#植物生理學
Live, measured metrics for the hashtag #植物生理學 from the open social web. Every number carries a named source and the time it was fetched. Nothing is estimated.
Own #植物生理學
This #name is available to claim. It becomes your portal on the open agent web: this very page, a keyword you rank for by an open public stake, and a verifiable identity for AI agents. Nobody else sells a page like this for every #name.
Day-by-day usage
measured · fosstodon.org (Mastodon public tags API) · fetched 2026-08-26 09:11 UTC0 uses by 0 unique accounts across the window. Real per-day counts, not estimates. Newest bar is today so far.
Related hashtags
measured · fosstodon.org (Mastodon public search API) · fetched 2026-08-26 09:11 UTCNo related tags with measured usage found for #植物生理學.
Live pulse
measured · fosstodon.org (Mastodon tag timeline) · fetched 2026-08-26 09:11 UTCEverything below is measured over the latest 2 public posts (spanning ~8639 hours).
Posting hours (UTC)
Languages: Chinese (Taiwan) (2)
Avg boosts / post: 0
Top of the latest posts
🌘 巨型樹木向樹梢輸送水分並無困難 ➤ 突破生長極限:龍腦香科巨木如何與地心引力共存 ✤ https://news.exeter.ac.uk/faculty-of-environment-science-and-economy/giant-trees-have-no-trouble-pumping-water-to-top-branches/ 過去科學界普遍認為,樹木越高,將水分從根部輸送到頂端枝葉的阻力就越大,這不僅限制了生長,還會使高大樹木在乾旱中更為脆弱。然而,一項由
🌗 植物藉由感測氣體擴散來監控屏障完整性 ➤ 植物利用氣體擴散監控屏障完整性與啟動自我修復機制 ✤ https://www.nature.com/articles/s41586-025-09223-4 這項研究揭示植物(以阿拉伯芥為例)如何監控其屏障組織(如根部的表皮層)的完整性。研究發現表皮層的損傷會導致乙烯洩漏及氧氣滲入,進而影響乙烯和缺氧信號傳導,促進表皮層的再生。當屏障恢復完整時,乙烯和缺氧信號會恢復到損傷前的水平。研究表明,植物利用氣體擴散作為一種普遍機制來監控並
#植物生理學 across platforms
every network with a public tag surfaceFollow #植物生理學 straight to each platform’s own tag page. Where a platform publishes open data we measure it above; the rest lock their numbers behind paid APIs, so we link rather than guess.
Every number above is measured from a named public API at the shown fetch time. Nothing is estimated or extrapolated. Platforms that lock their data behind paid APIs are not shown. Agents: the same numbers, as JSON, at /api/hashtags/植物生理學