Glycosylation is a major regulator of phenylpropanoid availability and biological activity in plants

J Le Roy, B Huss, A Creach, S Hawkins… - Frontiers in plant …, 2016 - frontiersin.org
The phenylpropanoid pathway in plants is responsible for the biosynthesis of a huge amount
of secondary metabolites derived from phenylalanine and tyrosine. Both flavonoids and …

[HTML][HTML] β-Glucosidases

JRK Cairns, A Esen - Cellular and molecular life sciences: CMLS, 2010 - ncbi.nlm.nih.gov
Abstract β-Glucosidases (3.2. 1.21) are found in all domains of living organisms, where they
play essential roles in the removal of nonreducing terminal glucosyl residues from …

The genome of Cymbidium sinense revealed the evolution of orchid traits

FX Yang, J Gao, YL Wei, R Ren… - Plant biotechnology …, 2021 - Wiley Online Library
The Orchidaceae is of economic and ecological importance and constitutes˜ 10% of all seed
plant species. Here, we report a genome physical map for Cymbidium sinense, a well …

Vitamin B6: a long known compound of surprising complexity

S Mooney, JE Leuendorf, C Hendrickson, H Hellmann - Molecules, 2009 - mdpi.com
In recent years vitamin B6 has become a focus of research describing the compound's
critical function in cellular metabolism and stress response. For many years the sole function …

β-Glucosidases

JR Ketudat Cairns, A Esen - Cellular and Molecular Life Sciences, 2010 - Springer
Abstract β-Glucosidases (3.2. 1.21) are found in all domains of living organisms, where they
play essential roles in the removal of nonreducing terminal glucosyl residues from …

Ethylene and nitric oxide involvement in the up-regulation of key genes related to iron acquisition and homeostasis in Arabidopsis

MJ García, C Lucena, FJ Romera… - Journal of …, 2010 - academic.oup.com
In a previous work it was shown that ethylene participates in the up-regulation of several Fe
acquisition genes of Arabidopsis, such as AtFIT, AtFRO2, and AtIRT1. In this work the …

Key maize drought-responsive genes and pathways revealed by comparative transcriptome and physiological analyses of contrasting inbred lines

T Zenda, S Liu, X Wang, G Liu, H Jin, A Dong… - International journal of …, 2019 - mdpi.com
To unravel the molecular mechanisms underpinning maize (Zea mays L.) drought stress
tolerance, we conducted comprehensive comparative transcriptome and physiological …

How insects overcome two‐component plant chemical defence: plant β‐glucosidases as the main target for herbivore adaptation

S Pentzold, M Zagrobelny, F Rook, S Bak - Biological Reviews, 2014 - Wiley Online Library
Insect herbivory is often restricted by glucosylated plant chemical defence compounds that
are activated by plant β‐glucosidases to release toxic aglucones upon plant tissue damage …

LESION MIMIC MUTANT 1 confers basal resistance to Sclerotinia sclerotiorum in rapeseed via a salicylic acid-dependent pathway

M Yu, Y Fan, X Li, X Chen, S Yu, S Wei… - Journal of …, 2023 - academic.oup.com
Rapeseed (Brassica napus) is a major edible oilseed crop consumed worldwide. However,
its yield is seriously affected by infection from the broad-spectrum non-obligate pathogen …

A chromosome-scale Rhubarb (Rheum tanguticum) genome assembly provides insights into the evolution of anthraquinone biosynthesis

Y Li, Z Wang, M Zhu, Z Niu, M Li, Z Zheng, H Hu… - Communications …, 2023 - nature.com
Rhubarb is the collective name for various perennial plants from the genus Rheum L. and
the Polygonaceae family. They are one of the most ancient, commonly used, and important …