[HTML][HTML] Basic helix-loop-helix transcription factors: Regulators for plant growth development and abiotic stress responses

ZF Zuo, HY Lee, HG Kang - International journal of molecular sciences, 2023 - mdpi.com
Plant basic helix-loop-helix (bHLH) transcription factors are involved in many physiological
processes, and they play important roles in the abiotic stress responses. The literature …

Chromosome-scale genome sequence of Suaeda glauca sheds light on salt stress tolerance in halophytes

Y Cheng, J Sun, M Jiang, Z Luo, Y Wang… - Horticulture …, 2023 - academic.oup.com
Soil salinity is a growing concern for global crop production and the sustainable
development of humanity. Therefore, it is crucial to comprehend salt tolerance mechanisms …

Toxic effects of nanoplastics on biological nitrogen removal in constructed wetlands: Evidence from iron utilization and metabolism

X Zhao, M Guo, Y Wang, M Jin, N Hou, H Wu - Water Research, 2024 - Elsevier
Nanoplastics (NPs) in wastewaters may present a potential threat to biological nitrogen
removal in constructed wetlands (CWs). Iron ions are pivotal in microbially mediated …

[HTML][HTML] Integrated Transcriptomic and Metabolomic Analyses Uncover the Differential Mechanism in Saline–Alkaline Tolerance between Indica and Japonica Rice …

J Wang, K Hu, J Wang, Z Gong, S Li, X Deng… - International Journal of …, 2023 - mdpi.com
Saline–alkaline stress is one of the major damages that severely affects rice (Oryza sativa
L.) growth and grain yield; however, the mechanism of the tolerance remains largely …

Functions of Basic Helix–Loop–Helix (bHLH) Proteins in the Regulation of Plant Responses to Cold, Drought, Salt, and Iron Deficiency: A Comprehensive Review

P Lei, Y Jiang, Y Zhao, M Jiang, X Ji, L Ma… - Journal of Agricultural …, 2024 - ACS Publications
Abiotic stresses including cold, drought, salt, and iron deficiency severely impair plant
development, crop productivity, and geographic distribution. Several bodies of research …

Identification and functional verification of salt tolerance hub genes in Salix matsudana based on QTL and transcriptome analysis

Q Huang, X Hua, Q Zhang, W Pan, Y Wang… - Environmental and …, 2023 - Elsevier
Salt tolerance hub genes play a vital role in the response to salt stress. Exploring the salt
tolerance hub genes of Salix matsudana (Koidz.), an allotetraploid willow with certain salt …

RcbHLH59-RcPRs module enhances salinity stress tolerance by balancing Na+/K+ through callose deposition in rose (Rosa chinensis)

L Su, Y Zhang, S Yu, L Geng, S Lin… - Horticulture …, 2023 - academic.oup.com
Basic helix–loop–helix (bHLH) proteins play pivotal roles in plant growth, development, and
stress responses. However, the molecular and functional properties of bHLHs have not been …

[HTML][HTML] Characterization and transformation of the CabHLH18 gene from hot pepper to enhance waterlogging tolerance

H Tian, G Fan, X Xiong, H Wang, S Zhang… - Frontiers in Plant …, 2024 - frontiersin.org
Basic helix–loop–helix (bHLH) proteins are important in abiotic stress control. Here, a
specific bHLH transcription factor gene, CabHLH18, from a strong waterlogging-tolerant …

OsFAR1 is involved in primary fatty alcohol biosynthesis and promotes drought tolerance in rice

L Guan, D Xia, N Hu, H Zhang, H Wu, Q Jiang, X Li… - Planta, 2023 - Springer
Main conclusion OsFAR1 encodes a fatty acyl-CoA reductase involved in biosynthesis of
primary alcohols and plays an important role in drought stress response in rice. Abstract …

Bp-miR408a participates in osmotic and salt stress responses by regulating BpBCP1 in Betula platyphylla

Z Liu, R Xu, Y Fan, W Dong, Y Han, Q Xie, J Li… - Tree …, 2024 - academic.oup.com
The microRNAs, which are small RNAs of 18–25 nt in length, act as key regulatory factors in
posttranscriptional gene expression during plant growth and development. However, little is …