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Please use this identifier to cite or link to this item: http://krishi.icar.gov.in/jspui/handle/123456789/42968
Title: Identification of putative RuBisCoactivase (TaRca1) ˗ the catalytic chaperone regulating carbon assimilatory pathway in wheat (Triticumaestivum) under the heat stress
Other Titles: Not Available
Authors: Ranjeet R. Kumar
Suneha Goswami
Khushboo Singh
Kavita Dubey
Shweta Singh
Renu Sharma
Neeraj Verma
Yugal K. Kala
Gyanendra K. Rai
Monendra Grover
Dwijesh Chandra Mishra
Bhupinder Singh
Himanshu Pathak
Viswanathan Chinnusamy
Anil Rai
Shelly Praveen
ICAR Data Use Licennce: http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf
Author's Affiliated institute: ICAR::Indian Agricultural Research Institute
ICAR::Indian Agricultural Statistics Research Institute
School of Biotechnology, Sher-e-Kashmir University of Agricultural Sciences and Technology
Published/ Complete Date: 2016-07-12
Project Code: Not Available
Keywords: RuBisCo activase
RuBisCo
Photosynthesis
Heat stress
Wheat
IRGA
qRT-PCR
Carbon partitioning
Publisher: Not Available
Citation: Not Available
Series/Report no.: Not Available;
Abstract/Description: RuBisCo activase (Rca) is a catalytic chaperone involved in modulating the activity of RuBisCo (key enzyme of photosynthetic pathway). Here, we identified eight novel transcripts from wheat through data mining predicted to be Rca and cloned a transcript of 1.4 kb from cv. HD2985, named as TaRca1 (GenBank acc. no. KC776912). Single copy number of TaRca1 was observed in wheat genome. Expression analysis in diverse wheat genotypes (HD2985, Halna, PBW621, and HD2329) showed very high relative expression of TaRca1 in Halna under control and HS-treated, as compared to other cultivars at different stages of growth. TaRca1 protein was predicted to be chloroplast-localized with numerous potential phosphorylation sites. Northern blot analysis showed maximum accumulation of TaRca1 transcript in thermotolerant cv. during mealy-ripe stage, as compared to thermosusceptible. Decrease in the photosynthetic parameters was observed in all the cultivars, except PBW621 in response to HS. We observed significant increase in the Rca activity in all the cultivars under HS at different stages of growth. HS causes decrease in the RuBisCo activity; maximum reduction was observed during pollination stage in thermosusceptible cvs. as validated through immunoblotting. We observed uniform carbon distribution in different tissues of thermotolerant cvs., as compared to thermosusceptible. Similarly, tolerance level of leaf was observed maximum in Halna having high Rca activity under HS. A positive correlation was observed between the transcript and activity of TaRca1 in HS-treated Halna. Similarly, TaRca1 enzyme showed positive correlation with the activity of RuBisCo. There is, however, need to manipulate the thermal stability of TaRca1 enzyme through protein engineering for sustaining the photosynthetic rate under HS—a novel approach toward development of “climate-smart” crop.
Description: Not Available
ISSN: Not Available
Type(s) of content: Research Paper
Sponsors: Not Available
Language: English
Name of Journal: Frontiers in Plant Science
NAAS Rating: 10.4
Volume No.: Not Available
Page Number: Not Available
Name of the Division/Regional Station: Not Available
Source, DOI or any other URL: https://doi.org/10.3389/fpls.2016.00986
URI: http://krishi.icar.gov.in/jspui/handle/123456789/42968
Appears in Collections:AEdu-IASRI-Publication

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