Search Results - "Chinnaswamy, Appunu"

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    Recent Advances in Sugarcane Genomics, Physiology, and Phenomics for Superior Agronomic Traits by Meena, Mintu Ram, Appunu, Chinnaswamy, Arun Kumar, R., Manimekalai, R., Vasantha, S., Krishnappa, Gopalareddy, Kumar, Ravinder, Pandey, S. K., Hemaprabha, G.

    Published in Frontiers in genetics (03-08-2022)
    “…Advances in sugarcane breeding have contributed significantly to improvements in agronomic traits and crop yield. However, the growing global demand for sugar…”
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    Journal Article
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    Biomass and energy potential of Erianthus arundinaceus and Saccharum spontaneum-derived novel sugarcane hybrids in rainfed environments by Meena, Mintu Ram, Govindaraj, Perumal, Kumar, Raja Arun, Elayaraja, Kandasamy, Appunu, Chinnaswamy, Kumar, Ravinder, Chhabra, Manohar Lal, Kulshreshtha, Neeraj, Hemaprabha, Govind

    Published in BMC plant biology (19-03-2024)
    “…Energy canes are viable feedstocks for biomass industries due to their high biomass production potential, lower susceptibility to insects and diseases, better…”
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    Journal Article
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    Genomic Selection in Sugarcane: Current Status and Future Prospects by Mahadevaiah, Channappa, Appunu, Chinnaswamy, Aitken, Karen, Suresha, Giriyapura Shivalingamurthy, Vignesh, Palanisamy, Mahadeva Swamy, Huskur Kumaraswamy, Valarmathi, Ramanathan, Hemaprabha, Govind, Alagarasan, Ganesh, Ram, Bakshi

    Published in Frontiers in plant science (27-09-2021)
    “…Sugarcane is a C4 and agro-industry-based crop with a high potential for biomass production. It serves as raw material for the production of sugar, ethanol,…”
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    CRISPR/Cas-Mediated Genome Editing Approach for Improving Virus Resistance in Sugarcane by Surya Krishna, Sakthivel, Viswanathan, Rasappa, Valarmathi, Ramanathan, Lakshmi, Kasirajan, Appunu, Chinnaswamy

    “…Sugarcane is one of the most important food and energy crops. Viruses pose a severe threat to sugarcane cultivation by adversely affecting yield and juice…”
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    A simple and efficient genetic transformation system for soybean (Glycine max (L.) Merrill) targeting apical meristem of modified half-seed explant by Saravanan, Krishnagowdu, Vidya, Nandakumar, Appunu, Chinnaswamy, Gurusaravanan, Packiaraj, Arun, Muthukrishnan

    Published in 3 Biotech (01-09-2023)
    “…The present study is an attempt to establish a fast, highly reproducible transformation with a simplified regeneration system in soybean targeting the apical…”
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    Genetic Diversity of Native Bradyrhizobia Isolated from Soybeans (Glycine max L.) in Different Agricultural-Ecological-Climatic Regions of India by Appunu, Chinnaswamy, N'Zoue, Angèle, Laguerre, Gisèle

    Published in Applied and Environmental Microbiology (01-10-2008)
    “…Fifty isolates from root nodules of soybean plants sampled in five agricultural-ecological-climatic regions of India were analyzed by PCR-restriction fragment…”
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    Current breeding and genomic approaches to enhance the cane and sugar productivity under abiotic stress conditions by Meena, Mintu Ram, Kumar, Ravinder, Chinnaswamy, Appunu, Karuppaiyan, Ramaiyan, Kulshreshtha, Neeraj, Ram, Bakshi

    Published in 3 Biotech (01-10-2020)
    “…Sugarcane ( Saccharum  spp.) crop is vulnerable to many abiotic stresses such as drought, salinity, waterlogging, cold and high temperature due to climate…”
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    Functional characterization of promiscuous tryptophan decarboxylase from indole alkaloids producing Rauvolfia tetraphylla L by Nallasamy, Lavanya, Harish Chandar, S.R., Bukhari, Najat A., Murugavelu, Girija Sangari, Krishnamoorthy, Deepika, Mahalakshmi, S., Swaminathan, Amutha, Chinnaswamy, Appunu

    Published in Journal of King Saud University. Science (01-05-2024)
    “…The enzyme Tryptophan decarboxylase (TDC, EC 4.1.1.28) gene facilitates the conversion of tryptophan to tryptamine. A new gene encoding TDC was identified from…”
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    Isolation of 5′ regulatory region of COLD1 gene and its functional characterization through transient expression analysis in tobacco and sugarcane by Mohanan, Manoj Vadakkenchery, Pushpanathan, Anunanthini, Jayanarayanan, Ashwin Narayan, Selvarajan, Dharshini, Ramalingam, Sathishkumar, Govind, Hemaprabha, Chinnaswamy, Appunu

    Published in 3 Biotech (01-07-2023)
    “…Chilling Tolerant Divergence 1 ( COLD1 ) gene consists of Golgi pH Receptor (GPHR) as well as Abscisic Acid-linked G Protein-Coupled Receptor (ABA_GPCR), which…”
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