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Plant Acclimation to Environmental Stress by Panagiota Filippou, Georgia Tanou (auth.), Narendra Tuteja,

By Panagiota Filippou, Georgia Tanou (auth.), Narendra Tuteja, Sarvajeet Singh Gill (eds.)

The mechanisms underlying persistence and variation to environmental pressure elements in crops have lengthy been the point of interest of extreme study. crops triumph over environmental stresses via improvement of tolerance, resistance or avoidance mechanisms, adjusting to a steady swap in its atmosphere which permits them to take care of functionality throughout a variety of hostile environmental conditions.

Plant Acclimation to Environmental pressure presents the most recent principles and developments on precipitated acclimation of crops to environmental stresses less than altering surroundings. Written through specialists all over the world, this quantity provides new dimensions within the box of plant acclimation to abiotic pressure components. accomplished and lavishly illustrated, Plant Acclimation to Environmental Stress is a cutting-edge consultant suited to students and researchers operating within the box of crop development, genetic engineering and abiotic pressure tolerance.

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Physiol Mol Biol Plants 16:295–304 Chen SL, Chen CT, Kao CH (1991) Polyamines promote the biosynthesis of ethylene in detached rice leaves. Plant Cell Physiol 100:238–245 Compant S, Clement C, Sessitsch A (2010) Plant growth-promoting bacteria in the rhizo- and endosphere of plants: their role, colonization, mechanisms involved and prospects for utilization. Soil Biol Biochem 42:669–678 Cona A, Rea G, Angelini R, Federico R, Tavladoraki P (2006) Functions of amine oxidases in plant development and defence.

Acta Physiol Plant 29:177–187 Manjunatha G, Lokesh V, Neelwarne B (2010) Nitric oxide in fruit ripening: trends and opportunities. Biotechnol Adv 28:489–499 Mittler R, Vanderauwera S, Gollery M, Van Breusegem F (2004) Reactive oxygen gene network of plants. Trends Plant Sci 9:490–498 Molassiotis A, Fotopoulos V (2011) Oxidative and nitrosative signaling in plants: two branches in the same tree? Plant Signal Behav 6:210–214 Molassiotis A, Tanou G, Diamantidis G (2010) NO says more than ‘YES’ to salt tolerance: Salt priming and systemic nitric oxide signaling in plants.

1984). H2S is thought to be released from cysteine via a reversible O-acetylserine(thiol)lyase reaction in plants (Sekiya et al. 1982a; Wirtz et al. 2004). It was reported that higher plants could emit H2S when exposed to excess sulfur and cysteine (Rennenberg 1983; Sekiya et al. 1982a). H2S is endogenously synthesized in both animals and plants by enzymes with l-Cys desulfydrase activity in the conversion of l-Cys to H2S, pyruvate, and ammonia. The fact that H2S is also produced by cut branches, detached leaves, leaf discs, or tissue cultures, thus acting as evidence that green cells of higher plants can release H2S into the atmosphere (Rennenberg 1983, 1984, 1990; Sekiya et al.

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