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Title |
How elevated CO2 affects our nutrition in rice, and how we can deal with it
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Creator |
Ishimaru Ken
Hirotsu Naoki
Nagasaka Seiji
Miyakoshi Yuichi
Ota Masako
Tokida Takeshi
Sakai Hidemitsu
Usui Yasuhiro
Ono Keisuke
Kobayashi Kazuhiko
Nakano Hiroshi
Yoshinaga Satoshi
Kashiwagi Takayuki
Magoshi Jun
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Source Title |
PLOS ONE
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Volume | 14 |
Issue | 3 |
Start Page | e0212840 |
Journal Identifire |
ISSN 1932-6203
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Descriptions |
Increased concentrations of atmospheric CO2 are predicted to reduce the content of essential elements such as protein, zinc, and iron in C3 grains and legumes, threatening the nutrition of billions of people in the next 50 years. However, this prediction has mostly been limited to grain crops, and moreover, we have little information about either the underlying mechanism or an effective intervention to mitigate these reductions. Here, we present a broader picture of the reductions in elemental content among crops grown under elevated CO2 concentration. By using a new approach, flow analysis of elements, we show that lower absorption and/or translocation to grains is a key factor underlying such elemental changes. On the basis of these findings, we propose two effective interventions—namely, growing C4 instead of C3 crops, and genetic improvements—to minimize the elemental changes in crops, and thereby avoid an impairment of human nutrition under conditions of elevated CO2.
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Subjects |
Rice, CO2 concentration, nutrition, elemental content
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Language |
eng
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Resource Type | journal article |
Publisher |
San Francisco CA: Public Library of Science
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Date of Issued | 2019-05-05 |
Publish Type | Version of Record |
Access Rights | open access |
Relation |
[DOI] 10.1371/journal.pone.0212840
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