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  1. Assessing the High Temperature Effects on Stomatal Production

    The production of stomata, the epidermal pores of plants, is influenced by diverse environmental signals including high temperature. To assess its...
    Rini Rahiman, On Sun Lau in Thermomorphogenesis
    Protocol 2024
  2. Ecological implications of stomatal density and stomatal index in the adult stage of Mimosa L. (Leguminosae, Caesalpinioideae)

    Differences in stomatal density (SD) and stomatal index (SI) are associated with the conditions of the environment in which they are distributed. Mimosa...

    Manuel Alberto Ayala-Ramos, Susana Adriana Montaño-Arias, ... Rosaura Grether in Protoplasma
    Article 29 November 2023
  3. The slope of assimilation rate against stomatal conductance should not be used as a measure of water use efficiency or stomatal control over assimilation

    Quantifying water use efficiency, and the impact of stomata on CO 2 uptake are pivotal in physiology and efforts to improve crop yields. Although...

    Chandra Bellasio in Photosynthesis Research
    Article Open access 30 October 2023
  4. Stomatal area estimation based on stomatal length and width of four Magnoliaceae species: even “kidney”-shaped stomata are not elliptical

    Key message

    Stomatal area is proportional to the product of stomatal length and width with a proportionality coefficient exceeding π/4 (indicating a...

    Liuyue Zhang, Karl J. Niklas, ... Peijian Shi in Trees
    Article 20 June 2023
  5. Regulation of stomatal development by epidermal, subepidermal and long-distance signals

    Plant leaves consist of three layers, including epidermis, mesophyll and vascular tissues. Their development is meticulously orchestrated. Stomata...

    Liang Chen in Plant Molecular Biology
    Article 28 June 2024
  6. Intrinsic Signaling Pathways and key Regulatory Factors of Stomatal Development

    Stomata are small pores on the surface of plant leaves that play a critical role in regulating gas exchange and water loss. The development of...

    Qingsong Jiao, Hongbao Bai, ... Xueyun Hu in Journal of Plant Biology
    Article 29 April 2024
  7. Arabidopsis COP1 guides stomatal response in guard cells through pH regulation

    Plants rely on precise regulation of their stomatal pores to effectively carry out photosynthesis while managing water status. The Arabidopsis ...

    Seoyeon Cha, Wang Ki Min, Hak Soo Seo in Communications Biology
    Article Open access 05 February 2024
  8. Rapid non-destructive method to phenotype stomatal traits

    Background

    Stomata are tiny pores on the leaf surface that are central to gas exchange. Stomatal number, size and aperture are key determinants of...

    Phetdalaphone Pathoumthong, Zhen Zhang, ... Abdeljalil El Habti in Plant Methods
    Article Open access 31 March 2023
  9. Woody species grown under sun and shade present similar stomatal speed

    Stomata are small epidermal pores responsible for the strict control of the amount of CO 2 that diffuses into the leaves while controlling the amount...

    Rafael S. Freitas, Leonardo A. Oliveira, ... Amanda A. Cardoso in Theoretical and Experimental Plant Physiology
    Article 24 July 2023
  10. New dimension in leaf stomatal behavior analysis: a robust method with machine learning approach

    Stomata are specialized pores that play a vital role in gas exchange and photosynthesis. Microscopic images are often used to assess stomatal...

    Ki-Bon Ku, Anh Tuan Le, ... Yong Suk Chung in Plant Biotechnology Reports
    Article 09 May 2024
  11. ZmMKK9–ZmMPK20–ZmRIN2 cascade boosts plant heat tolerance by regulating stomatal response

    Key message

    Recent research has unveiled that the ZmMKK9–ZmMPK20–ZmRIN2 cascade plays a role in suppressing stomatal opening induced by high...

    Vijay Gahlaut in Plant Cell Reports
    Article 23 January 2024
  12. Soil Hydraulic Constraints on Stomatal Regulation of Plant Gas Exchange

    Terrestrial water fluxes are dominated by transpiration, with stomata exerting an important control by regulating transpirational water loss....
    Fabian J. P. Wankmüller, Andrea Carminati in Progress in Botany Vol. 84
    Chapter 2023
  13. Taxonomic implications of normal and abnormal stomatal complexes in Indigofera L. (Indigofereae, Faboideae, Fabaceae)

    This study is the first to report the foliar and stem epidermal micro-morphology of 13 taxa of Indigofera L. (Fabaceae) using light (LM) and scanning...

    Mohamed O. Badry, Ahmed K. Osman, ... Iman H. Nour in Protoplasma
    Article Open access 19 April 2024
  14. Microtubule Reorganization During ABA-Induced Stomatal Closure in Arabidopsis

    Plants must cope with diverse environmental stresses during growth and development, among which drought is one of the most concerning global threats....
    Liru Dou, **angfeng Wang, Tonglin Mao in The Plant Cytoskeleton
    Protocol 2023
  15. Uncovering molecular mechanisms involved in microbial volatile compounds-induced stomatal closure in Arabidopsis thaliana

    Microbial volatile compounds (mVCs) may cause stomatal closure to limit pathogen invasion as part of plant innate immune response. However, the...

    Tu-Trinh Thi Truong, Chi-Chou Chiu, ... Hao-Jen Huang in Plant Molecular Biology
    Article 20 November 2023
  16. Automated estimation of stomatal number and aperture in haskap (Lonicera caerulea L.)

    Main conclusion

    This study developed the reliable Mask R-CNN model to detect stomata in Lonicera caerulea . The obtained data could be utilized for...

    **angji Meng, Arisa Nakano, Yoichiro Hoshino in Planta
    Article 06 September 2023
  17. H2S activates succinate dehydrogenase through persulfidation to induce stomatal closure in Arabidopsis

    Aims

    Recent studies have demonstrated that hydrogen sulfide (H 2 S), an important gasotransmitter, participates in stomatal closure and is associated...

    Jiao Zhang, Li** Zhang, ... Zhu** ** in Plant and Soil
    Article 13 July 2024
  18. SCAB1 coordinates sequential Ca2+ and ABA signals during osmotic stress induced stomatal closure in Arabidopsis

    Hyperosmotic stress caused by drought is a detrimental threat to plant growth and agricultural productivity due to limited water availability....

    Tianren Zhang, Li Bai, Yan Guo in Science China Life Sciences
    Article 18 December 2023
  19. Phylogenetic, Developmental and Functional Aspects of Stomatal Patterning: Lessons from Magnoliids

    The magnoliid clade encompasses 18 extant families arranged in four orders, plus several extinct taxa, including some of the most ancient angiosperm...

    Paula J. Rudall in The Botanical Review
    Article Open access 19 January 2023
  20. Drought stress inhibits stomatal development to improve water use efficiency in cotton

    Stomata play a principal role in adjusting carbon dioxide (CO 2 ) intake and water use for plant adaptation and tolerance to water-restricted...

    Raghvendra Dubey, Bhoopendra K. Pandey, ... Pramod Arvind Shirke in Acta Physiologiae Plantarum
    Article 05 January 2023
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