A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds

CH Wu, D An, LN Sun, M Wang, GN Chang… - Plant Cell, Tissue and …, 2017 - Springer
To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture,
we established an AR co-culture system of Echinacea species. ARs of different combination …

A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds

CH Wu, D An, LN Sun, M Wang… - Plant Cell, Tissue …, 2017 - search.proquest.com
To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture,
we established an AR co-culture system of Echinacea species. ARs of different combination …

A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds.

CH Wu, D An, LN Sun, M Wang, GN Chang, CY Zhao… - 2017 - cabidigitallibrary.org
To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture,
we established an AR co-culture system of Echinacea species. ARs of different combination …

A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds.

C Wu, D An, L Sun, M Wang, G Chang… - Plant Cell, Tissue & …, 2017 - search.ebscohost.com
To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture,
we established an AR co-culture system of Echinacea species. ARs of different combination …

A novel co-culture system of adventitious roots of Echinacea species in bioreactors for high production of bioactive compounds.

CH Wu, D An, LN Sun, M Wang, GN Chang… - Plant Cell, Tissue and …, 2017 - cabdirect.org
To efficiently produce bioactive compounds of Echinacea via adventitious root (AR) culture,
we established an AR co-culture system of Echinacea species. ARs of different combination …