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Cassava (Manihot esculenta Crantz) storage roots exhibit significant variation in starch content among cultivars, yet the metabolic and molecular mechanisms governing carbon allocation between storage and structural components remain poorly understood. Here, we investigated carbon partitioning in...

2025-12-20 | MTBLS13541 | MetaboLights
microRNAs can play a crucial role in stress response in plants, including biotic stress. Some miRNAs are known to respond to bacterial infection. This work has addressed the role of miRNAs in Manihot esculenta (cassava)-Xanthomonas axonopodis pv. manihotis (Xam) interaction. Illumina sequencing was ...
ORGANISM(S): Manihot esculenta 
Manihot esculenta waterlogging Transcriptome
Manihot esculenta waterlogging Transcriptome
Manihot esculenta Transcriptome or Gene expression
Stress acclimation is an effective mechanism that plants acquired for adaption to dynamic environmental conditions. After undergoing cold acclimation, plants become more tolerant to cold stress. In order to understand the mechanism of cold acclimation, we performed a systematic, comprehensive study ...
ORGANISM(S): Manihot esculenta 
Cassava (Manihot esculenta Crantz) is a food security crop for approximately 800 million people, primarily in developing economies. Cassava root yield is determined by the allocation of photoassimilated carbon within the plant, yet there is limited molecular and biochemical information about source-...
ORGANISM(S): Manihot esculenta (Cassava) (Jatropha manihot) 
2026-04-01 | PXD045690 | Pride
Manihot Esculenta Genome sequencing
Manihot esculenta Raw sequence reads
Manihot esculenta Raw sequence reads
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