نتایج جستجو برای: optimal stomatal regulation

تعداد نتایج: 914757  

2015
Valérie Cotelle Nathalie Leonhardt

Guard cells are specialized cells located at the leaf surface delimiting pores which control gas exchanges between the plant and the atmosphere. To optimize the CO2 uptake necessary for photosynthesis while minimizing water loss, guard cells integrate environmental signals to adjust stomatal aperture. The size of the stomatal pore is regulated by movements of the guard cells driven by variation...

Journal: :Plant physiology 2016
Maija Sierla Cezary Waszczak Triin Vahisalu Jaakko Kangasjärvi

Guard cells form stomatal pores that optimize photosynthetic carbon dioxide uptake with minimal water loss. Stomatal movements are controlled by complex signaling networks that respond to environmental and endogenous signals. Regulation of stomatal aperture requires coordinated activity of reactive oxygen species (ROS)-generating enzymes, signaling proteins, and downstream executors such as ion...

2018
Nicholas Zoulias Emily L Harrison Stuart A Casson Julie E Gray

Plants have evolved developmental plasticity which allows the up- or down-regulation of photosynthetic and water loss capacities as new leaves emerge. This developmental plasticity enables plants to maximise fitness and to survive under differing environments. Stomata play a pivotal role in this adaptive process. These microscopic pores in the epidermis of leaves control gas exchange between th...

Journal: :Plant physiology 2005
Xin-Qi Gao Chun-Guang Li Peng-Cheng Wei Xin-Yan Zhang Jia Chen Xue-Chen Wang

Stomatal movement is important for plants to exchange gas with environment. The regulation of stomatal movement allows optimizing photosynthesis and transpiration. Changes in vacuolar volume in guard cells are known to participate in this regulation. However, little has been known about the mechanism underlying the regulation of rapid changes in guard cell vacuolar volume. Here, we report that ...

Journal: :Plant physiology 2015
Scott A M McAdam Timothy J Brodribb

Stomatal responses to vapor pressure deficit (VPD) are a principal means by which vascular land plants regulate daytime transpiration. While much work has focused on characterizing and modeling this response, there remains no consensus as to the mechanism that drives it. Explanations range from passive regulation by leaf hydration to biochemical regulation by the phytohormone abscisic acid (ABA...

Journal: :Plant physiology 2017
Hanna Hõrak Hannes Kollist Ebe Merilo

Changing atmospheric CO2 levels, climate, and air humidity affect plant gas exchange that is controlled by stomata, small pores on plant leaves and stems formed by guard cells. Evolution has shaped the morphology and regulatory mechanisms governing stomatal movements to correspond to the needs of various land plant groups over the past 400 million years. Stomata close in response to the plant h...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2014
Jing-Yi Zhang Sheng-Bo He Ling Li Hong-Quan Yang

Plants, as sessile organisms, must coordinate various physiological processes to adapt to ever-changing surrounding environments. Stomata, the epidermal pores facilitating gas and water exchange, play important roles in optimizing photosynthetic efficiency and adaptability. Stomatal development is under the control of an intrinsic program mediated by a secretory peptide gene family--namely, EPI...

Journal: :Plant physiology 2004
Alfonso Mateo Per Mühlenbock Christine Rustérucci Christine Chi-Chen Chang Zbigniew Miszalski Barbara Karpinska Jane E Parker Philip M Mullineaux Stanislaw Karpinski

The lsd1 mutant of Arabidopsis fails to limit the boundaries of hypersensitive cell death response during avirulent pathogen infection and initiates unchecked lesions in long day photoperiod giving rise to the runaway cell death (rcd) phenotype. We link here the initiation and propagation of rcd to the activity of photosystem II, stomatal conductance and ultimately to photorespiratory H(2)O(2)....

2014
Xiaohui Liu Michelle Mak Mohammad Babla Feifei Wang Guang Chen Filip Veljanoski Gang Wang Sergey Shabala Meixue Zhou Zhong-Hua Chen

Soil salinity is an environmental and agricultural problem in many parts of the world. One of the keys to breeding barley for adaptation to salinity lies in a better understanding of the genetic control of stomatal regulation. We have employed a range of physiological (stomata assay, gas exchange, phylogenetic analysis, QTL analysis), and molecular techniques (RT-PCR and qPCR) to investigate st...

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