMD) causes huge loss in legume production including blackgram. Blackgram wild accession (Vigna mungo var. silvestris), Trombay wild urd (INGR10133) conferred resistance to bruchids especially Callosobruchus maculatus, through antibiosis. However, the mechanisms still remains uncharacterized. We performed the comparative transcriptome analysis of the developing seeds of wild and cultivated blackgram with contrasting phenotypes for 3 traits, bruchids infestation, YMD and seed size. In this study,715differentially expressed genes(DEGs) were re-annotated with reference to NCBI nr database. RNA-Seq was validated by quantitative real-time PCR for 22 DEGs. In Trombay wild, defense related components such as acid phosphatase, vicilins, trypsin inhibitor, brassinosteroid signalling components were found up-regulated. While in cultivar, transcripts for LEA, cysteine protease, autophagy related proteins(ATG3, ATG5, ATG8C and ATG1t), DnaJ, tobamovirus multiplication protein, downy mildew resistance protein, LRR/F-box proteins were found up-regulated. In TW, three transcripts were found common for both bruchids pest and geminivirus resistance (LRR receptor kinase, transmembrane protein 87b and thaumatin like protein).Our study is the first report on transcriptomic differences between wild and cultivated blackgram with new insights into the molecular networks underlying seed development, resistance to pests and pathogens.

genomics

Draft genome sequence of the pulse crop blackgram reveals potential R-genes.

Blackgram [Vigna mungo (L.) Hepper] (2n = 2x = 22), an important Asiatic legume crop, is a major source of dietary protein for the predominantly vegetarian population. Here we construct a draft genome sequence of blackgram, for the first time, by employing hybrid genome assembly with Illumina reads and third generation Oxford Nanopore sequencing technology. The final de novo whole genome of blackgram is ~ 475 Mb (82 % of the genome) and has maximum scaffold length of 6.3 Mb with scaffold N50 of1.42 Mb. Genome analysis identified 18655 genes with mean coding sequence length of 970bp. Around 96.7 % of predicted genes were annotated. Nearly half of the assembled sequence is composed of repetitive elements with retrotransposons as major (47.3% of genome) transposable elements, whereas, DNA transposons made up only 2.29% of the genome. A total of 166014 SSRs, including 65180 compound SSRs, were identified and primer pairs for 34816 SSRs were designed. Out of the 18665 proteins, 678 proteins showed presence of R-gene related domains. KIN class was found in majority of the proteins (372) followed by RLK (79) and N (79). The genome sequence of blackgram will facilitate identification of agronomically important genes and accelerate the genetic improvement of blackgram.

genomics