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- W2904657097 abstract "Summary Root hair, a special type of tubular‐shaped cell, outgrows from the root epidermal cell and plays important roles in the acquisition of nutrients and water, as well as interactions with biotic and abiotic stresses. Studies in the model plant Arabidopsis have revealed that root‐hair initiation and elongation are hierarchically regulated by a group of basic helix−loop−helix ( bHLH ) transcription factors ( TF s). However, knowledge regarding the regulatory pathways of these bHLH TF s in controlling root hair growth remains limited. In this study, RNA ‐seq analysis was conducted to profile the transcriptome in the elongating maize root hair and >1000 genes with preferential expression in root hair were identified. A consensus cis ‐element previously featured as the potential bHLH ‐ TF binding sites was present in the regulatory regions for the majority of the root hair‐preferentially expressed genes. In addition, an individual change in Zm LRL 5 , the highest‐expressed bHLH ‐ TF in maize root hair resulted in a dramatic reduction in the elongation of root hair, and rendered the growth of root hair hypersensitive to translational inhibition. Moreover, RNA ‐seq, yeast‐one‐hybrid and ribosome profile analysis suggested that Zm LRL 5 may function as a key player in orchestrating the translational process by directly regulating the expression of translational processes/ribosomal genes during maize root hair growth." @default.
- W2904657097 created "2018-12-22" @default.
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- W2904657097 date "2019-01-28" @default.
- W2904657097 modified "2023-10-16" @default.
- W2904657097 title "Characterization of <i><scp>LRL</scp>5</i> as a key regulator of root hair growth in maize" @default.
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- W2904657097 doi "https://doi.org/10.1111/tpj.14200" @default.
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