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1 in T. weissflogii was twice as high in cells acclimated to 10 microm rather than 22 microm CO(2), ind
2 lature of developing Homarus gammarus larvae acclimated to 10, 14 and 19+/-1 degrees C.
3  chronically hypoxic (CH) rats that had been acclimated to 12% O(2) for 3-4 weeks.
4     These results indicate that CH rats were acclimated to 12% O2 such that the resting tone of arter
5                                Crayfish were acclimated to 20 L aquaria filled with Hudson River wate
6  repelled by pheromones that attract animals acclimated to 21% O2 This behavioral plasticity arises f
7 ar cell mass (ILCM) on the gills of goldfish acclimated to 7 degrees C leads to preferential distribu
8                                   C. elegans acclimated to 7% O2 are aroused by CO2 and repelled by p
9 r responses of a chilling-resistant plant to acclimate to a moderate reduction in temperature.
10  cyanobacterial species have the capacity to acclimate to a wide variety of light colors through the
11                         The algae were first acclimated to a low (LM) or high trace metal (HM) medium
12    Trematodes or tadpoles were independently acclimated to a range of 'acclimation temperatures' prio
13 ellular green alga Chlamydomonas reinhardtii acclimates to a low-CO2 environment by modifying the exp
14                        Plant respiration can acclimate to altered temperatures, however, weakening th
15 ation pathways that become active when cells acclimate to anoxia.
16                                      Biomass acclimated to B60, however, was unable to degrade most o
17 rns can allow individuals greater ability to acclimate to changing environments.
18           Many photosynthetic microorganisms acclimate to CO(2) limited environments by induction and
19             It remains unknown how they were acclimated to contaminated environment and built up such
20 solated intestinal tissue from Gulf toadfish acclimated to control or 1900 muatm CO2 (projected for y
21                   In conclusion, normal rats acclimate to dietary NaCl by primarily adjusting transpo
22  necessitating that photosynthetic organisms acclimate to different environmental conditions in order
23 c apparatus and the capacity of the cells to acclimate to different light conditions.
24 s of Chl in Synechocystis sp. PCC 6803 cells acclimated to different light intensities.
25 ck components in Arabidopsis thaliana plants acclimated to different steady state temperatures or und
26     Therefore, plants evolved to respond and acclimate to diverse stimuli, including the seemingly in
27                            Participants were acclimated to early meals and then switched to late meal
28 r acclimation temperatures or relocate, fish acclimated to end-of-century predicted temperatures (i.e
29 r acclimation temperatures or relocate, fish acclimated to end-of-century predicted temperatures (i.e
30  to be relatively unable to sense or rapidly acclimate to energy-rich conditions.
31 need to adapt to rapidly rising CO2 and also acclimate to environmental heterogeneity in more slowly
32                            Control mice were acclimated to exposure to the experimental room at 20 de
33 l and oceanic Atlantic Synechococcus strains acclimate to Fe availability, we compared the growth, ph
34                                        Cells acclimate to fluctuating environments by utilizing senso
35                  The missense alleles cannot acclimate to heat as dark-grown seedlings but grow norma
36 y of photosystem II, both processes could be acclimated to heat stress by gradually increasing the le
37   Wild-type Chlamydomonas cells were able to acclimate to high amounts of light following transfer fr
38   Moreover, respiration of DeltarpoZ did not acclimate to high CO2 Unlike the photosynthetic complexe
39 vestigated how different leaves on a rosette acclimate to high light and show that younger leaves are
40                                Cyanobacteria acclimate to high-light conditions by adjusting photosys
41 rane components of Chlamydomonas reinhardtii acclimated to high and low light, using a combination of
42  accumulation was higher in antisense plants acclimated to high light, indicating that the capacity t
43 observed when Prochlorococcus spp. was fully acclimated to high-CO2 (1,000 microL L(-1)) or low-CO2 (
44 esults suggest that S. alveolata was able to acclimate to higher temperatures, as observed by a decre
45                               Although cells acclimated to higher irradiances (150 and 300 muE m(-2)s
46                The vtc2 mutant was unable to acclimate to HL, when transferred from low light to HL.
47 e and indicate that a program is in place to acclimate to impending Fe deficiency.
48 tosynthetic metabolism in sugar beet has not acclimated to increasing CO2 over >100 y.
49                         Trematodes that were acclimated to intermediate temperatures (19-22 degrees C
50                The ability of an organism to acclimate to its environment is a key determinant in its
51                                   C. elegans acclimates to its cultivation temperature (Tc) and exhib
52 t common marmosets (Callithrix jacchus) were acclimated to light, comfortable restraint using individ
53  nitrosylated form of NAB1 is found in cells acclimated to limiting light supply, which permits accum
54 a model, and to illustrate how Chlamydomonas acclimates to limiting CO2 conditions and how its CCM is
55 sm is induced when Chlamydomonas reinhardtii acclimates to limiting inorganic carbon (Ci), either low
56 re not significantly different between cells acclimated to LL and HL.
57 e degree to which freshwater populations can acclimate to long-term warming and the underlying molecu
58 te that cell-level water relation traits can acclimate to long-term water stress, and highlight the l
59 d an experiment where control seedlings were acclimated to long photoperiod (day/night 14/10 h), warm
60  to understand how Chlamydomonas reinhardtii acclimates to long-term heat stress (HS) and recovers fr
61 family of Escherichia coli help the cells to acclimate to low temperature conditions through an unkno
62 s of the CspA family help bacterial cells to acclimate to low temperatures.
63                                Cyanobacteria acclimate to low-temperature conditions by desaturating
64 synthesis in Thalassiosira weissflogii cells acclimated to low CO(2) (10 microm), but had little effe
65                           The BESs were then acclimated to low concentrations of a mixture of metals,
66                               However, cells acclimated to low light intensity are indeed able to pro
67          Low-light-grown plants were able to acclimate to maintain structural and functional features
68                Male Sprague-Dawley rats were acclimated to metabolism cages, and baseline 24-h urine
69 hat in ecosystems where soil respiration has acclimated to moderate warming, further increases in soi
70                                    Dogwhelks acclimated to night-time lighting exhibited natural refu
71  were performed on individuals that had been acclimated to night-time white LED lighting conditions f
72 af respiration of tropical forest plants can acclimate to nighttime warming, thereby reducing the mag
73                           When cyanobacteria acclimate to nitrogen deficiency, they degrade their lar
74 y that is critical for allowing the cells to acclimate to nutrient limitation conditions.
75 gest that clams and scallops are unlikely to acclimate to ocean acidification over short time scales
76                 Female domestic felines were acclimated to one of six different defined diets 1 mo be
77 ll survival depends on the cell's ability to acclimate to phosphorus (P) limitation.
78 abundances of Pho regulon genes as the cells acclimated to phosphorus-limiting conditions.
79             We conclude that the root system acclimates to phosphorus deficiency by changing the sign
80                                  The monkeys acclimated to procedures in the NHP chair necessary to p
81 cover from single isolated bleaching and can acclimate to recurring bleaching events that are separat
82 -type cells; the inability of this mutant to acclimate to S deprivation probably leads to elevated le
83                                    Mice were acclimated to short-day (SD) 'winter' and long-day (LD)
84                         Alternatively, BLECs acclimated to sodium hypertonicity and subsequently tran
85  its metabolic state, L. pneumophila swiftly acclimates to stresses encountered in its host or the en
86 ula) is a perennial weed which is capable of acclimating to sub-freezing temperatures.
87 r redirects transcription when cyanobacteria acclimate to suboptimal environmental conditions.
88 d assimilation, conserves S amino acids, and acclimates to suboptimal growth conditions.
89 the marine microalga Emiliania huxleyi as it acclimated to sulfate limitation.
90 einhardtii mutants with altered abilities to acclimate to sulfur (S) deficiency.
91 hat these widespread heterotrophic fungi can acclimate to temperature.
92 ark ), and light respiration (Rlight ) rates acclimated to temperature, but not CO2 : the thermal opt
93           Adults took at least 6-8 months to acclimate to the altered conditions, but beyond this, th
94 by altering growth and metabolic activity to acclimate to the altered environmental conditions.
95 evelopmental and physiological strategies to acclimate to the changing environment.
96  freezing temperatures, completely unable to acclimate to the cold, and are hypersensitive to NaCl.
97 t that SEB-3 activation allows C. elegans to acclimate to the environment and thus continue to execut
98                          Nonetheless, leaves acclimated to the augmented irradiance, and photosynthes
99               In E. vaginatum both RL and RD acclimated to the long-term warming treatment, reducing
100 the chlorosomes in green sulfur bacteria are acclimated to the stressful light conditions, for instan
101  freeze tolerant to -30 degrees C when fully acclimated, to the function of genes in the current stud
102 or following an isolated cage change in mice acclimated to their housing facility.
103 eir sessile life style, plants are forced to acclimate to them at the cellular and molecular level.
104 n is whether corals will be able to adapt or acclimate to these changes in seawater chemistry.
105 ion, likely due to its inability to properly acclimate to these stress conditions.
106 rees C and then moved to 26 degrees C become acclimated to this temperature and thereafter migrate to
107     Temperate and tropical species were each acclimated to three daytime growth temperatures (Tgrowth
108 removal, biocathodes were first individually acclimated to three different metals using microbial fue
109 gulation of membrane fluidity is crucial for acclimating to variations in temperature.
110                  The potential for plants to acclimate to warmer conditions could strongly impact fut
111 ponses may allow long-lived alpine plants to acclimate to warmer temperatures.
112 e different spatial scales enables plants to acclimate to water-deficit stress.

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