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                  <mods:namePart>Fenech-Torres, Mario</mods:namePart>
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                  <mods:namePart>Amaya, Iraida</mods:namePart>
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                  <mods:namePart>Valpuesta-Fernández, Victoriano</mods:namePart>
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                  <mods:namePart>Botella, Miguel Angel</mods:namePart>
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               <mods:identifier type="citation">Fenech M, Amaya I, Valpuesta V and Botella MA (2019) Vitamin C Content in Fruits: Biosynthesis and Regulation. Front. Plant Sci. 9:2006. doi: 10.3389/fpls.2018.02006</mods:identifier>
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               <mods:abstract>Throughout evolution, a number of animals including humans have lost the ability to&#xd;
synthesize ascorbic acid (ascorbate, vitamin C), an essential molecule in the physiology&#xd;
of animals and plants. In addition to its main role as an antioxidant and cofactor in redox&#xd;
reactions, recent reports have shown an important role of ascorbate in the activation of&#xd;
epigenetic mechanisms controlling cell differentiation, dysregulation of which can lead&#xd;
to the development of certain types of cancer. Although fruits and vegetables constitute&#xd;
the main source of ascorbate in the human diet, rising its content has not been a&#xd;
major breeding goal, despite the large inter- and intraspecific variation in ascorbate&#xd;
content in fruit crops. Nowadays, there is an increasing interest to boost ascorbate&#xd;
content, not only to improve fruit quality but also to generate crops with elevated&#xd;
stress tolerance. Several attempts to increase ascorbate in fruits have achieved fairly&#xd;
good results but, in some cases, detrimental effects in fruit development also occur,&#xd;
likely due to the interaction between the biosynthesis of ascorbate and components&#xd;
of the cell wall. Plants synthesize ascorbate de novo mainly through the Smirnoff-&#xd;
Wheeler pathway, the dominant pathway in photosynthetic tissues. Two intermediates&#xd;
of the Smirnoff-Wheeler pathway, GDP-D-mannose and GDP-L-galactose, are also&#xd;
precursors of the non-cellulosic components of the plant cell wall. Therefore, a better&#xd;
understanding of ascorbate biosynthesis and regulation is essential for generation of&#xd;
improved fruits without developmental side effects. This is likely to involve a yet unknown&#xd;
tight regulation enabling plant growth and development, without impairing the cell redox&#xd;
state modulated by ascorbate pool. In certain fruits and developmental conditions, an&#xd;
alternative pathway from D-galacturonate might be also relevant.</mods:abstract>
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               <mods:subject>
                  <mods:topic>Vitamina C</mods:topic>
               </mods:subject>
               <mods:titleInfo>
                  <mods:title>Vitamin C content in fruits: Biosynthesis and regulation</mods:title>
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