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1  from the common ice plant (Mesembryanthemum crystallinum).
2 porins), from the ice plant Mesembryanthemum crystallinum.
3  from the common ice plant, Mesembryanthemum crystallinum.
4  gene for this subunit of the V-ATPase in M. crystallinum.
5  for genes involved in the CAM pathway in M. crystallinum.
6 ations of common ice plant (Mesembryanthemum crystallinum), a facultative CAM species, to detect CAM-
7        Mitr1 and Mitr2 from Mesembryanthemum crystallinum (common ice plant) are members of a family
8 sed and 500 mm salt-shocked Mesembryanthemum crystallinum (common ice plant) were detected by reverse
9            In the halophyte Mesembryanthemum crystallinum (common ice plant), two enzymes, myo-inosit
10 nown genes related to stress responses in M. crystallinum demonstrates the great utility of EST analy
11                             Mesembryanthemum crystallinum (ice plant) exhibits extreme tolerance to s
12               The halophyte Mesembryanthemum crystallinum is an inducible crassulacean acid metabolis
13       The common ice plant, Mesembryanthemum crystallinum, is a halophytic (salt-loving) member of th
14 Na+/H+ antiport activity in Mesembryanthemum crystallinum, leading to vacuolar Na+ sequestration, wer
15  detached common ice plant (Mesembryanthemum crystallinum) leaves.
16  from the common ice plant (Mesembryanthemum crystallinum; McCPK1).
17         From the ice plant, Mesembryanthemum crystallinum, McHKT1 was isolated encoding a protein 41-
18            NaCl or ABA treatment of adult M. crystallinum plants induced V-ATPase H+ transport activi
19                                           M. crystallinum PPcK encodes a minimal, Ca(2+)-independent
20 ism (CAM) common ice plant (Mesembryanthemum crystallinum), using a protein-kinase-targeted different
21 (+)-conducting c subunit (16.6 kDa) of an M. crystallinum V-ATPase has been cloned.
22  from the common ice plant (Mesembryanthemum crystallinum), with a focus on their expression during s

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