Sandip Das

About Sandip Das

Sandip Das, With an exceptional h-index of 19 and a recent h-index of 13 (since 2020), a distinguished researcher at University of Delhi, specializes in the field of Brassica, evolution, miRNA, Promoters, Polyploidy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Small RNAs in Plants: Are These Magic Bullets for Imparting Climate Resilience in Crops?

Comparative sequence and functional analysis of KCS6 and KCS5 from Arabidopsis thaliana and Brassica juncea establishes functional equivalency and role in stress management.

Complex origin, evolution, and diversification of non-canonically organized OVATE-OFP and OVATE-Like OFP gene pair across Embryophyta

Comparative genomics, microsynteny, ancestral state reconstruction and selection pressure analysis across distinctive genomes and sub-genomes of Brassicaceae for analysis of …

MIR159 regulates multiple aspects of stamen and carpel development and requires dissection and delimitation of differential downstream regulatory network for …

Phylogenetic and comparative genomics establishes origin of paralogy between homologs of AtMYB42 and AtMYB85 in last common ancestor of Brassicaceae via segmental duplication

Comprehensive analysis of 1R-and 2R-MYBs reveals novel genic and protein features, complex organisation, selective expansion and insights into evolutionary tendencies

Regulatory Genes in Development and Adaptation, and Their Utilization in Trait Improvement in Brassica juncea: Challenges and Opportunities

Sandip Das Information

University

Position

; and Hamdard University

Citations(all)

1718

Citations(since 2020)

787

Cited By

1229

hIndex(all)

19

hIndex(since 2020)

13

i10Index(all)

32

i10Index(since 2020)

22

Email

University Profile Page

Google Scholar

Sandip Das Skills & Research Interests

Brassica

evolution

miRNA

Promoters

Polyploidy

Top articles of Sandip Das

Title

Journal

Author(s)

Publication Date

Small RNAs in Plants: Are These Magic Bullets for Imparting Climate Resilience in Crops?

Sandip Das

Swati Singh

2024

Comparative sequence and functional analysis of KCS6 and KCS5 from Arabidopsis thaliana and Brassica juncea establishes functional equivalency and role in stress management.

Plant Molecular Biology Reporter

Swati Singh

R Geeta

Sandip Das

2023/12

Complex origin, evolution, and diversification of non-canonically organized OVATE-OFP and OVATE-Like OFP gene pair across Embryophyta

Gene

Nishu Chahar

Meenakshi Dangwal

Sandip Das

2023/10/20

Comparative genomics, microsynteny, ancestral state reconstruction and selection pressure analysis across distinctive genomes and sub-genomes of Brassicaceae for analysis of …

Physiology and Molecular Biology of Plants

Arpana Katiyar

R Geeta

Sandip Das

Yashwanti Mudgil

2023/10

MIR159 regulates multiple aspects of stamen and carpel development and requires dissection and delimitation of differential downstream regulatory network for …

Physiology and Molecular Biology of Plants

Saurabh Anand

Mukund Lal

Ekta Bhardwaj

Richa Shukla

Ekta Pokhriyal

...

2023/10

Phylogenetic and comparative genomics establishes origin of paralogy between homologs of AtMYB42 and AtMYB85 in last common ancestor of Brassicaceae via segmental duplication

Plant Gene

Shobha Yadav

Nishu Chahar

Mukund Lal

Sandip Das

2023/9/1

Comprehensive analysis of 1R-and 2R-MYBs reveals novel genic and protein features, complex organisation, selective expansion and insights into evolutionary tendencies

Functional & Integrative Genomics

Mukund Lal

Ekta Bhardwaj

Nishu Chahar

Shobha Yadav

Sandip Das

2022/6

Regulatory Genes in Development and Adaptation, and Their Utilization in Trait Improvement in Brassica juncea: Challenges and Opportunities

Sandip Das

Anandita Singh

2022

Sequence and functional analysis of MIR319 promoter homologs from Brassica juncea reveals regulatory diversification and altered expression under stress

Molecular Genetics and Genomics

Gauri Arora Nee Joshi

Chetan Chauhan

Sandip Das

2021/5

OVATE FAMILY PROTEINS (OFP) gene family across Brassicaceae: Comparative genomic analysis uncovers evolutionary relationships, extensive sequence and structural variation with …

Plant Gene

Nishu Chahar

Meenakshi Dangwal

Mukund Lal

Shobha Yadav

Sandip Das

2021/12/1

Slicing Messengers by Artificial Designs: Artificial MicroRNA Induced Gene Silencing in Polyploid Plants for Functional Genomics and Trait Modification

RNA-Based Technologies for Functional Genomics in Plants

Anandita Singh

Sandip Das

2021/5/13

Plant roots and mineral nutrition: an overview of molecular basis of uptake and regulation, and strategies to improve nutrient use efficiency (NUE)

Ekta Bhardwaj

Richa Shukla

Sandip Das

2020

Sequence and functional analysis of cis-elements associated with MIR159 loci from Brassica juncea reveal functional diversification and complex transcriptional …

Plant Growth Regulation

Chetan Chauhan

Gauri Joshi

Darshna Chaudhary

Sandip Das

2020/3

Comparative sequence analysis across Brassicaceae, regulatory diversity in KCS5 and KCS6 homologs from Arabidopsis thaliana and Brassica juncea, and intronic fragment as a …

Gene expression patterns

Swati Singh

R Geeta

Sandip Das

2020/12/1

(Trans) Gene Flow: Mechanisms, Biosafety Concerns and Mitigation for Containment

Mukund Lal

Ekta Bhardwaj

Nishu Chahar

Meenakshi Dangwal

Sandip Das

2020

Independent recurrent evolution of MICRORNA genes converging onto similar non-canonical organisation across green plant lineages is driven by local and segmental duplication …

Plant Science

Ekta Bhardwaj

Mukund Lal

S Anand

Sandip Das

2020/12/1

Reproductive ecology of flowering plants: patterns and processes

Rajesh Tandon

Kundaranahalli R Shivanna

Monika Koul

2020/8/7

Ancestral segmental duplication in Solanaceae is responsible for the origin of CRCa–CRCb paralogues in the family

Molecular Genetics and Genomics

Banisha Phukela

R Geeta

Sandip Das

Rajesh Tandon

2020/5

See List of Professors in Sandip Das University(University of Delhi)

Co-Authors

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