Barely Significant
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Photoperiod Extension Enhances Sexual Megaspore Formation and Triggers Metabolic Reprogramming in Facultative Apomictic Ranunculus auricomus.

Front Plant Sci · 2016 · PMC4781874 · PMID 27014302

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hedged sentence
0.0080
closest p · 0.2× alpha
0.0080
boldest claim

The sentences

highly significantP = 0.008actually significant
apomixis FCSS light stress oxidative stress Ranunculus reproduction mode secondary metabolites seed formation Deutsche Forschungsgemeinschaft 10.13039/501100001659 Ho 4359/1-1 The extended photoperiod increased the proportion of sexual ovules ( Figure 2 ), but only clone T’s increase was highly significant ( P = 0.008).

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