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Phospholipase-mediated phosphate recycling during plant leaf senescence
by
Zhang, Ke
, Lu, Shaoping
, Ouyang, Zhewen
, Wang, Xuemin
, Yan, Jiayu
, Fan, Ruyi
, Zhang, Yuting
, Yang, Bao
, Tan, Zengdong
, Zhao, Hu
, Yao, Xuan
, Lu, Yefei
, Guo, Liang
in
Aging
/ Animal Genetics and Genomics
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Bioinformatics
/ Biomedical and Life Sciences
/ Chlorophyll
/ Chloroplasts
/ Cluster analysis
/ Crop yield
/ Efficiency
/ Evolutionary Biology
/ Fertilizers
/ Gene Expression Regulation, Plant
/ genome
/ growth and development
/ Human Genetics
/ Hydrolysis
/ Leaf senescence
/ Leaves
/ Life Sciences
/ Lipids
/ Metabolism
/ Microbial Genetics and Genomics
/ Phosphate recycling
/ phosphates
/ Phosphates - metabolism
/ Phospholipase
/ Phospholipase C
/ Phospholipase D - genetics
/ Phospholipase D - metabolism
/ phospholipases
/ Phospholipases - metabolism
/ Phospholipids
/ Phospholipids - metabolism
/ Phosphorus
/ Phosphorus - metabolism
/ Phosphorus inorganic
/ Phosphorus use efficiency
/ Plant Genetics and Genomics
/ Plant growth
/ Plant Leaves - metabolism
/ Plant Senescence
/ Recycling
/ Senescence
2024
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Phospholipase-mediated phosphate recycling during plant leaf senescence
by
Zhang, Ke
, Lu, Shaoping
, Ouyang, Zhewen
, Wang, Xuemin
, Yan, Jiayu
, Fan, Ruyi
, Zhang, Yuting
, Yang, Bao
, Tan, Zengdong
, Zhao, Hu
, Yao, Xuan
, Lu, Yefei
, Guo, Liang
in
Aging
/ Animal Genetics and Genomics
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Bioinformatics
/ Biomedical and Life Sciences
/ Chlorophyll
/ Chloroplasts
/ Cluster analysis
/ Crop yield
/ Efficiency
/ Evolutionary Biology
/ Fertilizers
/ Gene Expression Regulation, Plant
/ genome
/ growth and development
/ Human Genetics
/ Hydrolysis
/ Leaf senescence
/ Leaves
/ Life Sciences
/ Lipids
/ Metabolism
/ Microbial Genetics and Genomics
/ Phosphate recycling
/ phosphates
/ Phosphates - metabolism
/ Phospholipase
/ Phospholipase C
/ Phospholipase D - genetics
/ Phospholipase D - metabolism
/ phospholipases
/ Phospholipases - metabolism
/ Phospholipids
/ Phospholipids - metabolism
/ Phosphorus
/ Phosphorus - metabolism
/ Phosphorus inorganic
/ Phosphorus use efficiency
/ Plant Genetics and Genomics
/ Plant growth
/ Plant Leaves - metabolism
/ Plant Senescence
/ Recycling
/ Senescence
2024
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Phospholipase-mediated phosphate recycling during plant leaf senescence
by
Zhang, Ke
, Lu, Shaoping
, Ouyang, Zhewen
, Wang, Xuemin
, Yan, Jiayu
, Fan, Ruyi
, Zhang, Yuting
, Yang, Bao
, Tan, Zengdong
, Zhao, Hu
, Yao, Xuan
, Lu, Yefei
, Guo, Liang
in
Aging
/ Animal Genetics and Genomics
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Arabidopsis Proteins - genetics
/ Arabidopsis Proteins - metabolism
/ Bioinformatics
/ Biomedical and Life Sciences
/ Chlorophyll
/ Chloroplasts
/ Cluster analysis
/ Crop yield
/ Efficiency
/ Evolutionary Biology
/ Fertilizers
/ Gene Expression Regulation, Plant
/ genome
/ growth and development
/ Human Genetics
/ Hydrolysis
/ Leaf senescence
/ Leaves
/ Life Sciences
/ Lipids
/ Metabolism
/ Microbial Genetics and Genomics
/ Phosphate recycling
/ phosphates
/ Phosphates - metabolism
/ Phospholipase
/ Phospholipase C
/ Phospholipase D - genetics
/ Phospholipase D - metabolism
/ phospholipases
/ Phospholipases - metabolism
/ Phospholipids
/ Phospholipids - metabolism
/ Phosphorus
/ Phosphorus - metabolism
/ Phosphorus inorganic
/ Phosphorus use efficiency
/ Plant Genetics and Genomics
/ Plant growth
/ Plant Leaves - metabolism
/ Plant Senescence
/ Recycling
/ Senescence
2024
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Phospholipase-mediated phosphate recycling during plant leaf senescence
Journal Article
Phospholipase-mediated phosphate recycling during plant leaf senescence
2024
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Overview
Background
Phosphorus is a macronutrient necessary for plant growth and development and its availability and efficient use affect crop yields. Leaves are the largest tissue that uses phosphorus in plants, and membrane phospholipids are the main source of cellular phosphorus usage.
Results
Here we identify a key process for plant cellular phosphorus recycling mediated by membrane phospholipid hydrolysis during leaf senescence. Our results indicate that over 90% of lipid phosphorus, accounting for more than one-third of total cellular phosphorus, is recycled from senescent leaves before falling off the plants.
Nonspecific phospholipase C4
(
NPC4
) and
phospholipase Dζ2
(
PLDζ2
) are highly induced during leaf senescence, and knockouts of
PLDζ2
and
NPC4
decrease the loss of membrane phospholipids and delay leaf senescence. Conversely, overexpression of
PLDζ2
and
NPC4
accelerates the loss of phospholipids and leaf senescence, promoting phosphorus remobilization from senescent leaves to young tissues and plant growth. We also show that this phosphorus recycling process in senescent leaves mediated by membrane phospholipid hydrolysis is conserved in plants.
Conclusions
These results indicate that PLDζ2- and NPC4-mediated membrane phospholipid hydrolysis promotes phosphorus remobilization from senescent leaves to growing tissues and that the phospholipid hydrolysis-mediated phosphorus recycling improves phosphorus use efficiency in plants.
Publisher
BioMed Central,Springer Nature B.V,BMC
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