The opening and closing of stomata are controlled by the integration of environmental and endogenous signals. Here, we show the effects of combining elevated atmospheric carbon dioxide concentration ( ; 600 μmol mol) and warming (+2°C) on stomatal properties and their consequence to plant function in a Vogel (C) tropical pasture. The treatment alone reduced stomatal density, stomatal index, and stomatal conductance ( ), resulting in reduced transpiration, increased leaf temperature, and leading to maintenance of soil moisture during the growing season. Increased CO concentration inside leaves stimulated photosynthesis, starch content levels, water use efficiency, and PSII photochemistry. Under warming, plants developed leaves with smaller stomata on both leaf surfaces; however, we did not see effects of warming on stomatal conductance, transpiration, or leaf water status. Warming alone enhanced PSII photochemistry and photosynthesis, and likely starch exports from chloroplasts. Under the combination of warming and , leaf temperature was higher than that of leaves from the warming or treatments. Thus, warming counterbalanced the effects of CO on transpiration and soil water content but not on stomatal functioning, which was independent of temperature treatment. Under warming, and in combination with , leaves also produced more carotenoids and a more efficient heat and fluorescence dissipation. Our combined results suggest that control on stomatal opening under was not changed by a warmer environment; however, their combination significantly improved whole-plant functioning.
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http://dx.doi.org/10.3389/fpls.2019.00609 | DOI Listing |
J Plast Reconstr Aesthet Surg
November 2024
McMaster University, Department of Surgery, Division of Plastic Surgery, Hamilton, ON, Canada; McMaster University, Department of Health Research Methods, Evidence and Impact (HEI), Hamilton, ON, Canada. Electronic address:
Background: In effort to improve post-operative outcomes, enhanced recovery after surgery (ERAS) protocols have gained popularity. The objective of this systematic review was to assess the reporting and methodological quality of plastic surgery ERAS studies.
Methods: All plastic surgery ERAS implementation studies, published between January 1, 2020, to November 20, 2023, were included.
Water Res
December 2024
State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, China. Electronic address:
Estuarine and coastal environments have experienced dissolved oxygen (DO hereafter) depression and hypoxia due to increasingly intensified anthropogenic eutrophication and climate warming. This review compared diverse systems in Chinese coastal waters that experience DO depletion or hypoxia, aiming to identify essential aspects in advancing the abilities in comprehensively understanding DO dynamics across systems that span wide ranges of physical and biogeochemical environments. The coastal DO depression and relevant ecological consequences around the world are generally overviewed.
View Article and Find Full Text PDFMar Environ Res
December 2024
Pharmacognosy Department, College of Pharmacy, Cairo University, Kasr El-Aini St., Cairo, P.B, 11562, Egypt. Electronic address:
Although the symbiotic partnership between corals and algal endosymbionts has been extensively explored, interactions between corals, their algal endosymbionts and microbial associates are still less understood. Screening the response of natural microbial consortiums inside corals can aid in exploiting them as markers for dysbiosis interactions inside the coral holobiont. The coral microbiome includes archaea, bacteria, fungi, and viruses hypothesized to play a pivotal vital role in coral health and tolerance to heat stress condition via different physiological, biochemical, and molecular mechanisms.
View Article and Find Full Text PDFMar Pollut Bull
December 2024
Instituto do Mar, Universidade Federal de São Paulo (IMar-Unifesp), Santos, SP, Brazil. Electronic address:
This study aimed to assess the interactive effects of CO-driven acidification, temperature rise, and PAHs toxicity on meiobenthic communities. Laboratory microcosms were established in a full factorial experimental design, manipulating temperature (25 °C and 27 °C), pH (8.1 and 7.
View Article and Find Full Text PDFBr J Soc Psychol
January 2025
Department of Psychology, University of Hong Kong, Hong Kong SAR, China.
Previous research on the link between temperature and prosociality has produced mixed findings. A recent meta-analysis focusing on laboratory-based research concluded that the effect was null, a conclusion that was subject to low ecological validity. This paper complements the discussion by investigating the link between ambient temperature and three indicators of real-life prosociality in 164 regions over 14 years.
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