Latest 57 Papers

An NLP-inherited motif confers broad DNA-binding specificity to NIN in root nodule symbiosis

Authors: Nosaki, S., Noda, M., Onoda, H., Ito, M., Suzaki, T.

Date: 2025-07-23 · Version: 1
DOI: 10.1101/2025.07.20.665785

Category: Plant Biology

Model Organism: Lotus japonicus

Mycotoxin-driven proteome remodeling reveals limited activation of Triticum aestivum responses to emerging chemotypes integrated with fungal modulation of ergosterols

Authors: Ramezanpour, S., Alijanimamaghani, N., McAlister, J. A., Hooker, D., Geddes-McAlister, J.

Date: 2025-07-01 · Version: 1
DOI: 10.1101/2025.06.30.662327

Category: Plant Biology

Model Organism: Triticum aestivum

Proteomic analysis reveals distinct germination strategies in polymorphic fruits of Haloxylon ammodendron

Authors: Wang, Y. Z., Chen, Z. W., Zhang, H. X., Wang, Z., Jiang, M. L., Yimingniyazi, A., Ren, C.

Date: 2025-06-23 · Version: 1
DOI: 10.1101/2025.06.17.660099

Category: Plant Biology

Model Organism: Haloxylon ammodendron

Dynamic changes to the plastoglobule lipidome and proteome in heat-stressed maize

Authors: Devadasu, E., Susanto, F. A., Schilmiller, A. L., Johnny, C., Lundquist, P. K.

Date: 2025-06-19 · Version: 1
DOI: 10.1101/2025.06.13.659543

Category: Plant Biology

Model Organism: Zea mays

Evolutionary origin and functional diversification of plant GBF1-type ARF guanine-nucleotide exchange factors

Authors: Singh, M. K., Lauster, T., Huhn, K., Richter, S., Kientz, M., Neher, R. A., Juergens, G.

Date: 2025-06-06 · Version: 1
DOI: 10.1101/2025.06.03.657657

Category: Plant Biology

Model Organism: Arabidopsis thaliana

SNRK3.15 is a crucial component of the sulfur deprivation response in Arabidopsis thaliana

Authors: Apodiakou, A., Heyneke, E., Alseekh, S., Pinsorn, P., Metzger, S., Kopriva, S., Schulze, W., Hoefgen, R., Whitcomb, S. J.

Date: 2025-05-03 · Version: 1
DOI: 10.1101/2025.04.29.651231

Category: Plant Biology

Model Organism: Arabidopsis thaliana

Modulation of the GT Family 47 clade B gene affects arabinan deposition in elaters of Marchantia polymorpha

Authors: Kang, H. S. F., Lampugnani, E. R., Tong, X., Prabhakar, P. K., Flores-Sandoval, E., Hansen, J., Jorgensen, B., Bowman, J. L., Urbanowicz, B. R., Ebert, B., Persson, S.

Date: 2025-05-03 · Version: 1
DOI: 10.1101/2025.05.02.651808

Category: Plant Biology

Model Organism: Marchantia polymorpha

The Building Blocks of Early Land Plants: Glycosyltransferases and Cell Wall Architecture in the model liverwort Marchantia polymorpha

Authors: Kang, H. S. F., Tong, X., Mariette, A., Leong, M., Beahan, C., Flores-Sandoval, E., Pedersen, G., Rautengarten, C., Bowman, J. L., Ebert, B., Bacic, A., Doblin, M., Persson, S., Lampugnani, E. R.

Date: 2025-04-30 · Version: 1
DOI: 10.1101/2025.04.30.651426

Category: Plant Biology

Model Organism: Marchantia polymorpha

The MpCAFA gene encodes a ciliary protein required for spermatozoid motility in the liverwort Marchantia polymorpha

Authors: MORITA, M., Yamato, K. T.

Date: 2025-04-30 · Version: 1
DOI: 10.1101/2025.04.26.650577

Category: Plant Biology

Model Organism: Marchantia polymorpha

The cytochrome P450 enzyme MpCYP78E1 inhibits meristem initiation and activity in Marchantia polymorpha

Authors: Spencer, V., Casey, C., Mosiolek, M., Jandrasits, K., Edelbacher, N., Dolan, L.

Date: 2025-04-30 · Version: 1
DOI: 10.1101/2025.04.28.651025

Category: Plant Biology

Model Organism: Marchantia polymorpha

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