{
"$type": "site.standard.document",
"bskyPostRef": {
"cid": "bafyreieodygxej3ogt3leo2hmrpeo3mvbtnfrspcr5dnyso54gwpteof4y",
"uri": "at://did:plc:2gbt2dlwaqovtnmxkat3tyke/app.bsky.feed.post/3mhfi76ft3yj2"
},
"coverImage": {
"$type": "blob",
"ref": {
"$link": "bafkreigunczvqtkxq6hdgwjnv4svtkppdgq7rdkm57ixu5cdy5i3sddweq"
},
"mimeType": "image/jpeg",
"size": 104599
},
"path": "/articles/d41586-026-00891-4",
"publishedAt": "2026-03-19T07:30:17.441Z",
"site": "https://www.nature.com",
"tags": [
"doi:10.1038/d41586-026-00891-4"
],
"textContent": "Nature, Published online: 18 March 2026; doi:10.1038/d41586-026-00891-4\n\nNew evidence reveals biochemical pathway behind quinine production.",
"title": "Botanical mystery solved: how plants make a crucial malaria drug",
"updatedAt": "2026-03-18T00:00:00.000Z"
}