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Power of combining phytochromes action spectra with environmental light fields to discover new biological functions, as exemplified by the diatom phytochrome.

Power of combining phytochromes action spectra with environmental light fields to discover new biological functions, as exemplified by the diatom phytochrome.

How microalgae use phytochrome to sense the ocean’s light

#TansleyInsight by Duchêne et al. @afalciat.bsky.social

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

11 10 0 0
Fig. 1 CLAVATA3/EMBRYO SURROUNDING REGION (CLE) in biotic plant interactions.

Fig. 1 CLAVATA3/EMBRYO SURROUNDING REGION (CLE) in biotic plant interactions.

#TansleyInsight: CLE peptides in plant-biotic interactions

Nicolas Frei dit Frey & Thomas Spallek
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience

14 7 0 0
Fig. 2 Model for membrane trafficking in the immune response to powdery mildew fungi.

Fig. 2 Model for membrane trafficking in the immune response to powdery mildew fungi.

#TansleyInsight: Entanglement of plant immunity and endomembrane trafficking revealed by plant–powdery mildew fungal interactions

Thordal-Christensen et al.
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience @sohini-d.bsky.social

9 8 1 1
Conceptual diagram illustrating plant hydraulics and the scaling from individual plants to ecosystems, framed by forward and inversion approaches to bridge scale gaps.

Conceptual diagram illustrating plant hydraulics and the scaling from individual plants to ecosystems, framed by forward and inversion approaches to bridge scale gaps.

Scaling plant hydraulic traits to predict ecosystem fluxes under drought

#TansleyInsight by Yanlan Liu

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

7 4 0 0
Relationship between herbaceous species richness and relative humidity at hourly intervals across a 24 hour period. We measured relative humidity every 5 min during the growing season in the Biodiversity, CO2, and Nitrogen (BioCON) experiment in central Minnesota in 2012 (Reich et al., 2001, Wright et al., 2015).

Relationship between herbaceous species richness and relative humidity at hourly intervals across a 24 hour period. We measured relative humidity every 5 min during the growing season in the Biodiversity, CO2, and Nitrogen (BioCON) experiment in central Minnesota in 2012 (Reich et al., 2001, Wright et al., 2015).

#Diversity affects #microclimate #temperature and humidity: an overview of the evidence and major unanswered questions

#TansleyInsight by Alexandra J. Wright, J. English, and C. Guimaraes-Steinicke

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

3 1 0 0
Schematic overviews of the sulfur assimilation pathway, the abscisic acid signaling pathway, and the regulatory function of the cysteine synthase complex.

Schematic overviews of the sulfur assimilation pathway, the abscisic acid signaling pathway, and the regulatory function of the cysteine synthase complex.

#TansleyInsight article: Novel roles of sulfur metabolism in stress-controlled stomata aperture regulation

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...
by Sun et al.

#PlantScience

This figure was created in BioRender (BioRender.com/4vg6oit).

3 0 0 0
Model for membrane trafficking in the immune response to powdery mildew fungi.

Model for membrane trafficking in the immune response to powdery mildew fungi.

#TansleyInsight article: Plant immunity depends on endomembrane trafficking

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...
by Thordal-Christensen et al.

@sohini-d.bsky.social #PlantScience

12 3 0 1
Fig. 3 Representative osmoresponsive condensates and their functions in animal (left) and plant (right) cells.

Fig. 3 Representative osmoresponsive condensates and their functions in animal (left) and plant (right) cells.

#TansleyInsight: Condense to sense: a new path for plant osmosensing

Zhenyu Wang & Hongwei Guo
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience

5 0 0 0
Fig. 2 Integrative proteomics approaches for data-driven reconstruction of kinase signaling.

Fig. 2 Integrative proteomics approaches for data-driven reconstruction of kinase signaling.

#TansleyInsight: Masters of perception: phosphorylation-dependent signaling in plants

Mark Roosjen, Justin W. Walley & Dolf Weijers
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience

15 8 0 0
Fig. 1 Multifaceted roles of phages in sustainable agriculture.

Fig. 1 Multifaceted roles of phages in sustainable agriculture.

#TansleyInsight: From bacterial #predators to partners: phages in agriculture

Zahra Salehimoghaddam, Alexander P. Hynes and Rebecca T. Doyle
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

6 2 0 1
Fig. 2 Jasmonic acid (JA)-induced reprogramming of the histone acetylation landscape.

Fig. 2 Jasmonic acid (JA)-induced reprogramming of the histone acetylation landscape.

#TansleyInsight: The environmentally responsive plant epigenome: insights from #jasmonate signaling

Mark Zander and Emily Vesper
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

10 2 0 0
Fig. 2 MYCs coordinate secretory structure development and specialized metabolite biosynthesis in tomato (Solanum lycopersicum), citrus (Citrus spp.), and cotton (Gossypium hirsutum).

Fig. 2 MYCs coordinate secretory structure development and specialized metabolite biosynthesis in tomato (Solanum lycopersicum), citrus (Citrus spp.), and cotton (Gossypium hirsutum).

#TansleyInsight: #Plant epidermis-derived secretory structures: from glandular trichomes to secretory cavities

Xiang et al.
👇

📖 nph.onlinelibrary.wiley.com/doi/full/10....

#LatestIssue

10 3 0 0
Integrative proteomics approaches for data-driven reconstruction of kinase signaling.

Integrative proteomics approaches for data-driven reconstruction of kinase signaling.

Masters of perception: phosphorylation-dependent signaling in plants

#TansleyInsight by Roosjen et al.

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

13 7 0 0
Fig. 1 Schematic representation of the major features of mycorrhiza-like endophytes (MLEs).

Fig. 1 Schematic representation of the major features of mycorrhiza-like endophytes (MLEs).

#TansleyInsight: Endophytes with #mycorrhizal potentials: biological and ecological implications

Yuan et al.
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

16 11 0 0
Fig. 1 Conceptual overview of the costs and benefits of adaptation via loci carried by mobile genetic elements (MGEs).

Fig. 1 Conceptual overview of the costs and benefits of adaptation via loci carried by mobile genetic elements (MGEs).

#TansleyInsight: Causes and consequences of bacterial local adaptation via MGEs in the #plant #microbiome

Porter et al.
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue @Bkoskella.bsky.social @dholtappels.bsky.social

2 1 1 0
CLAVATA3/EMBRYO SURROUNDING REGION in biotic plant interactions.

CLAVATA3/EMBRYO SURROUNDING REGION in biotic plant interactions.

CLE peptides in plant-biotic interactions

#TansleyInsight by Nicolas Frei dit Frey and Thomas Spallek

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

15 5 0 2
Conceptual schematic illustrating the multifaceted roles of bacteriophages (phages) in sustainable agriculture. The figure shows four panels depicting phage-driven processes in soil ecosystems: suppression of bacterial plant pathogens through virulent phage lysis; enhancement of plant growth-promoting bacteria via temperate phage integration and competitive advantages; detection of soil pathogens using phage-based biosensors that generate measurable signals; and phage-mediated soil bioremediation through auxiliary metabolic genes that enable bacterial degradation of environmental pollutants. Together, the panels summarize how phages influence soil microbiomes and plant health.

Conceptual schematic illustrating the multifaceted roles of bacteriophages (phages) in sustainable agriculture. The figure shows four panels depicting phage-driven processes in soil ecosystems: suppression of bacterial plant pathogens through virulent phage lysis; enhancement of plant growth-promoting bacteria via temperate phage integration and competitive advantages; detection of soil pathogens using phage-based biosensors that generate measurable signals; and phage-mediated soil bioremediation through auxiliary metabolic genes that enable bacterial degradation of environmental pollutants. Together, the panels summarize how phages influence soil microbiomes and plant health.

#TansleyInsight From bacterial predators to partners: phages in agriculture

Salehimoghaddam et al.

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

9 3 0 0
Fig. 2 Transmission of cyanobionts in both reproductive cycles of Azolla. Azolla growing in a rice paddy.

Fig. 2 Transmission of cyanobionts in both reproductive cycles of Azolla. Azolla growing in a rice paddy.

#TansleyInsight: #Evolution of molecular #communication in the permanent Azolla symbiosis

Deren Büyüktaş, Ellen Sigourney Lorberg & Sophie de Vries
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

7 2 0 0
Fig. 1 A proposed model of strigolactone (SL) perception in rice.

Fig. 1 A proposed model of strigolactone (SL) perception in rice.

#TansleyInsight: Strigolactone perception: a key hub in #nutrient responses of higher #plants

Qingliang Hu, Jiayang Li & Bing Wang
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

5 0 0 0
Representative osmoresponsive condensates and their functions in animal and plant cells. Created in BioRender. Wang, Z. (2026) https://BioRender.com/v7blud4.

Representative osmoresponsive condensates and their functions in animal and plant cells. Created in BioRender. Wang, Z. (2026) https://BioRender.com/v7blud4.

#TansleyInsight Condense to sense: a new path for plant osmosensing

Zhenyu Wang (王振宇), Hongwei Guo (郭红卫)

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

4 3 0 0
MYCs coordinate secretory structure development and specialized metabolite biosynthesis in tomato (Solanum lycopersicum), citrus (Citrus spp.), and cotton (Gossypium hirsutum).

MYCs coordinate secretory structure development and specialized metabolite biosynthesis in tomato (Solanum lycopersicum), citrus (Citrus spp.), and cotton (Gossypium hirsutum).

#TansleyInsight: Plant epidermis‐derived secretory structures: from glandular trichomes to secretory cavities

Xiang et al.

nph.onlinelibrary.wiley.com/doi/10.1111/...

#plantscience

4 1 0 0
Fig. 1 Evolution and potential contributions of alternative splicing (AS) along the speciation continuum.

Fig. 1 Evolution and potential contributions of alternative splicing (AS) along the speciation continuum.

#TansleyInsight: Evolutionary #genetics of alternative splicing in #plants

@peterinnes1.bsky.social, Nolan Kane & @chriscrsmith.bsky.social
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

14 6 0 0
Fig. 1 Examples of biomolecular condensates in environmental response.

Fig. 1 Examples of biomolecular condensates in environmental response.

#TansleyInsight: Transcriptional outputs and condensates – formation and function

Hutin et al.
👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue

4 1 0 0
Jasmonic acid-induced reprogramming of the histone acetylation landscape.

Jasmonic acid-induced reprogramming of the histone acetylation landscape.

#TansleyInsight The environmentally responsive plant epigenome: insights from jasmonate signaling

Zander and Vesper

nph.onlinelibrary.wiley.com/doi/10.1111/...

3 2 0 0
Fig. 1 Mechanisms of Toll/interleukin-1 receptor (TIR)/TIR-type NLR (TNL) protein function in plant immunity.

Fig. 1 Mechanisms of Toll/interleukin-1 receptor (TIR)/TIR-type NLR (TNL) protein function in plant immunity.

#TansleyInsight | TIR innovations in plant immunity

Zhongshou Wu 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

4 0 0 0
Fig. 1 Islands used for studying temporal dynamics in island assembly.

Fig. 1 Islands used for studying temporal dynamics in island assembly.

#TansleyInsight: Trait-based island biogeography as a tool for studying future ecological communities

@julianschrader.bsky.social 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

10 2 0 0
Fig. 1 Temporal genomic approaches for measuring selection coefficients from allele frequency change vary in power and accuracy depending on sampling design, sample size, and dominance.

Fig. 1 Temporal genomic approaches for measuring selection coefficients from allele frequency change vary in power and accuracy depending on sampling design, sample size, and dominance.

#TansleyInsight | The genetic architecture and spatiotemporal dynamics of adaptation across human-modified landscapes

@jmkreiner.bsky.social 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

6 2 0 0
Fig. 1 A framework for plant hydraulic and photosynthetic responses to rainfall pulses, indicative of a hierarchy where larger rainfall pulses are required to elicit more prolonged responses across (a) soil moisture, (b) leaf water potential, (c) gross primary productivity (GPP), and (d) biomass growth.

Fig. 1 A framework for plant hydraulic and photosynthetic responses to rainfall pulses, indicative of a hierarchy where larger rainfall pulses are required to elicit more prolonged responses across (a) soil moisture, (b) leaf water potential, (c) gross primary productivity (GPP), and (d) biomass growth.

#TansleyInsight | The pulse of global vegetation: do individual rainfall events create a lasting imprint on photosynthesis?

Andrew F. Feldman 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

7 2 0 0
Fig. 3 Resource (here C and water) uptake, transport, and consumption shape resource distribution along the leaf-to-root axis, influencing C partitioning and plant functional traits under changing environmental conditions.

Fig. 3 Resource (here C and water) uptake, transport, and consumption shape resource distribution along the leaf-to-root axis, influencing C partitioning and plant functional traits under changing environmental conditions.

#TansleyInsight | Distal to proximal: a continuum of drivers shaping tree growth and carbon partitioning

@acabon.bsky.social 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

15 7 0 0
Fig. 2 Hydraulic fluctuations at the cambium.

Fig. 2 Hydraulic fluctuations at the cambium.

#TansleyInsight | On growth and flow: hydraulic aspects of aboveground meristems

@jalonsos.bsky.social 👇

📖 nph.onlinelibrary.wiley.com/doi/10.1111/...

#LatestIssue #PlantScience #TansleyMedal

15 7 0 0