Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.

Increases in fruit weight of cultivated vegetables and fruits accompanied the domestication of these crops. Here we report on the positional cloning of a quantitative trait locus (QTL) controlling fruit weight in tomato. The derived allele of Cell Size Regulator (CSR-D) increases fruit weight predom...

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Main Authors: Qi Mu, Zejun Huang, Manohar Chakrabarti, Eudald Illa-Berenguer, Xiaoxi Liu, Yanping Wang, Alexis Ramos, Esther van der Knaap
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-08-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC5560543?pdf=render
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spelling doaj-91761f55d1984715bc213d1c93d0e3d12020-11-24T22:20:16ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042017-08-01138e100693010.1371/journal.pgen.1006930Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.Qi MuZejun HuangManohar ChakrabartiEudald Illa-BerenguerXiaoxi LiuYanping WangAlexis RamosEsther van der KnaapIncreases in fruit weight of cultivated vegetables and fruits accompanied the domestication of these crops. Here we report on the positional cloning of a quantitative trait locus (QTL) controlling fruit weight in tomato. The derived allele of Cell Size Regulator (CSR-D) increases fruit weight predominantly through enlargement of the pericarp areas. The expanded pericarp tissues result from increased mesocarp cell size and not from increased number of cell layers. The effect of CSR on fruit weight and cell size is found across different genetic backgrounds implying a consistent impact of the locus on the trait. In fruits, CSR expression is undetectable early in development from floral meristems to the rapid cell proliferation stage after anthesis. Expression is low but detectable in growing fruit tissues and in or around vascular bundles coinciding with the cell enlargement stage of the fruit maturation process. CSR encodes an uncharacterized protein whose clade has expanded in the Solanaceae family. The mutant allele is predicted to encode a shorter protein due to a 1.4 kb deletion resulting in a 194 amino-acid truncation. Co-expression analyses and GO term enrichment analyses suggest association of CSR with cell differentiation in fruit tissues and vascular bundles. The derived allele arose in Solanum lycopersicum var cerasiforme and appears completely fixed in many cultivated tomato's market classes. This finding suggests that the selection of this allele was critical to the full domestication of tomato from its intermediate ancestors.http://europepmc.org/articles/PMC5560543?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Qi Mu
Zejun Huang
Manohar Chakrabarti
Eudald Illa-Berenguer
Xiaoxi Liu
Yanping Wang
Alexis Ramos
Esther van der Knaap
spellingShingle Qi Mu
Zejun Huang
Manohar Chakrabarti
Eudald Illa-Berenguer
Xiaoxi Liu
Yanping Wang
Alexis Ramos
Esther van der Knaap
Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
PLoS Genetics
author_facet Qi Mu
Zejun Huang
Manohar Chakrabarti
Eudald Illa-Berenguer
Xiaoxi Liu
Yanping Wang
Alexis Ramos
Esther van der Knaap
author_sort Qi Mu
title Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
title_short Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
title_full Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
title_fullStr Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
title_full_unstemmed Fruit weight is controlled by Cell Size Regulator encoding a novel protein that is expressed in maturing tomato fruits.
title_sort fruit weight is controlled by cell size regulator encoding a novel protein that is expressed in maturing tomato fruits.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2017-08-01
description Increases in fruit weight of cultivated vegetables and fruits accompanied the domestication of these crops. Here we report on the positional cloning of a quantitative trait locus (QTL) controlling fruit weight in tomato. The derived allele of Cell Size Regulator (CSR-D) increases fruit weight predominantly through enlargement of the pericarp areas. The expanded pericarp tissues result from increased mesocarp cell size and not from increased number of cell layers. The effect of CSR on fruit weight and cell size is found across different genetic backgrounds implying a consistent impact of the locus on the trait. In fruits, CSR expression is undetectable early in development from floral meristems to the rapid cell proliferation stage after anthesis. Expression is low but detectable in growing fruit tissues and in or around vascular bundles coinciding with the cell enlargement stage of the fruit maturation process. CSR encodes an uncharacterized protein whose clade has expanded in the Solanaceae family. The mutant allele is predicted to encode a shorter protein due to a 1.4 kb deletion resulting in a 194 amino-acid truncation. Co-expression analyses and GO term enrichment analyses suggest association of CSR with cell differentiation in fruit tissues and vascular bundles. The derived allele arose in Solanum lycopersicum var cerasiforme and appears completely fixed in many cultivated tomato's market classes. This finding suggests that the selection of this allele was critical to the full domestication of tomato from its intermediate ancestors.
url http://europepmc.org/articles/PMC5560543?pdf=render
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AT zejunhuang fruitweightiscontrolledbycellsizeregulatorencodinganovelproteinthatisexpressedinmaturingtomatofruits
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AT esthervanderknaap fruitweightiscontrolledbycellsizeregulatorencodinganovelproteinthatisexpressedinmaturingtomatofruits
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