2021
DOI: 10.1038/s41438-020-00455-1
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Chromosome-scale genome assembly provides insights into the evolution and flavor synthesis of passion fruit (Passiflora edulis Sims)

Abstract: Passion fruit (Passiflora edulis Sims) is an economically valuable fruit that is cultivated in tropical and subtropical regions of the world. Here, we report an ~1341.7 Mb chromosome-scale genome assembly of passion fruit, with 98.91% (~1327.18 Mb) of the assembly assigned to nine pseudochromosomes. The genome includes 23,171 protein-coding genes, and most of the assembled sequences are repetitive sequences, with long-terminal repeats (LTRs) being the most abundant. Phylogenetic analysis revealed that passion … Show more

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Cited by 80 publications
(76 citation statements)
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“…Very recently, a ∼1,341.7‐Mbp chromosome‐scale genome assembly of the purple passionfruit ( P. edulis ) was reported (Xia et al., 2021), with 98.91% of the assembly assigned to nine pseudochromosomes. The genome harbors 23,171 protein‐coding genes, and most of the assembled sequences are repetitive, with a predominance of LTRs, confirming our previous findings.…”
Section: Introductionmentioning
confidence: 99%
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“…Very recently, a ∼1,341.7‐Mbp chromosome‐scale genome assembly of the purple passionfruit ( P. edulis ) was reported (Xia et al., 2021), with 98.91% of the assembly assigned to nine pseudochromosomes. The genome harbors 23,171 protein‐coding genes, and most of the assembled sequences are repetitive, with a predominance of LTRs, confirming our previous findings.…”
Section: Introductionmentioning
confidence: 99%
“…The availability of a reference sequence will greatly facilitate further progress in comparative genomics and molecular genetics, geared towards assisting passion fruit breeding initiatives. It will also serve as a valuable tool for evolutionary analyses of Passiflora , providing a scaffold for genome assembly, variant calling, RNA read alignment, chromosome molecular mapping, gene annotation, and functional analysis, especially for comparison with the purple passionfruit genome (Xia et al., 2021).…”
Section: Introductionmentioning
confidence: 99%
“…The activity, function and regulatory mechanisms associated with the subunits of FVT biosynthetic enzymes are being investigated. The metabolic flux flows mainly from the plastic MEP pathway to the cytoplastic MVA pathway [14,174]. MEcPP is a possible rheostat that influences the abundance of upstream enzymes and is instrumental in fine-tuning the flux of the MEP pathway [175,176].…”
Section: Biosynthesis Of Fvtsmentioning
confidence: 99%
“…In contrast, silencing this gene significantly delays flowering in Litsea cubeba (Lour.) [14]. Some of the transporters required for the subcellular transport of IPP and GPP remain unknown [180].…”
Section: Biosynthesis Of Fvtsmentioning
confidence: 99%
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