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Short-Term Magnesium Deficiency Triggers Nutrient Retranslocation in Arabidopsis thaliana.


ABSTRACT: Magnesium (Mg) is essential for many biological processes in plant cells, and its deficiency causes yield reduction in crop systems. Low Mg status reportedly affects photosynthesis, sucrose partitioning and biomass allocation. However, earlier physiological responses to Mg deficiency are scarcely described. Here, we report that Mg deficiency in Arabidopsis thaliana first modified the mineral profile in mature leaves within 1 or 2 days, then affected sucrose partitioning after 4 days, and net photosynthesis and biomass production after 6 days. The short-term Mg deficiency reduced the contents of phosphorus (P), potassium, manganese, zinc and molybdenum in mature but not in expanding (young) leaves. While P content decreased in mature leaves, P transport from roots to mature leaves was not affected, indicating that Mg deficiency triggered retranslocation of the mineral nutrients from mature leaves. A global transcriptome analysis revealed that Mg deficiency triggered the expression of genes involved in defence response in young leaves.

SUBMITTER: Ogura T 

PROVIDER: S-EPMC7287120 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Short-Term Magnesium Deficiency Triggers Nutrient Retranslocation in <i>Arabidopsis thaliana</i>.

Ogura Takaaki T   Kobayashi Natsuko I NI   Hermans Christian C   Ichihashi Yasunori Y   Shibata Arisa A   Shirasu Ken K   Aoki Naohiro N   Sugita Ryohei R   Ogawa Takahiro T   Suzuki Hisashi H   Iwata Ren R   Nakanishi Tomoko M TM   Tanoi Keitaro K  

Frontiers in plant science 20200604


Magnesium (Mg) is essential for many biological processes in plant cells, and its deficiency causes yield reduction in crop systems. Low Mg status reportedly affects photosynthesis, sucrose partitioning and biomass allocation. However, earlier physiological responses to Mg deficiency are scarcely described. Here, we report that Mg deficiency in <i>Arabidopsis thaliana</i> first modified the mineral profile in mature leaves within 1 or 2 days, then affected sucrose partitioning after 4 days, and  ...[more]

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