Acclimation to variable CO was studied in floating leaves of the freshwater monocot grown in either low or high CO. The most striking anatomical variations responding to high CO included the enlarged upper epidermal cells and the decreased area of epidermal chloroplasts. Stomata that distributed on the upper surface, and the stomatic chamber area, showed no significant response to high CO. pH-drift experiments indicated that floating leaves of were able to use bicarbonate regardless of CO concentrations. Photosynthetic enzyme activities and patterns of organic acids fluctuation confirmed that floating leaves of can operate CAM only at low CO, and perform C-like metabolism at both high and low CO. Overall, the present results imply that the floating leaves of does not just rely on the atmospheric CO for its inorganic carbon, but is also dependent on CO and bicarbonate in the water. By showing these effects of CO variation, we highlight the need for further experimental studies on the regulatory mechanisms in floating leaves, that prevent futile cycling among the three CO concentrating mechanisms (bicarbonate use, C, and CAM metabolism) and the strategy for exploiting atmospheric CO, as well as studies on the detailed biochemical pathway for C and CAM metabolism in this species.
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http://dx.doi.org/10.3389/fpls.2020.01261 | DOI Listing |
Sci Rep
January 2025
Institute of Agricultural Information Technology, Henan Academy of Agricultural Sciences, Zhengzhou, 450002, China.
Identification and diagnosis of tobacco diseases are prerequisites for the scientific prevention and control of these ailments. To address the limitations of traditional methods, such as weak generalization and sensitivity to noise in segmenting tobacco leaf lesions, this study focused on four tobacco diseases: angular leaf spot, brown spot, wildfire disease, and frog eye disease. Building upon the Unet architecture, we developed the Multi-scale Residual Dilated Segmentation Model (MD-Unet) by enhancing the feature extraction module and integrating attention mechanisms.
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January 2025
Division of Medical Statistics and Bioinformatics, Department of Medical Research, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung City, Taiwan.
Background: Taiwan implemented global hospital budgeting with a floating-point value, which created a prisoner's dilemma. As a result, hospitals increased service volume, which caused the floating-point value to drop to less than one New Taiwan Dollar (NTD). The recent increase in the number of hospital beds and the call to enhance the floating-point value to one NTD raise concerns about the potential for increased financial burden without adding value to patient care if hospitals expand their bed capacity for volume-based competition.
View Article and Find Full Text PDFFront Plant Sci
December 2024
Department of Agriculture and Forest Sciences, University of Tuscia, Viterbo, Italy.
Introduction: Considering that plant biostimulants can be sprayed multiple times on leafy crops even just before harvest, it is relevant to know the impact of biostimulant applications on population dynamics of lettuce leaves to ensure food safety. Two trials were carried out to investigate whether the applications of a seaweed extract and a vegetal-derived protein hydrolysate (PH) could affect the growth in shake flasks (Exp. 1) and plant growth and survival of artificially inoculated on the leaf surface of lettuce grown in a floating system (Exp.
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December 2024
Faculty of Information Engineering and Automation, Kunming University of Science and Technology, Kunming, 650504, China.
Potato late blight is a common disease affecting crops worldwide. To help detect this disease in complex environments, an improved YOLOv5 algorithm is proposed. First, ShuffleNetV2 is used as the backbone network to reduce the number of parameters and computational load, making the model more lightweight.
View Article and Find Full Text PDFCureus
November 2024
General Surgery, Centro Hospitalar Barreiro Montijo, Barreiro, PRT.
An enteroatmospheric fistula (EAF) is one of the most feared complications of damage control laparotomy. Its management is highly challenging, often requiring multiple surgeries and prolonged hospitalization. It is a serious condition, and despite significant improvements in mortality rates due to advancements in intensive care, the rate remains substantial.
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