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When comparing with the alteration times given on Fig. 8, by considering an average fluid velocity of 1°10−6 m/s and a SRF of 6, it appears that the concept of complete dissolution and alteration is only valid for finest grain sizes at temperatures of 300 °C and above.
However, because no selectable markers are involved, this kind of genetic alteration is only applicable to selectable phenotypes.
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In the second series of experiments, significant smectite alteration was only observed at 250 °C and the product contained a small proportion of a 7 Å repeat structure, observable by XRD.
Interestingly, the latter alteration was only detected in female mice.
A similar alteration was only observed in wild-type Arabidopsis at 4°C.
Statistical tests were not applied, but an alteration was only considered if the magnitude of change was at least 1.5-fold.
For 25 intron containing genes in C. dubliniensis, the splice sites had to be adapted resulting in CDS changes, while this kind of alteration was only necessary for one gene in C. albicans (Additional file 3).
However, blood biochemistry variables were presented 12 weeks before training initiation (as a time-control) and before and after RT, and analyses showed that significant alterations were only observed when comparing pre training and post training.
Although cognitive alterations are only occasionally reported in TBS, it has not been investigated in depth; however, significant evidence has accumulated that indicates a role for Sall1 in neural development.
In contrast, in our study, a total of 12,083 individuals were produced and screened, but our visible mutant frequency (containing also leaf and stem phenotypic alterations) was only 0.24%.
In particular, relevant stress-dependent alterations were only found between female samples: Comparing HS-females and LS-females 1,038 probe-sets differed significantly (315 probe-sets: HS-females > LS-females).
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