By Peter Hedden, Stephen G. Thomas
Plant development is regulated by means of developmental programmes that may be changed by way of environmental cues performing via endogenous signaling molecules together with plant hormones.
This quantity offers an summary of the biosynthesis, catabolism, notion and sign transduction of the person hormone periods, via chapters on hormone distribution and delivery, and the jobs of hormone signaling in particular developmental techniques. specific awareness is paid to the law of hormone signaling through environmental and developmental cues, websites of hormone metabolism and motion, and interactions among hormone signaling pathways. The e-book is directed at researchers and pros in plant biochemistry and molecular biology.
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Additional info for Annual Plant Reviews, Plant Hormone Signaling (Volume 24)
2000). Cellular signaling and volume control in stomatal movements in plants. Annu. Rev. Cell Dev. , 16, 221–241. B. (1999). Ethylene perception and signaling: an evolutionary perspective. , 4, 269–274. , Tardieu, F. & Simonneau, T. (2001). N. plumbaginifolia zeaxanthin epoxidase transgenic lines have unaltered baseline ABA accumulations in roots and xylem sap, but contrasting sensitivities of ABA accumulation to water deficit. J. Exp. , 52, 427–434. , Boronat, A. & RodriguezConcepcion, M. (2004).
C) Gene transcription mediated by ABI3 and ABI5. ABI3 can function as a co-activator and may coopt ABI5 which can then bind to the G-box or the similar ABRE motif in target promoters. There are 43 B3-domain and 81 bZIP-type transcription factors in the Arabidopsis genome, but most likely only a small fraction of each class is involved in ABA signal relay. , 2003). , 2002). Both abi3 and abi5 seeds also display mild glucose resistance suggesting that they may participate in sugar signaling, even though they had never been identified as such in mutant screens (Finkelstein & Gibson, 2002).
Rev. Cell Dev. , 16, 221–241. B. (1999). Ethylene perception and signaling: an evolutionary perspective. , 4, 269–274. , Tardieu, F. & Simonneau, T. (2001). N. plumbaginifolia zeaxanthin epoxidase transgenic lines have unaltered baseline ABA accumulations in roots and xylem sap, but contrasting sensitivities of ABA accumulation to water deficit. J. Exp. , 52, 427–434. , Boronat, A. & RodriguezConcepcion, M. (2004). Regulation of carotenoid biosynthesis in plants: evidence for a key role of hydroxymethylbutenyl diphosphate reductase in controlling the supply of plastidial isoprenoid precursors.
Annual Plant Reviews, Plant Hormone Signaling (Volume 24) by Peter Hedden, Stephen G. Thomas