{"ok":true,"trend":{"id":764968,"platform":"news","region":"global","key":"single-molecule chromatin tracing reveals a diversity of megabase heterochromatin domains","title":"Single-molecule chromatin tracing reveals a diversity of megabase heterochromatin domains","url":"https://news.google.com/rss/articles/CBMiX0FVX3lxTE1heDAzQU15SXJjV3duRHpkaHN1cm4zUjNVNExpeEZUcmQySVFCVllGZjQ4VXNjQktyX2tmU3pHMThZSGs4Z1pvSWtncWJmZjV2am9YUUdzMWZuUVpBc2s4?oc=5","first_seen":"2026-10-02T18:32:14.587857Z","last_seen":"2026-10-03T05:30:39.590249Z","last_rank":33,"peak_rank":9,"last_volume":null,"peak_volume":0,"seen_count":9,"score":32.1,"category_hint":"biology","section":"science","category":"biology","summary":"Researchers report in Nature a single-molecule chromatin tracing technique that maps genome folding directly in single cells. The method reveals a surprising diversity of megabase-scale heterochromatin domains, challenging the view of heterochromatin as a uniform, repetitive compartment. Scientists following the study say the findings refine how chromatin organisation is understood and may affect research into gene regulation and genome stability.","why":"The publication of a new imaging-based study in Nature is drawing attention for challenging assumptions about heterochromatin structure.","tone":"neutral","entities":["Nature","heterochromatin","chromatin tracing"],"summarized_at":"2026-10-03T06:37:09.540250Z","meta":{"via":"scan","lang":"en","term":"biology","source":"Nature","published":"Fri, 02 Oct 2026 10:23:07 GMT"},"nw":null,"promo":null,"kind":null,"importance":null,"hidden":false,"hide_reason":null,"judged_at":null,"title_en":"New chromatin tracing method reveals diverse heterochromatin domains","section_name":"Science","category_name":"Biology","timeline":[{"captured_at":"2026-10-02T18:32:14.587857Z","rank":9,"volume":null},{"captured_at":"2026-10-02T19:54:13.193297Z","rank":12,"volume":null},{"captured_at":"2026-10-02T21:16:35.097397Z","rank":20,"volume":null},{"captured_at":"2026-10-02T22:38:34.546838Z","rank":21,"volume":null},{"captured_at":"2026-10-03T00:01:24.221060Z","rank":20,"volume":null},{"captured_at":"2026-10-03T01:24:51.261830Z","rank":25,"volume":null},{"captured_at":"2026-10-03T02:46:13.875223Z","rank":24,"volume":null},{"captured_at":"2026-10-03T04:08:30.817100Z","rank":31,"volume":null},{"captured_at":"2026-10-03T05:30:39.590249Z","rank":33,"volume":null}],"posts":[{"platform":"news","url":"https://news.google.com/rss/articles/CBMiX0FVX3lxTE1heDAzQU15SXJjV3duRHpkaHN1cm4zUjNVNExpeEZUcmQySVFCVllGZjQ4VXNjQktyX2tmU3pHMThZSGs4Z1pvSWtncWJmZjV2am9YUUdzMWZuUVpBc2s4?oc=5","author":"Nature","title":"Single-molecule chromatin tracing reveals a diversity of megabase heterochromatin domains","snippet":null,"posted_at":"2026-10-02T10:23:07Z","likes":null}],"elsewhere":[],"window":"7d"}}