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Dive into the research topics where Shahzad A. Pandith is active.

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Featured researches published by Shahzad A. Pandith.


Molecular Biology Reports | 2013

Dynamics of withanolide biosynthesis in relation to temporal expression pattern of metabolic genes in Withania somnifera (L.) Dunal: a comparative study in two morpho-chemovariants

Niha Dhar; Satiander Rana; Wajid Waheed Bhat; Sumeer Razdan; Shahzad A. Pandith; Shabnam Khan; Prabhu Dutt; Rekha S. Dhar; Samantha Vaishnavi; Ram A. Vishwakarma; Surrinder K. Lattoo

Withania somnifera (L.) Dunal synthesizes large array of pharmacologically active secondary metabolites known as withanolides. It has been extensively investigated in terms of chemistry and bioactivity profiling. However, there exists fragmentary information about the dynamics of withanolide biosynthesis at different phenophases in concert with the expression analysis of key pathway genes. In the present study, two morpho-chemovariants of W. somnifera were harvested at five developmental stages, dissected into leaf and root tissues and assayed for three major withanolides viz. withanolide-A (WS-1), withanone (WS-2) and withaferin A (WS-3) content using high performance liquid chromatography. The present investigation also analyzed the expression pattern of five withanolide biosynthetic pathway genes namely squalene synthase, squalene epoxidase, cycloartenol synthase, cytochrome P450 reductase 1, cytochrome P450 reductase 2 to corroborate with the metabolite flux at different developmental stages. The relative transcript profiles of identified genes at various ontogenetic stages illustrated significant variation in leaf and root tissues and were largely concurrent with the alteration in withanolide pool. Comparatively, the concentrations of withanolide A, withanone and withaferin A along with expression levels of all the five genes were appreciably higher in the leaves than in roots. Relative dynamics in terms of quantitative and qualitative profiles of withanolides in leaf and root tissues revealed least correspondence between the pattern of accumulation, possibly indicting towards de novo tissue-specific biosynthesis.


BMC Biotechnology | 2014

Molecular characterization of two A-type P450s, WsCYP98A and WsCYP76A from Withania somnifera (L.) Dunal: expression analysis and withanolide accumulation in response to exogenous elicitations

Satiander Rana; Wajid Waheed Bhat; Niha Dhar; Shahzad A. Pandith; Sumeer Razdan; Ram A. Vishwakarma; Surrinder K. Lattoo

BackgroundPharmacological investigations position withanolides as important bioactive molecules demanding their enhanced production. Therefore, one of the pivotal aims has been to gain knowledge about complete biosynthesis of withanolides in terms of enzymatic and regulatory genes of the pathway. However, the pathway remains elusive at the molecular level. P450s monooxygenases play a crucial role in secondary metabolism and predominantly help in functionalizing molecule core structures including withanolides.ResultsIn an endeavor towards identification and characterization of different P450s, we here describe molecular cloning, characterization and expression analysis of two A-type P450s, WsCYP98A and WsCYP76A from Withania somnifera. Full length cDNAs of WsCYP98A and WsCYP76A have open reading frames of 1536 and 1545 bp encoding 511 (58.0 kDa) and 515 (58.7 kDa) amino acid residues, respectively. Entire coding sequences of WsCYP98A and WsCYP76A cDNAs were expressed in Escherichia coli BL21 (DE3) using pGEX4T-2 expression vector. Quantitative real-time PCR analysis indicated that both genes express widely in leaves, stalks, roots, flowers and berries with higher expression levels of WsCYP98A in stalks while WsCYP76A transcript levels were more obvious in roots. Further, transcript profiling after methyl jasmonate, salicylic acid, and gibberellic acid elicitations displayed differential transcriptional regulation of WsCYP98A and WsCYP76A. Copious transcript levels of both P450s correlated positively with the higher production of withanolides.ConclusionsTwo A-types P450 WsCYP98A and WsCYP76A were isolated, sequenced and heterologously expressed in E. coli. Both P450s are spatially regulated at transcript level showing differential tissue specificity. Exogenous elicitors acted as both positive and negative regulators of mRNA transcripts. Methyl jasmonate and salicylic acid resulted in copious expression of WsCYP98A and WsCYP76A. Enhanced mRNA levels also corroborated well with the increased accumulation of withanolides in response to elicitations. The empirical findings suggest that elicitors possibly incite defence or stress responses of the plant by triggering higher accumulation of withanolides.


Plant Physiology | 2016

Functional Promiscuity of Two Divergent Paralogs of Type III Plant Polyketide Synthases

Shahzad A. Pandith; Niha Dhar; Satiander Rana; Wajid Waheed Bhat; Manoj Kushwaha; Ajai Prakash Gupta; Manzoor A. Shah; Ram A. Vishwakarma; Surrinder K. Lattoo

Evolutionary and functional divergence of gene paralogs expressing polyketide synthases from Rheum emodi play into secondary metabolism and substrate selectivities. Plants effectively defend themselves against biotic and abiotic stresses by synthesizing diverse secondary metabolites, including health-protective flavonoids. These display incredible chemical diversity and ubiquitous occurrence and confer impeccable biological and agricultural applications. Chalcone synthase (CHS), a type III plant polyketide synthase, is critical for flavonoid biosynthesis. It catalyzes acyl-coenzyme A thioesters to synthesize naringenin chalcone through a polyketidic intermediate. The functional divergence among the evolutionarily generated members of a gene family is pivotal in driving the chemical diversity. Against this backdrop, this study was aimed to functionally characterize members of the CHS gene family from Rheum emodi, an endangered and endemic high-altitude medicinal herb of northwestern Himalayas. Two full-length cDNAs (1,179 bp each), ReCHS1 and ReCHS2, encoding unique paralogs were isolated and characterized. Heterologous expression and purification in Escherichia coli, bottom-up proteomic characterization, high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry analysis, and enzyme kinetic studies using five different substrates confirmed their catalytic potential. Phylogenetic analysis revealed the existence of higher synonymous mutations in the intronless divergents of ReCHS. ReCHS2 displayed significant enzymatic efficiency (Vmax/Km) with different substrates. There were significant spatial and altitudinal variations in messenger RNA transcript levels of ReCHSs correlating positively with metabolite accumulation. Furthermore, the elicitations in the form of methyl jasmonate, salicylic acid, ultraviolet B light, and wounding, chosen on the basis of identified cis-regulatory promoter elements, presented considerable differences in the transcript profiles of ReCHSs. Taken together, our results demonstrate differential propensities of CHS paralogs in terms of the accumulation of flavonoids and their relative substrate selectivities.


PLOS ONE | 2017

Molecular and functional characterization of two isoforms of chalcone synthase and their expression analysis in relation to flavonoid constituents in Grewia asiatica L

Tareq A. Wani; Shahzad A. Pandith; Ajai Prakash Gupta; Suresh Chandra; Namrata Sharma; Surrinder K. Lattoo

Chalcone synthase constitutes a functionally diverse gene family producing wide range of flavonoids by catalyzing the initial step of the phenylpropanoid pathway. There is a pivotal role of flavonoids in pollen function as they are imperative for pollen maturation and pollen tube growth during sexual reproduction in flowering plants. Here we focused on medicinally important fruit-bearing shrub Grewia asiatica. It is a rich repository of flavonoids. The fruits are highly acclaimed for various putative health benefits. Despite its importance, full commercial exploitation is hampered due to two drawbacks which include short shelf life of its fruits and larger seed volume. To circumvent these constraints, seed abortion is one of the viable options. Molecular interventions tested in a number of economic crops have been to impair male reproductive function by disrupting the chalcone synthase (CHS) gene activity. Against this backdrop the aim of the present study included cloning and characterization of two full-length cDNA clones of GaCHS isoforms from the CHS multigene family. These included GaCHS1 (NCBI acc. KX129910) and GaCHS2 (NCBI acc. KX129911) with an ORF of 1176 and 1170 bp, respectively. GaCHSs were heterologously expressed and purified in E. coli to validate their functionality. Functionality of CHS isoforms was also characterized via enzyme kinetic studies using five different substrates. We observed differential substrate specificities in terms of their Km and Vmax values. Accumulation of flavonoid constituents naringenin and quercetin were also quantified and their relative concentrations corroborated well with the expression levels of GaCHSs. Further, our results demonstrate that GaCHS isoforms show differential expression patterns at different reproductive phenological stages. Transcript levels of GaCHS2 were more than its isoform GaCHS1 at the anthesis stage of flower development pointing towards its probable role in male reproductive maturity.


Industrial Crops and Products | 2013

Altitudinal variability in anthraquinone constituents from novel cytotypes of Rumex nepalensis Spreng—a high value medicinal herb of North Western Himalayas

Umer Farooq; Shahzad A. Pandith; Manjit Inder Singh Saggoo; Surrinder K. Lattoo


South African Journal of Botany | 2014

Evaluation of anthraquinones from Himalayan rhubarb (Rheum emodi Wall. ex Meissn.) as antiproliferative agents

Shahzad A. Pandith; Aashiq Hussain; Wajid Waheed Bhat; Niha Dhar; Asif Khurshid Qazi; Satiander Rana; Sumeer Razdan; Tareq A. Wani; Manzoor A. Shah; Y.S. Bedi; Abid Hamid; Surrinder K. Lattoo


Functional & Integrative Genomics | 2014

An inducible NADPH–cytochrome P450 reductase from Picrorhiza kurrooa — an imperative redox partner of cytochrome P450 enzymes

Wajid Waheed Bhat; Satiander Rana; Niha Dhar; Sumeer Razdan; Shahzad A. Pandith; Ram A. Vishwakarma; Surrinder K. Lattoo


Journal of Plant Biochemistry and Biotechnology | 2017

Molecular characterization of DWF1 from Withania somnifera (L.) Dunal: its implications in withanolide biosynthesis

Sumeer Razdan; Wajid Waheed Bhat; Niha Dhar; Satiander Rana; Shahzad A. Pandith; Tareq A. Wani; Ram A. Vishwakarma; Surrinder K. Lattoo


Flora | 2015

Promiscuous breeding behaviour in relation to reproductive success in Grewia asiatica L. (Malvaceae)

Tareq A. Wani; Shahzad A. Pandith; Satiander Rana; Wajid Waheed Bhat; Niha Dhar; Sumeer Razdan; Suresh Chandra; Namrata Sharma; Surrinder K. Lattoo


Plant Molecular Biology | 2018

De novo transcriptome analyses reveals putative pathway genes involved in biosynthesis and regulation of camptothecin in Nothapodytes nimmoniana (Graham) Mabb.

Gulzar A. Rather; Arti Sharma; Shahzad A. Pandith; Veenu Kaul; Utpal Nandi; Prashant Misra; Surrinder K. Lattoo

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Surrinder K. Lattoo

Council of Scientific and Industrial Research

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Wajid Waheed Bhat

Council of Scientific and Industrial Research

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Niha Dhar

Council of Scientific and Industrial Research

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Satiander Rana

Council of Scientific and Industrial Research

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Sumeer Razdan

Council of Scientific and Industrial Research

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Ram A. Vishwakarma

Council of Scientific and Industrial Research

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Tareq A. Wani

Council of Scientific and Industrial Research

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Ajai Prakash Gupta

Council of Scientific and Industrial Research

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