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Plant Biology
5 Results
- Plant BiologyOpen Access
Direct evidence for a new mode of plant defense against insects via a novel polygalacturonase-inhibiting protein expression strategy
Journal of Biological ChemistryVol. 295Issue 33p11833–11844Published online: July 1, 2020- Wiebke Haeger
- Jana Henning
- David G. Heckel
- Yannick Pauchet
- Roy Kirsch
Cited in Scopus: 13Plant cell wall–associated polygalacturonase-inhibiting proteins (PGIPs) are widely distributed in the plant kingdom. They play a crucial role in plant defense against phytopathogens by inhibiting microbial polygalacturonases (PGs). PGs hydrolyze the cell wall polysaccharide pectin and are among the first enzymes to be secreted during plant infection. Recent studies demonstrated that herbivorous insects express their own PG multi-gene families, raising the question whether PGIPs also inhibit insect PGs and protect plants from herbivores. - Plant BiologyOpen Access
Cucumber gibberellin 1-oxidase/desaturase initiates novel gibberellin catabolic pathways
Journal of Biological ChemistryVol. 295Issue 25p8442–8448Published online: April 27, 2020- Maria João Pimenta Lange
- Manuela Szperlinski
- Leon Kalix
- Theo Lange
Cited in Scopus: 2Bioactive gibberellins (GAs) are central regulators of plant growth and development, including seed development. GA homeostasis is achieved via complex biosynthetic and catabolic pathways, whose exact activities remain to be elucidated. Here, we isolated two cDNAs from mature or imbibed cucumber seeds with high sequence similarity to known GA 3-oxidases. We found that one enzyme (designated here CsGA3ox5) has GA 3-oxidation activity. However, the second enzyme (designated CsGA1ox/ds) performed multiple reactions, including 1β-oxidation and 9,11-desaturation of GAs, but was lacking the 3-oxidation activity. - Protein Structure and FoldingOpen Access
Impaired folate binding of serine hydroxymethyltransferase 8 from soybean underlies resistance to the soybean cyst nematode
Journal of Biological ChemistryVol. 295Issue 11p3708–3718Published online: February 2, 2020- David A. Korasick
- Pramod K. Kandoth
- John J. Tanner
- Melissa G. Mitchum
- Lesa J. Beamer
Cited in Scopus: 6Management of the agricultural pathogen soybean cyst nematode (SCN) relies on the use of SCN-resistant soybean cultivars, a strategy that has been failing in recent years. An underutilized source of resistance in the soybean genotype Peking is linked to two polymorphisms in serine hydroxy-methyltransferase 8 (SHMT8). SHMT is a pyridoxal 5′-phosphate–dependent enzyme that converts l-serine and (6S)-tetrahydrofolate to glycine and 5,10-methylenetetrahydrofolate. Here, we determined five crystal structures of the 1884-residue SHMT8 tetramers from the SCN-susceptible cultivar (cv.) Essex and the SCN-resistant cv. - Plant BiologyOpen Access
Brassicaceae-specific Gretchen Hagen 3 acyl acid amido synthetases conjugate amino acids to chorismate, a precursor of aromatic amino acids and salicylic acid
Journal of Biological ChemistryVol. 294Issue 45p16855–16864Published online: October 1, 2019- Cynthia K. Holland
- Corey S. Westfall
- Jason E. Schaffer
- Alejandro De Santiago
- Chloe Zubieta
- Sophie Alvarez
- and others
Cited in Scopus: 12To modulate responses to developmental or environmental cues, plants use Gretchen Hagen 3 (GH3) acyl acid amido synthetases to conjugate an amino acid to a plant hormone, a reaction that regulates free hormone concentration and downstream responses. The model plant Arabidopsis thaliana has 19 GH3 proteins, of which 8 have confirmed biochemical functions. One Brassicaceae-specific clade of GH3 proteins was predicted to use benzoate as a substrate and includes AtGH3.7 and AtGH3.12/PBS3. Previously identified as a 4-hydroxybenzoic acid-glutamate synthetase, AtGH3.12/PBS3 influences pathogen defense responses through salicylic acid. - ArticleOpen Access
Independent evolution of rosmarinic acid biosynthesis in two sister families under the Lamiids clade of flowering plants
Journal of Biological ChemistryVol. 294Issue 42p15193–15205Published online: September 3, 2019- Olesya Levsh
- Tomáš Pluskal
- Valentina Carballo
- Andrew J. Mitchell
- Jing-Ke Weng
Cited in Scopus: 25As a means to maintain their sessile lifestyle amid challenging environments, plants produce an enormous diversity of compounds as chemical defenses against biotic and abiotic insults. The underpinning metabolic pathways that support the biosynthesis of these specialized chemicals in divergent plant species provide a rich arena for understanding the molecular evolution of complex metabolic traits. Rosmarinic acid (RA) is a phenolic natural product first discovered in plants of the mint family (Lamiaceae) and is recognized for its wide range of medicinal properties and potential applications in human dietary and medical interventions.