Norwegian
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)

saccharum asperum/hypoxia

Koblingen er lagret på utklippstavlen
ArtiklerKliniske studierPatenter
5 resultater

Biotechnological approaches to creation of hypoxia and anoxia tolerant plants.

Bare registrerte brukere kan oversette artikler
Logg inn Registrer deg
The present work provides results of a number of biotechnological studies aimed at creating cell lines and entire plants resistant to anaerobic stress. Developed biotechnological approaches were based on earlier fundamental researches into anaerobic stress in plants, so "Introduction" briefly covers

Inhibition of oxygen release by anoxia in a C3-plant (Nicotiana tabacum cv. Wisconsin 38). Comparison with C4-plants.

Bare registrerte brukere kan oversette artikler
Logg inn Registrer deg
Tobacco leaves (Nicotiana tabacum var. Wisconsin 38) submitted to anaerobic conditions behave in a manner similar to that of maize, sugarcane, or sorghum leaves (C4-plants); more precisely, a lag time in O2 release is exhibited when the leaves are exposed to light after treatment in the dark under

Hypersensitivity pneumonitis: bagassosis.

Bare registrerte brukere kan oversette artikler
Logg inn Registrer deg
Pneumoconiosis from inorganic dusts is very common worldwide and has been studied by many experts in Taiwan. However, pneumoconiosis due to organic dusts, i.e. hypersensitivity pneumonitis, seems rather uncommon in Taiwan, and to our best knowledge there has been no related report so far. In this

Crosstalk between sugarcane and a plant-growth promoting Burkholderia species.

Bare registrerte brukere kan oversette artikler
Logg inn Registrer deg
Bacterial species in the plant-beneficial-environmental clade of Burkholderia represent a substantial component of rhizosphere microbes in many plant species. To better understand the molecular mechanisms of the interaction, we combined functional studies with high-resolution dual transcriptome

Regulation of assimilate import into sink organs: update on molecular drivers of sink strength.

Bare registrerte brukere kan oversette artikler
Logg inn Registrer deg
Recent developments have altered our view of molecular mechanisms that determine sink strength, defined here as the capacity of non-photosynthetic structures to compete for import of photoassimilates. We review new findings from diverse systems, including stems, seeds, flowers, and fruits. An
Bli med på
facebooksiden vår

Den mest komplette databasen med medisinske urter støttet av vitenskap

  • Fungerer på 55 språk
  • Urtekurer støttet av vitenskap
  • Urtegjenkjenning etter bilde
  • Interaktivt GPS-kart - merk urter på stedet (kommer snart)
  • Les vitenskapelige publikasjoner relatert til søket ditt
  • Søk medisinske urter etter deres effekter
  • Organiser dine interesser og hold deg oppdatert med nyheter, kliniske studier og patenter

Skriv inn et symptom eller en sykdom og les om urter som kan hjelpe, skriv en urt og se sykdommer og symptomer den brukes mot.
* All informasjon er basert på publisert vitenskapelig forskning

Google Play badgeApp Store badge