The Tryptophan decarboxylase 1 Gene From Aegilops variabilis No.1 Regulate the Resistance Against Cereal Cyst Nematode by Altering the Downstream Secondary Metabolite Contents Rather Than Auxin Synthesis
Author:
Publisher
Frontiers Media SA
Subject
Plant Science
Reference66 articles.
1. The dynamics of cereal cyst nematode infection differ between susceptible and resistant barley cultivars and lead to changes in (1,3;1,4)-beta-glucan levels and HvCslF gene transcript abundance.;Aditya;New Phytol.,2015
2. Melatonin biosynthesis in plants: multiple pathways catalyze tryptophan to melatonin in the cytoplasm or chloroplasts.;Back;J. Pineal Res.,2016
3. Marker-assisted pyramiding of two cereal cyst nematode resistance genes from Aegilops variabilis in wheat.;Barloy;Mol. Breed.,2006
4. Auxin biosynthesis.;Bartel;Annu. Rev. Plant Physiol. Plant Mol. Biol.,1997
5. Increased production of serotonin by suspension and root cultures of Peganum-harmala transformed with a tryptophan decarboxylase cDNA clone from Catharanthus-roseus.;Berlin;Transgenic Res.,1993
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