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Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations

The improvement of leaf net photosynthetic rate (A(n)) is a major challenge in enhancing crop productivity. However, the genetic control of A(n) among natural genetic accessions is still poorly understood. The high-yielding indica cultivar Takanari has the highest A(n) of all rice cultivars, 20–30%...

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Autores principales: Adachi, Shunsuke, Yamamoto, Toshio, Nakae, Toru, Yamashita, Masahiro, Uchida, Masaki, Karimata, Ryoji, Ichihara, Naoto, Soda, Kazuya, Ochiai, Takayuki, Ao, Risako, Otsuka, Chikako, Nakano, Ruri, Takai, Toshiyuki, Ikka, Takashi, Kondo, Katsuhiko, Ueda, Tadamasa, Ookawa, Taiichiro, Hirasawa, Tadashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6793464/
https://www.ncbi.nlm.nih.gov/pubmed/31257428
http://dx.doi.org/10.1093/jxb/erz303
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author Adachi, Shunsuke
Yamamoto, Toshio
Nakae, Toru
Yamashita, Masahiro
Uchida, Masaki
Karimata, Ryoji
Ichihara, Naoto
Soda, Kazuya
Ochiai, Takayuki
Ao, Risako
Otsuka, Chikako
Nakano, Ruri
Takai, Toshiyuki
Ikka, Takashi
Kondo, Katsuhiko
Ueda, Tadamasa
Ookawa, Taiichiro
Hirasawa, Tadashi
author_facet Adachi, Shunsuke
Yamamoto, Toshio
Nakae, Toru
Yamashita, Masahiro
Uchida, Masaki
Karimata, Ryoji
Ichihara, Naoto
Soda, Kazuya
Ochiai, Takayuki
Ao, Risako
Otsuka, Chikako
Nakano, Ruri
Takai, Toshiyuki
Ikka, Takashi
Kondo, Katsuhiko
Ueda, Tadamasa
Ookawa, Taiichiro
Hirasawa, Tadashi
author_sort Adachi, Shunsuke
collection PubMed
description The improvement of leaf net photosynthetic rate (A(n)) is a major challenge in enhancing crop productivity. However, the genetic control of A(n) among natural genetic accessions is still poorly understood. The high-yielding indica cultivar Takanari has the highest A(n) of all rice cultivars, 20–30% higher than that of the high-quality japonica cultivar Koshihikari. By using reciprocal backcross inbred lines and chromosome segment substitution lines derived from a cross between Takanari and Koshihikari, we identified three quantitative trait loci (QTLs) where the Takanari alleles enhanced A(n) in plants with a Koshihikari genetic background and five QTLs where the Koshihikari alleles enhanced A(n) in plants with a Takanari genetic background. Two QTLs were expressed in plants with both backgrounds (type I QTL). The expression of other QTLs depended strongly on genetic background (type II QTL). These beneficial alleles increased stomatal conductance, the initial slope of A(n) versus intercellular CO(2) concentration, or A(n) at CO(2) saturation. Pyramiding of these alleles consistently increased A(n). Some alleles positively affected biomass production and grain yield. These alleles associated with photosynthesis and yield can be a valuable tool in rice breeding programs via DNA marker-assisted selection.
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spelling pubmed-67934642019-10-18 Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations Adachi, Shunsuke Yamamoto, Toshio Nakae, Toru Yamashita, Masahiro Uchida, Masaki Karimata, Ryoji Ichihara, Naoto Soda, Kazuya Ochiai, Takayuki Ao, Risako Otsuka, Chikako Nakano, Ruri Takai, Toshiyuki Ikka, Takashi Kondo, Katsuhiko Ueda, Tadamasa Ookawa, Taiichiro Hirasawa, Tadashi J Exp Bot Research Papers The improvement of leaf net photosynthetic rate (A(n)) is a major challenge in enhancing crop productivity. However, the genetic control of A(n) among natural genetic accessions is still poorly understood. The high-yielding indica cultivar Takanari has the highest A(n) of all rice cultivars, 20–30% higher than that of the high-quality japonica cultivar Koshihikari. By using reciprocal backcross inbred lines and chromosome segment substitution lines derived from a cross between Takanari and Koshihikari, we identified three quantitative trait loci (QTLs) where the Takanari alleles enhanced A(n) in plants with a Koshihikari genetic background and five QTLs where the Koshihikari alleles enhanced A(n) in plants with a Takanari genetic background. Two QTLs were expressed in plants with both backgrounds (type I QTL). The expression of other QTLs depended strongly on genetic background (type II QTL). These beneficial alleles increased stomatal conductance, the initial slope of A(n) versus intercellular CO(2) concentration, or A(n) at CO(2) saturation. Pyramiding of these alleles consistently increased A(n). Some alleles positively affected biomass production and grain yield. These alleles associated with photosynthesis and yield can be a valuable tool in rice breeding programs via DNA marker-assisted selection. Oxford University Press 2019-10-01 2019-06-28 /pmc/articles/PMC6793464/ /pubmed/31257428 http://dx.doi.org/10.1093/jxb/erz303 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Papers
Adachi, Shunsuke
Yamamoto, Toshio
Nakae, Toru
Yamashita, Masahiro
Uchida, Masaki
Karimata, Ryoji
Ichihara, Naoto
Soda, Kazuya
Ochiai, Takayuki
Ao, Risako
Otsuka, Chikako
Nakano, Ruri
Takai, Toshiyuki
Ikka, Takashi
Kondo, Katsuhiko
Ueda, Tadamasa
Ookawa, Taiichiro
Hirasawa, Tadashi
Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title_full Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title_fullStr Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title_full_unstemmed Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title_short Genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
title_sort genetic architecture of leaf photosynthesis in rice revealed by different types of reciprocal mapping populations
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6793464/
https://www.ncbi.nlm.nih.gov/pubmed/31257428
http://dx.doi.org/10.1093/jxb/erz303
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