Publications by authors named "Nakul D Magar"

Article Synopsis
  • The study focuses on improving the root system architecture (RSA) in rice varieties to better adapt to climate change and nutrient deficiencies.
  • Researchers developed a F mapping population using a high root length and volume mutant (TI-128) and identified specific genomic regions on chromosomes 12 and 2 associated with these traits.
  • Validation of certain genes showed higher expression in the mutant compared to the wild type, suggesting these genes may enhance root length and volume in rice.
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Complete panicle exsertion (CPE) is an economically important quantitative trait that contributes to grain yield in rice. We deployed an integrated approach for understanding the molecular mechanism of CPE using a stable ethyl methanesulfonate mutant line, CPE-109 of the Samba Mahsuri (SM) variety of rice (Oryza sativa), which exhibits CPE. Two consistent genomic regions were identified for CPE through quantitative trait locus (QTL) mapping [qCPE-4 (28.

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Article Synopsis
  • * The structure and composition of rice stems play a crucial role in resisting lodging, with various environmental factors affecting their strength.
  • * Advances in sequencing technology enhance the understanding of lodging resistance by identifying key genes and leveraging modern breeding strategies for improving rice plant strength.
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Plants perceive environmental fluctuations as stress and confront several stresses throughout their life cycle individually or in combination. Plants have evolved their sensing and signaling mechanisms to perceive and respond to a variety of stresses. Epigenetic regulation plays a critical role in the regulation of genes, spatiotemporal expression of genes under stress conditions and imparts a stress memory to encounter future stress responses.

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The development of nutrient-use efficient rice lines is a priority amidst the changing climate and depleting resources viz., water, land, and labor for achieving sustainability in rice cultivation. Along with the traditional transplanted irrigated system of cultivation, the dry direct-seeded aerobic system is gaining ground nationwide.

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Efficient and innovative breeding strategies are immensely required to meet the global food demand, nutritional security and sustainable agriculture. Genome editing tools have emerged as an effective technology for site-directed genome modification causing the change in gene expression and protein function for the improvement of various important traits in particular the CRISPR/Cas (Clustered Regularly Interspaced Short Palindromic Repeats/CRISPR-associated protein). As the technology evolved with time, advances have been observed like prime editing, base editing, PAMless editing, Drosha based editing with multiple targets having the potential to fulfill the regulatory processes around the world.

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