A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport

Characterizing plant membrane transporters via genetic methods is complicated by functional redundancy among multi-gene transporter families. Here Zhang et al. use an artificial microRNA-based screen to overcome this issue and show that ABCB6 and ABCB20 act redundantly to regulate auxin transport.

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Autores principales: Yuqin Zhang, Victoria Nasser, Odelia Pisanty, Moutasem Omary, Nikolai Wulff, Martin Di Donato, Iris Tal, Felix Hauser, Pengchao Hao, Ohad Roth, Hillel Fromm, Julian I. Schroeder, Markus Geisler, Hussam Hassan Nour-Eldin, Eilon Shani
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/6ba5ad7e67c04c71b69f5c03c409e6b0
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spelling oai:doaj.org-article:6ba5ad7e67c04c71b69f5c03c409e6b02021-12-02T14:40:03ZA transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport10.1038/s41467-018-06410-y2041-1723https://doaj.org/article/6ba5ad7e67c04c71b69f5c03c409e6b02018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06410-yhttps://doaj.org/toc/2041-1723Characterizing plant membrane transporters via genetic methods is complicated by functional redundancy among multi-gene transporter families. Here Zhang et al. use an artificial microRNA-based screen to overcome this issue and show that ABCB6 and ABCB20 act redundantly to regulate auxin transport.Yuqin ZhangVictoria NasserOdelia PisantyMoutasem OmaryNikolai WulffMartin Di DonatoIris TalFelix HauserPengchao HaoOhad RothHillel FrommJulian I. SchroederMarkus GeislerHussam Hassan Nour-EldinEilon ShaniNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yuqin Zhang
Victoria Nasser
Odelia Pisanty
Moutasem Omary
Nikolai Wulff
Martin Di Donato
Iris Tal
Felix Hauser
Pengchao Hao
Ohad Roth
Hillel Fromm
Julian I. Schroeder
Markus Geisler
Hussam Hassan Nour-Eldin
Eilon Shani
A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
description Characterizing plant membrane transporters via genetic methods is complicated by functional redundancy among multi-gene transporter families. Here Zhang et al. use an artificial microRNA-based screen to overcome this issue and show that ABCB6 and ABCB20 act redundantly to regulate auxin transport.
format article
author Yuqin Zhang
Victoria Nasser
Odelia Pisanty
Moutasem Omary
Nikolai Wulff
Martin Di Donato
Iris Tal
Felix Hauser
Pengchao Hao
Ohad Roth
Hillel Fromm
Julian I. Schroeder
Markus Geisler
Hussam Hassan Nour-Eldin
Eilon Shani
author_facet Yuqin Zhang
Victoria Nasser
Odelia Pisanty
Moutasem Omary
Nikolai Wulff
Martin Di Donato
Iris Tal
Felix Hauser
Pengchao Hao
Ohad Roth
Hillel Fromm
Julian I. Schroeder
Markus Geisler
Hussam Hassan Nour-Eldin
Eilon Shani
author_sort Yuqin Zhang
title A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
title_short A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
title_full A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
title_fullStr A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
title_full_unstemmed A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport
title_sort transportome-scale amirna-based screen identifies redundant roles of arabidopsis abcb6 and abcb20 in auxin transport
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/6ba5ad7e67c04c71b69f5c03c409e6b0
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