Stomatal defense a decade later

M Melotto, L Zhang, PR Oblessuc, SY He - Plant physiology, 2017 - academic.oup.com
Stomatal Defense a Decade Later | Plant Physiology | Oxford Academic Skip to Main Content
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Stomata-mediated interactions between plants, herbivores, and the environment

PA Lin, Y Chen, G Ponce, FE Acevedo, JP Lynch… - Trends in plant …, 2022 - cell.com
Stomata play a central role in plant responses to abiotic and biotic stresses. Existing
knowledge regarding the roles of stomata in plant stress is centered on abiotic stresses and …

[图书][B] The science of grapevines

M Keller - 2020 - books.google.com
The Science of Grapevines, Third Edition reflects the latest insights into cultivar
relationships, vascular transport, hormone action, and stress responses of grapevines …

Responses of forest trees to single and multiple environmental stresses from seedlings to mature plants: past stress history, stress interactions, tolerance and …

Ü Niinemets - Forest Ecology and management, 2010 - Elsevier
Forest trees are exposed to a myriad of single and combined stresses with varying strength
and duration throughout their lifetime, and many of the simultaneous and successive stress …

Thermography to explore plant–environment interactions

JM Costa, OM Grant, MM Chaves - Journal of experimental …, 2013 - academic.oup.com
Stomatal regulation is a key determinant of plant photosynthesis and water relations,
influencing plant survival, adaptation, and growth. Stomata sense the surrounding …

[HTML][HTML] Plasmopara viticola the causal agent of downy mildew of grapevine: From its taxonomy to disease management

K Koledenkova, Q Esmaeel, C Jacquard… - Frontiers in …, 2022 - frontiersin.org
Plasmopara viticola (P. viticola, Berk. & MA Curtis; Berl. & De Toni) causing grapevine
downy mildew is one of the most damaging pathogens to viticulture worldwide. Since its …

Insights into auxin signaling in plant–pathogen interactions

J Fu, S Wang - Frontiers in plant science, 2011 - frontiersin.org
The phytohormone auxin has been known to be a regulator of plant growth and
development ever since its discovery. Recent studies on plant–pathogen interactions …

RIN4 Functions with Plasma Membrane H+-ATPases to Regulate Stomatal Apertures during Pathogen Attack

J Liu, JM Elmore, AT Fuglsang, MG Palmgren… - PLoS …, 2009 - journals.plos.org
Pathogen perception by the plant innate immune system is of central importance to plant
survival and productivity. The Arabidopsis protein RIN4 is a negative regulator of plant …

Multiple roles of the transcription factor AtMYBR1/AtMYB44 in ABA signaling, stress responses, and leaf senescence

MR Jaradat, JA Feurtado, D Huang, Y Lu, AJ Cutler - BMC Plant Biology, 2013 - Springer
Abstract Background The transcription factor At MYBR1 (MYB44) is a member of the MYB
family of transcription factors and is expressed throughout the plant life cycle and especially …

Multifunctional stretchable sensors for continuous monitoring of long-term leaf physiology and microclimate

Y Zhao, S Gao, J Zhu, J Li, H Xu, K Xu, H Cheng… - ACS …, 2019 - ACS Publications
Communication with plants to understand their growth mechanisms and interaction with the
surrounding environment may improve production yield in agriculture and facilitate …