Salinity Tolerance in Plants
Resource type: Ressourcentyp: Buch (Online)Buch (Online)Sprache: Englisch Verlag: [Erscheinungsort nicht ermittelbar] : MDPI - Multidisciplinary Digital Publishing Institute, 2019Beschreibung: 1 Online-Ressource (422 p.)ISBN:- 9783039210275
- 9783039210268
- Biology, life sciences
- soluble nutrients
- transcription factor
- n/a
- CDPK
- salicylic acid
- antioxidant enzymes
- light saturation point
- phytohormone
- ion homeostasis
- antioxidant systems
- photosynthesis
- Chlamydomonas reinhardtii
- high salinity
- nitric oxide
- poplars (Populus)
- root activity
- abiotic stresses
- transcriptional activator
- germination
- ABA
- transcriptome
- mandelonitrile
- redox homeostasis
- association mapping
- redox signalling
- osmotic stress
- flax
- strigolactones
- salt tolerance
- nucleolin
- CaDHN5
- photosystem
- EST-SSR
- NMT
- Sapium sebiferum
- Gossypium arboretum
- SOS
- Brassica napus
- SnRK2
- HKT1
- grapevine
- transcription factors
- cucumber
- underpinnings of salt stress responses
- abiotic stress
- Arabidopsis thaliana
- RNA-seq
- halophytes
- single nucleotide polymorphisms
- dehydrin
- J8-1 plum line
- chlorophyll fluorescence
- natural variation
- hydrogen peroxide
- salt stress
- lipid peroxidation
- ROS detoxification
- ROP
- molecular mechanisms
- cell membrane injury
- booting stage
- ascorbate cycle
- banana (Musa acuminata L.)
- iTRAQ quantification
- ROS
- Na+
- Capsicum annuum L
- bZIP transcription factors
- multiple bioactive constituents
- NaCl stress
- physiological changes
- VOZ
- transcriptional regulation
- genome-wide identification
- Apocyni Veneti Folium
- impairment of photosynthesis
- salt-stress
- Oryza sativa
- reactive oxygen species
- lipid accumulation
- polyamines
- multivariate statistical analysis
- DEUs
- salinity
- TGase
- Salt stress
- Prunus domestica
- proteomics
- Arabidopsis
- RNA binding protein
- rice
- glycophytes
- SsMAX2
- drought
- genome-wide association study
- transcriptome analysis
- signal pathway
- melatonin
- MaROP5g
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