{"ok":true,"trend":{"id":879765,"platform":"news","region":"global","key":"bacterial duo supercharges olive roots and rewrites their chemical signals","title":"Bacterial Duo Supercharges Olive Roots and Rewrites Their Chemical Signals","url":"https://news.google.com/rss/articles/CBMioAFBVV95cUxPTEc1Rmw3QXFiUTcxU29sTDlYVmRhejB1alZKSXJocmY3d1diNlFqN3dxMEVMMFhhTmtVTEc5ekp5Vy0zV2dTNnhkQU9kc0s3a2lSUkZxWllrWGdSRUkzcHEzc0dia29nWHJsNGRndnNlMFZCUURVRk5Yc2g2MFpQcEZoY0xjQ1JIVExNWm80cXVWNTdaT0FvdU9SbkIyMW01?oc=5","first_seen":"2026-10-03T16:28:22.668567Z","last_seen":"2026-10-04T03:27:36.919174Z","last_rank":35,"peak_rank":20,"last_volume":null,"peak_volume":0,"seen_count":9,"score":30.78,"category_hint":"biology","section":"science","category":"biology","summary":"A newly reported study describes how a pair of bacterial strains applied to olive roots stimulates root growth and changes the chemical signals the roots release into the surrounding soil. The findings suggest the microbial duo could act as a natural biostimulant, potentially improving olive tree establishment and resilience while reducing reliance on chemical fertilisers in olive cultivation.","why":"New research on beneficial soil bacteria offers potential sustainable applications for olive farming.","tone":"positive","entities":["olive trees","plant growth-promoting bacteria","agriculture"],"summarized_at":"2026-10-03T22:31:09.258064Z","meta":{"via":"scan","lang":"en","term":"biology","source":"Bioengineer.org","published":"Sat, 03 Oct 2026 16:04:57 GMT"},"nw":null,"promo":null,"kind":null,"importance":null,"hidden":false,"hide_reason":null,"judged_at":null,"title_en":"Bacterial Duo Boosts Olive Roots and Alters Root Chemistry","section_name":"Science","category_name":"Biology","timeline":[{"captured_at":"2026-10-03T16:28:22.668567Z","rank":24,"volume":null},{"captured_at":"2026-10-03T17:50:23.968898Z","rank":25,"volume":null},{"captured_at":"2026-10-03T19:12:24.764997Z","rank":24,"volume":null},{"captured_at":"2026-10-03T20:35:28.556031Z","rank":20,"volume":null},{"captured_at":"2026-10-03T21:58:17.506132Z","rank":25,"volume":null},{"captured_at":"2026-10-03T23:20:23.135627Z","rank":26,"volume":null},{"captured_at":"2026-10-04T00:42:56.632260Z","rank":27,"volume":null},{"captured_at":"2026-10-04T02:05:38.769086Z","rank":30,"volume":null},{"captured_at":"2026-10-04T03:27:36.919174Z","rank":35,"volume":null}],"posts":[{"platform":"news","url":"https://news.google.com/rss/articles/CBMioAFBVV95cUxPTEc1Rmw3QXFiUTcxU29sTDlYVmRhejB1alZKSXJocmY3d1diNlFqN3dxMEVMMFhhTmtVTEc5ekp5Vy0zV2dTNnhkQU9kc0s3a2lSUkZxWllrWGdSRUkzcHEzc0dia29nWHJsNGRndnNlMFZCUURVRk5Yc2g2MFpQcEZoY0xjQ1JIVExNWm80cXVWNTdaT0FvdU9SbkIyMW01?oc=5","author":"Bioengineer.org","title":"Bacterial Duo Supercharges Olive Roots and Rewrites Their Chemical Signals","snippet":null,"posted_at":"2026-10-03T15:45:00Z","likes":null}],"elsewhere":[],"window":"7d"}}