Climate and water availability greatly affect each season's grape yield and quality. Using models to accurately predict environment impacts on fruit productivity and quality is a huge challenge. We calibrated and validated the functional-structural model, GrapevineXL, with a data set including grapevine seasonal midday stem water potential (Ψ), berry dry weight (DW), fresh weight (FW), and sugar concentration per volume ([Sugar]) for a wine grape cultivar ( cv. Cabernet Franc) in field conditions over 13 years in Bordeaux, France. Our results showed that the model could make a fair prediction of seasonal Ψ and good-to-excellent predictions of berry DW, FW, [Sugar] and leaf gas exchange responses to predawn and midday leaf water potentials under diverse environmental conditions with 14 key parameters. By running virtual experiments to mimic climate change, an advanced veraison (i.e. the onset of ripening) of 14 and 28 days led to significant decreases of berry FW by 2.70% and 3.22%, clear increases of berry [Sugar] by 2.90% and 4.29%, and shortened ripening duration in 8 out of 13 simulated years, respectively. Moreover, the impact of the advanced veraison varied with seasonal patterns of climate and soil water availability. Overall, the results showed that the GrapevineXL model can predict plant water use and berry growth in field conditions and could serve as a valuable tool for designing sustainable vineyard management strategies to cope with climate change.
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http://dx.doi.org/10.1093/hr/uhad071 | DOI Listing |
Nat Commun
December 2024
State Key Laboratory of Plant Diversity and Specialty Crops, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.
Fruit ripening is a highly-orchestrated process that requires the fine-tuning and precise control of gene expression, which is mainly governed by phytohormones, epigenetic modifiers, and transcription factors. How these intrinsic regulators coordinately modulate the ripening remains elusive. Here we report the identification and characterization of FvALKBH10B as an N-methyladenosine (mA) RNA demethylase necessary for the normal ripening of strawberry (Fragaria vesca) fruit.
View Article and Find Full Text PDFOpen Vet J
November 2024
Department of Pharmacology, Faculty of Veterinary Medicine, Universitas Gadjah Mada, Yogyakarta, Indonesia.
Background: Disease prevention in cultivating ranchu goldfish () can be prevented by giving immunostimulants in the food. One immunostimulant can come from herbs such as calabash fruit ( L.).
View Article and Find Full Text PDFOpen Vet J
November 2024
Department of Fisheries and Marine Resources, Collage of Agriculture, Basrah University, Basrah, Iraq.
Background: Pomegranate () fruit rich in bioactive constituents, is used as a feed supplement against bacterial pathogens in aquaculture.
Aim: This study examined the effects of supplementing the diet of the common carp () infected with on growth and some hematological, biochemical, and immunological health indicators.
Methods: Carp was fed for 7 weeks a diet of 30% crude protein and 7% crude fat, supplemented with 0, 0.
Front Microbiol
December 2024
Indian Council of Agricultural Research-National Research Centre for Grapes, Pune, Maharashtra, India.
Introduction: Grapevine ( L.), one of the economically important fruit crops cultivated worldwide, harbours diverse endophytic bacteria (EBs) responsible for managing various fungal diseases. Anthracnose () (Penz.
View Article and Find Full Text PDFBMC Plant Biol
December 2024
College of Advanced Agricultural Sciences, Zhejiang A & F University, Hangzhou, 311300, China.
Background: Monoacylglycerol lipase (MAGL) belongs to the serine hydrolase family; it catalyzes MAG to produce glycerol and free fatty acids (FFAs), which is the final step in triacylglycerol (TAG) hydrolysis. The effects of MAGL on comprehensive lipid metabolism and plant growth and development have not been elucidated, especially in Arachis hypogaea, an important oil crop.
Results: Herein, AhMAGL3b encoding a protein with both hydrolase and acyltransferase regions, a member of MAGL gene family, was cloned and overexpressed in Arabidopsis thaliana.
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