[HTML][HTML] The cotton MYB33 gene is a hub gene regulating the trade-off between plant growth and defense in Verticillium dahliae infection

H Guang, G Xiaoyang, W Zhian, W Ye, W Peng… - Journal of Advanced …, 2024 - Elsevier
Introduction Sessile plants engage in trade-offs between growth and defense capacity in
response to fluctuating environmental cues. MYB is an important transcription factor that …

The Mechanism of Transcription Factor Swi6 in Regulating Growth and Pathogenicity of Ceratocystis fimbriata: Insights from Non-Targeted Metabolomics

H Cong, C Li, Y Wang, Y Zhang, D Ma, L Li, J Jiang - Microorganisms, 2023 - mdpi.com
Ceratocystis fimbriata (C. fimbriata) is a notorious pathogenic fungus that causes sweet
potato black rot disease. The APSES transcription factor Swi6 in fungi is located downstream …

The cotton miR171a-SCL6 module mediates plant resistance through regulating GhPR1 expression

G Hu, X Ge, P Wang, A Chen, F Li, J Wu - Plant Physiology and …, 2023 - Elsevier
Plants have developed intricate defense mechanisms in response to fluctuating
environmental cues, including the use of microRNA (miRNA) as post-transcriptional …

Positive roles of the Ca2+ sensors GbCML45 and GbCML50 in improving cotton Verticillium wilt resistance

F Yi, Y Li, A Song, X Shi, S Hu, S Wu… - Molecular Plant …, 2024 - Wiley Online Library
As a universal second messenger, cytosolic calcium (Ca2+) functions in multifaceted
intracellular processes, including growth, development and responses to biotic/abiotic …

GhWRKY55 as a negative regulator of cotton resistance to Verticillium dahliae via lignin biosynthetic and jasmonic acid signaling pathways

X Ma, B Chen, L Yang, R Hao, X Wang, G Hu… - Industrial Crops and …, 2024 - Elsevier
Verticillium wilt, caused by Verticillium dahliae, is a major threat to cotton yield and quality.
While the WRKY gene family has been shown to be involved in plant defense against V …

Unravelling the Functional Role of GthGAPC2 in Cotton's Defense Against Verticillium dahliae through Proteome

MJ Umer, R Batool, M Yang, J Zheng… - Physiologia …, 2024 - Wiley Online Library
Cotton (Gossypium spp.) is an economically important crop, but its productivity is often
hindered by the soil‐borne pathogen Verticillium dahliae. This study aimed to investigate the …

Decoding the guardians of cotton resilience: A comprehensive exploration of the βCA genes and its role in Verticillium dahliae resistance

M Yang, MJ Umer, H Wang, J Han, J Han… - Physiologia …, 2023 - Wiley Online Library
Abstract Plant Carbonic anhydrases (Cas) have been shown to be stress‐responsive
enzymes that may play a role in adapting to adverse conditions. Cotton is a significant …

Genetic Mapping and Characterization of Verticillium Wilt Resistance in a Recombinant Inbred Population of Upland Cotton

IW Wilson, P Moncuquet, Y Yuan, M Soliveres… - International Journal of …, 2024 - mdpi.com
Verticillium wilt (VW) is an important and widespread disease of cotton and once established
is long-lived and difficult to manage. In Australia, the non-defoliating pathotype of Verticillium …

Genome-wide association study reveals novel SNPs and genes in Gossypium hirsutum underlying Aphis gossypii resistance

J Yang, H Zhang, H Chen, Z Sun, H Ke, G Wang… - Theoretical and Applied …, 2023 - Springer
Key message A. gossypii resistance showed great variability in G. hirsutum varieties. One
hundred and seventy-six SNPs associated with A. gossypii resistance were identified using …

A comprehensive assessment of verticillium wilt of potato: Present status and future prospective

KC Shreejana, A Poudel, D Oli, S Ghimire… - International Journal …, 2023 - esciencepress.net
The fungal disease Verticillium wilt is a soil-borne pathogen that is caused by Verticillium
dahliae. This disease affects a wide range of crops and can cause significant yield losses …