R2R3 MYB‐dependent auxin signalling regulates trichome formation, and increased trichome density confers spider mite tolerance on tomato

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Trichome Formation: Gibberellins on the Move

Plant trichomes are specialized epidermal protrusions that, depending on species, are located on the surfaces of leaves, stems, petioles, sepals, seed coats, and other aerial organs. Trichomes not only defend plants against biotic and environmental hazard, but also are able to synthesize, store, and secrete a large number of specialized (secondary) metabolites, including those with significant ...

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Trichome Formation: Gibberellins on the Move

Plant trichomes are specialized epidermal protrusions that, depending on species, are located on the surfaces of leaves, stems, petioles, sepals, seed coats, and other aerial organs. Trichomes not only defend plants against biotic and environmental hazard, but also are able to synthesize, store, and secrete a large number of specialized (secondary) metabolites, including those with significant ...

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Trichome Formation: Gibberellins on the Move.

Plant trichomes are specialized epidermal protrusions that, depending on species, are located on the surfaces of leaves, stems, petioles, sepals, seed coats, and other aerial organs. Trichomes not only defend plants against biotic and environmental hazard, but also are able to synthesize, store, and secrete a large number of specialized (secondary) metabolites, including those with significant ...

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The tomato SlIAA15 is involved in trichome formation and axillary shoot development.

The Aux/IAA genes encode a large family of short-lived proteins known to regulate auxin signalling in plants. Functional characterization of SlIAA15, a member of the tomato (Solanum lycopersicum) Aux/IAA family, shows that the encoded protein acts as a strong repressor of auxin-dependent transcription. The physiological significance of SlIAA15 was addressed by a reverse genetics approach, revea...

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A regulatory gene induces trichome formation and embryo lethality in tomato.

Trichomes are universal biological structures originating from the aerial epidermis, which serve as an excellent model to study plant differentiation at the cell level. Although the pathway regulating trichome formation in the Rosids has been well characterized, only very recently a few genes were identified for trichome initiation in the Asterids. In this study, we cloned Woolly (Wo), essentia...

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ژورنال

عنوان ژورنال: Plant Biotechnology Journal

سال: 2020

ISSN: 1467-7644,1467-7652

DOI: 10.1111/pbi.13448