Sammanfattning
Cassava, a crop of importance for subsistence farming in Africa, Asia, and Latin America, has the potential to benefit from global economic integration as a versatile industrial resource. Enhancing cassava productivity is not just a matter of agricultural competitiveness but a crucial step toward ensuring many communities' food security and livelihoods. Given its high performance in marginal environments, where climate change poses threats, ensuring food security and livelihoods relies on rapidly adapting cassava. This study aimed to develop a protocol that swiftly transitions cassava embryogenic short-period liquid suspension cultures, facilitating the regeneration of genetically stable in vitro plants. The resulting protocol, with its potential to be a foundational component in future technologies employing various genome editing or genetic modification techniques, holds promise for the advancement of cassava biotechnology.
| Originalspråk | Engelska |
|---|---|
| Sidor (från-till) | 453-461 |
| Antal sidor | 9 |
| Tidskrift | BioTechniques |
| Volym | 76 |
| Nummer | 9 |
| DOI | |
| Status | Publicerad - 2024 |
FN:s SDG:er
Detta resultat bidrar till följande hållbara utvecklingsmål:
-
SDG 2 – Ingen hunger
-
SDG 13 – Bekämpa klimatförändringarna
Nyckelord
- AFLP
- ensifer adhaerens (OV14)
- genetic stability
- genotyping
- gus
- manihote esculenta
- plants
- SNP
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