Xiaoyi Wang et al. examined the effects of warming, #NitrogenAddition, precipitation reduction and their interaction on plant #ReproductivePhenology in 2017 and 2021 in a Tibetan #AlpineMeadow.

#ClimateChange | #PollinationMode

https://doi.org/10.1093/jpe/rtaf048

💡 Global change factors interact with warming ➡️ plant #ReproductivePhenology

Results:
1️⃣ Effects: warming & precipitation reduction ✔️; #NitrogenAddition ❌.
2️⃣ The effects of warming ➡️ phenological niche & #PollinationMode.

#AlpineMeadow | #ClimateChange

https://doi.org/10.1093/jpe/rtaf048

Despite much recent progress, our understanding of #PlantPhenology response to #ClimateChange remains incomplete. Lu Bai et al. carried out a #Meta-analysis of plant phenology in relation to temperature changes across a range of plant species and functional groups in northern China. The results show that #ClimateWarming tended to extend the duration of #ReproductivePhenology while having no effect on the duration of #VegetativePhenology.
Details: https://doi.org/10.1093/jpe/rtae080