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A — 変更前
641文字
下記の文章を比較してください。
The model organism Arabidopsis thaliana was grown under 16 h light / 8 h dark conditions.
Expression of the drought-response gene RD29A was quantified by RT-PCR.
Cellular ATP levels decreased by 42% after 48 h of dehydration stress (p < 0.05).
CO2 assimilation was significantly impaired, whereas H2O loss increased 3-fold.
Protein abundance was confirmed by western blot (n = 3).
We conclude that dehydration activates the ABA signaling pathway in a dose-dependent manner.
These results suggest that plants, like graduate students,1 perform poorly under stress.

1 Botter BB et al. (2004) J. Fictional Plant Sci. 1, 1-23. [架空文献]
B — 変更後
724文字
下記の文章を,ヒヒ較してくだちい.
The model organism Arabidopsis thaliana was grown under 16 h light / 8 h dark conditions.
Expression of the drought-response gene RD29A was quantified by qRT-PCR.
Cellular ATP levels decreased by 57% after 48 h of dehydration stress (p < 0.01).
CO2 assimilation was significantly impaired, whereas H2O loss increased 3-fold.
Protein abundance was confirmed by western blot (n = 3).
We conclude that dehydration strongly activates the ABA signaling pathway in a dose-dependent manner.
These results suggest that plants, like graduate students,1,2 perform poorly under stress.

1 Botter BB et al. (2004) J. Fictional Plant Sci. 1, 1-23. [架空文献]
2 Bitter J & Batter AB (2024) Imaginary Cell Physiol. 99, 999-1000. [架空文献]
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