Results 191 to 200 of about 35,261 (250)

A Truncated WRKY Protein Enhances Drought Resistance in Wild Tomatoes Through the SlWRKY16‐CIP2b‐SlSYP121 Module

open access: yesPlant Biotechnology Journal, Volume 24, Issue 6, Page 3840-3860, June 2026.
ABSTRACT Drought stress is a major abiotic factor that severely affects plant growth and food production. Identifying drought‐resistant genes and their regulatory mechanisms is essential for mitigating the negative impacts of drought on plants. In this study, we identified a natural single nucleotide polymorphism (SNP) mutation in SlWRKY16 that is ...
Yin Ding   +11 more
wiley   +1 more source

The Advantaged Salt Inducible Suaeda salsa SsNRT2.5 and Its Promoter Significantly Enhance Nitrate Transport Efficiency and Salt Tolerance in Transgenic Arabidopsis and Rice

open access: yesPlant Biotechnology Journal, Volume 24, Issue 6, Page 4084-4101, June 2026.
ABSTRACT Efficient nitrogen (N) uptake is critical for crop yield, but soil salinization inhibits plant nitrogen acquisition. In this study, the nitrate (NO3−) transporter gene SsNRT2.5 and its promoter from the halophyte Suaeda salsa was investigated to elucidate the functional role in NO3− transport under salinity and low NO3−–N conditions.
Ranran Liu   +8 more
wiley   +1 more source

Photosystem II Responses at the Whole-Potato-Leaf Level After Colorado Potato Beetle Feeding. [PDF]

open access: yesPlants (Basel)
Sperdouli I   +5 more
europepmc   +1 more source

The miR171a‐TaSCL6‐1 Module Acts Downstream of miR164‐Targeted TaNAC21/22 to Regulate Leaf Rust Resistance in Wheat

open access: yesPlant Biotechnology Journal, Volume 24, Issue 6, Page 3723-3738, June 2026.
ABSTRACT Wheat leaf rust, caused by Puccinia triticina, poses a significant threat to global wheat production. MicroRNAs (miRNAs) are critical regulators of plant growth, development and stress responses; however, their role in wheat resistance to leaf rust remains poorly understood.
Mengjiao Guo   +12 more
wiley   +1 more source

AhBWR15, A Novel RLK Gene, Confers Resistance to Ralstonia solanacearum in Peanut

open access: yesPlant Biotechnology Journal, Volume 24, Issue 6, Page 3861-3875, June 2026.
ABSTRACT Bacterial wilt (BW), a severe soil‐borne disease caused by Ralstonia solanacearum, significantly impedes global peanut production. Despite its impact, the mechanisms underlying BW resistance in peanut remain unclear. Herein, we selected the highly resistant variety Nongdahua108 (H108) and the susceptible variety Nongdahua107 (H107) to develop ...
Zenghui Cao   +16 more
wiley   +1 more source

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