TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
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The TOR Pathway Is Involved in Adventitious Root Formation in Arabidopsis and Potato.Target of Rapamycin Is a Key Player for Auxin Signaling Transduction in Arabidopsis.The Arabidopsis TOR Kinase Specifically Regulates the Expression of Nuclear Genes Coding for Plastidic Ribosomal Proteins and the Phosphorylation of the Cytosolic Ribosomal Protein S6.The crosstalk between Target of Rapamycin (TOR) and Jasmonic Acid (JA) signaling existing in Arabidopsis and cottonBrassinosteriod Insensitive 2 (BIN2) acts as a downstream effector of the Target of Rapamycin (TOR) signaling pathway to regulate photoautotrophic growth in Arabidopsis.
P2860
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
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name
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@ast
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@en
type
label
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@ast
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@en
prefLabel
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@ast
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@en
P2093
P2860
P356
P1476
TOR-inhibitor insensitive-1 (TRIN1) regulates cotyledons greening in Arabidopsis
@en
P2093
Fuguang Li
Linxuan Li
Maozhi Ren
Xueyan Zhang
Zhengguo Li
P2860
P356
10.3389/FPLS.2015.00861
P577
2015-10-19T00:00:00Z