- Research Article
- 10.1016/j.tice.2026.103493
CLIC5B attenuates pro-inflammatory fibroblast migration through inhibition of the CLIC1/CLIC4-PIP5K1 axis.
- Aug 01, 2026
- Tissue & cell
- Fan Jiang + 3 more +3
Publications from 2021 to 2026
Showing 10 of 10,440 papers
CLIC5B attenuates pro-inflammatory fibroblast migration through inhibition of the CLIC1/CLIC4-PIP5K1 axis.
Design strategies for fluorene-skeleton near-infrared small-molecule dyes and their NIR-II imaging applications.
3D printed self-lubricating bionic cartilage
A bimodal phenomenon in lake evolution since the last deglaciation from Qinghai-Tibet Plateau: Multiple hypothesis verification and a new mechanism
Sustainable biodiesel production from wild seed oil crop Malcolmia africana using green tea waste-derived copper nano catalyst
Electronic and structural factors governing regio- and chemoselectivity in Rh(III)-catalyzed amidation reactions: A DFT study
Divergent floral hydraulic strategies in Bauhinia s.l.: lianas adopt drought tolerance while trees prioritize drought avoidance.
Lianas are particularly abundant in seasonally dry tropical forests, where most species flower during the dry season. While hydraulic differences of vegetative organs between lianas and trees are well-documented, floral hydraulic strategies and their potential role in liana expansion remain unclear. To characterize divergence in floral water-use strategies between lianas and trees, we examined 24 floral traits related to water transport, storage, drought tolerance, and pollinator attraction in 16 liana and 16 tree species of Bauhinia s.l. from a tropical seasonal rainforest in Yunnan, China. Liana flowers exhibited greater petal vein density, stomatal density and size, flower mass per area, and drought tolerance than tree flowers, which showed higher saturated water content and hydraulic capacitance. Liana flowers exhibited a trade-off between hydraulic efficiency and safety, but trees did not. Life forms also differed in trait coordination linking hydraulic structure, function, and reproduction. Our findings reveal divergent floral hydraulic syndromes: lianas adopt structurally reinforced, drought-tolerant designs for canopy flowering under high vapor pressure deficit, while trees rely on internal water reserves to buffer water loss. This study provides the first organ-level evidence that divergent floral hydraulic strategies underpin reproductive success and may help explain liana dominance in seasonally dry tropical forests under climate change.
Read moreEnvironmental heat and cold stress, thyrotropin abnormalities, and reduced fecundability in 14 million Chinese couples: A nationwide preconception cohort study.
Heterogeneity and trend of household energy structure variation between urban and rural residents
A distinct zearalenone detoxification strategy mediated by cytochrome P450.