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Strategies for Tree Improvement under Stress Conditions



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Titolo: Strategies for Tree Improvement under Stress Conditions Visualizza cluster
Pubblicazione: MDPI - Multidisciplinary Digital Publishing Institute, 2023
Descrizione fisica: 1 online resource (306 p.)
Soggetto topico: Biology, life sciences
Research & information: general
Soggetto non controllato: abscisic acid
antioxidant enzyme activity
antioxidant enzymes
aquaporins
arbuscular mycorrhizal fungi (AMF)
auxin
auxin response factors
biomass
boron deficiency
Camellia oil
Camellia oleifera
chlorophyll
chlorophyll fluorescence
climatic factors
Cunninghamia lanceolata
drip fertigation
drought
drought tolerance
epigenetics
expression analysis
fatty acid
fertilization
fine root traits
fine-root distribution
foliar fertilizer
gas exchange
gene
gene regulation
genetic effect
grafting
Hibiscus hamabo Sieb. et Zucc
Hibiscus syriacus Linn
hormone treatment
hydraulic characteristics
identification
Juglans regia
Loess Plateau
MaTCP transcription factor
micronutrients
morphological characteristics of root system
mulberry
n/a
NaCl stress
nitrogen forms
nutrient-poor
optimized furrow fertilization
organ-specific
oxidative stress
Paulownia fortunei
pecan
photosynthesis
photosynthetic rate
physiological parameters
physiology
phytoremediation
plant-available water
poplar
poplar plantation
Populus × euramericana
Populus × hopeiensis Hu & Chow
PP2C family
PtrWRKY51
qRT-PCR
regulation
Robinia pseudoacacia
root architecture
root development
root morphology
ROS scavenging
Salix
Salix matsudana
salt stress
salt tolerance
salt tolerance gene
salt tolerance index
Santalum album L.
Schima superba
scion growth
secondary metabolism
secondary metabolites
sexual dimorphism
siblings
soil contamination
soil nitrogen
SpsNAC005 gene
stress tolerance
transcription factor
transcriptome
transcriptome sequencing
variation
walnut oil
water deficit
water-use efficiency
whole-genome bisulfite sequencing (WGBS)
zinc stress
Sommario/riassunto: Perennial woody plants usually face multifactorial adverse conditions during their long lifespan, which impairs their growth and productivity. To cope with these adverse conditions, trees deploy morphyological, physiological and molecular responses to adapt to the environmental constraints. By using high-throughput sequencing and bioinformatic approaches, many hub genes that are involved in stress response were identified. In recent years, with the advantages of transgenic technology in woody plants, many candidate genes participating in stress responses were functionally characterized and showed great potential for tree improvement under different stresses. On the other hand, cultivation strategies (including beneficial microorganism investigation, beneficial microorganism inoculation, mixed forest and so on) also play crucial roles in tree improvement under abiotic and biotic stress.
Titolo autorizzato: Strategies for Tree Improvement under Stress Conditions  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9911053218903321
Lo trovi qui: Univ. Federico II
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