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DCLs have been demonstrated to be widely implicated in the processing of diverse sRNA precursors in plants (Chen, 2009).
A genome-wide computational prediction of endogenous miRNA mimics was performed in Arabidopsis and rice in which dozens of target mimics were identified (Meng and Shao 2012) These findings suggest that target mimicry may be widely implicated in regulating miRNA activities in planta, including rice.
These changes have shown to be widely implicated in the development and progression of human cancers [ 1].
These results together suggest that target mimicry may be widely implicated in regulating miRNA activities in planta, and we hope this study could expand the current understanding of miRNA-involved regulatory networks.
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Associative structures and transitions are widely implicated in a particular type of influential dual-process theory.
Oxidative stress has been widely implicated in various physiological and pathological processes, including aging and many age-related diseases.
Shiga-toxin-producing Escherichia coli (STEC) [1 3] is widely implicated to sporadic cases and serious outbreaks all over the world.
The genetic variants of the factor V (G1691A), prothrombin (G20210A) and MTHFR (C677T) genes have been widely implicated as inherited risk factors for developing venous thrombosis.
They have been widely implicated to function as major contenders in cancer progression, frequently due to their role in invasion, proliferation and metastasis.
PI3K activation initiates a signal transduction cascade that stimulates cell growth and survival, and the activation of the serine-threonine kinase AKT by PI3K is widely implicated in cancers (Engelman, 2009).
As outlined above, in vitro rice BADH2 catalyses the conversion of GABald to GABA, a molecule that has been widely implicated in plant stress responses (Bouche and Fromm, 2004; Kinnersley and Turano, 2000) and it has been hypothesized that in fragrant rice non-functional BADH2 leads to the accumulation of GABald, which cyclises and reacts with acetyl group forming 2-AP (Bradbury et al., 2008).
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