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This book presents a whole-plant perspective on plant integrated responses to multiple stresses, including an analysis of how plants have evolved growth forms and phenological responses to cope with changing stress patterns in natural environments.
Bilaterian FoxO proteins act to integrate different environmental signals, since they mediate responses to multiple stresses including low nutrient levels, oxidative stress, and thermal stress [6], [7].
Multiple stresses including habitat alteration, nutrients, pollution, and sediment can be traced back to ever increasing demands for freshwater, food, timber, transportation, recreation, and waste disposal in their upstream watersheds [11].
Trehalose accumulation in response to multiple stresses, including copper sulfate [72], has been demonstrated in many bacterial systems and this proteomic snapshot suggests the co-expression of two distinct trehalose biosynthesis pathways in K. radiotolerans [73].
HSP30 encodes a plasma membrane protein induced by multiple stresses, including weak organic acids [ 10, 29].
In cancer, multiple stresses, including antimitotic chemotherapy drugs, radiotherapy, hypoxia, or poor microenvironment, can increase the formation of PGCCs.
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Similarly ADH1 is expressed in multiple plant tissues and is highly responsive to multiple abiotic stresses including drought and salt stress [ 43, 49].
In plants, H2 can also enhance the tolerance of plants to multiple environmental stresses, including drought, cold and salt stresses (Jin et al. 2013).
Recently, overexpression a MusaPIP1 2 in banana displayed high tolerance to multiple abiotic stresses including salt, cold and drought [ 40].
Desert plants usually have to encounter recurring or multiple environmental stresses including drought, extreme temperatures, salinity, solar radiation, and high light intensity.
Of the genes identified in our study are the TFs like DREBs, HSFs, WRKYs, MYBs etc. and calcium sensors, kinases, calmodulin-binding chaperonins, glutathione transferases, ascorbate peroxidases, ferritin etc. many of which have previously been implicated, in multiple abiotic stresses including drought and high temperature [ 46- 51].
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