DSpace logo

Please use this identifier to cite or link to this item: http://142.54.178.187:9060/xmlui/handle/123456789/15536
Title: OVEREXPRESSION OF RICE PHYTOCHROME A IN ARABIDOPSIS: DIVERSE ROLE IN MULTIPLE PHYSIOLOGICAL RESPONSES
Authors: CHUNFENG CHEN
YOU CHEN
QING ZHANG
BENWEN CHEN
CHENGWEI YANG
WANG, YA QIN
Issue Date: 20-Dec-2011
Publisher: Karachi: Pakistan Botanical Society, University of Karachi
Citation: Chen, C., Chen, Y., Zhang, Q., Chen, B., Yang, C., & Wang, Y. Q. (2011). Overexpression of rice Phytochrome A in Arabidopsis: diverse role in multiple physiological responses. Pak. J. Bot, 43(6), 2835-2844.
Abstract: Phytochrome A predominantly mediates responses to prolonged far-red light such as the inhibition of hypocotyl elongation. It also acts in controlling responses to FR light pulses. To investigate to what extent rice phytochrome A complements the function of Arabidopsis phytochrome A, we examined hypocotyl elongation growth, seed germination, and greening in etiolated seedlings of phyA-211 mutant plants, WT and two kinds of transgenic plants in which WT and phyA211 mutants overexpressed rice PHYA cDNA. We found that ectopic expression of rice phytochrome A could partially rescue the sensitivity of phyA-211 mutant hypocotyls to prolonged far-red light and replace Arabidopsis phytochrome A in the promotion of seed germination and recovery of the ability to de-etiolate. Moreover, under end-of-day far-red light (EODFR), the exogenous rice phytochrome A was found to restore some aspects of growth in phyA-211 mutants, such as hypocotyl elongation, petiole elongation and flowering time. The diverse role of rice phytochrome A in the physiological responses of Arabidopsis implies the substitution of phytochrome signaling between monocots and dicots.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/15536
ISSN: 2070-3368
Appears in Collections:Issue 6

Files in This Item:
File Description SizeFormat 
32%20(1).htm131 BHTMLView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.