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Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield

Crop yield is a highly complex quantitative trait. Historically, successful breeding for improved grain yield has led to crop plants with improved source capacity, altered plant architecture, and increased resistance to abiotic and biotic stresses. To date, transgenic approaches towards improving cr...

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Autores principales: Preuss, Sasha B., Meister, Robert, Xu, Qingzhang, Urwin, Carl P., Tripodi, Federico A., Screen, Steven E., Anil, Veena S., Zhu, Shuquan, Morrell, James A., Liu, Grace, Ratcliffe, Oliver J., Reuber, T. Lynne, Khanna, Rajnish, Goldman, Barry S., Bell, Erin, Ziegler, Todd E., McClerren, Amanda L., Ruff, Thomas G., Petracek, Marie E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281879/
https://www.ncbi.nlm.nih.gov/pubmed/22363475
http://dx.doi.org/10.1371/journal.pone.0030717
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author Preuss, Sasha B.
Meister, Robert
Xu, Qingzhang
Urwin, Carl P.
Tripodi, Federico A.
Screen, Steven E.
Anil, Veena S.
Zhu, Shuquan
Morrell, James A.
Liu, Grace
Ratcliffe, Oliver J.
Reuber, T. Lynne
Khanna, Rajnish
Goldman, Barry S.
Bell, Erin
Ziegler, Todd E.
McClerren, Amanda L.
Ruff, Thomas G.
Petracek, Marie E.
author_facet Preuss, Sasha B.
Meister, Robert
Xu, Qingzhang
Urwin, Carl P.
Tripodi, Federico A.
Screen, Steven E.
Anil, Veena S.
Zhu, Shuquan
Morrell, James A.
Liu, Grace
Ratcliffe, Oliver J.
Reuber, T. Lynne
Khanna, Rajnish
Goldman, Barry S.
Bell, Erin
Ziegler, Todd E.
McClerren, Amanda L.
Ruff, Thomas G.
Petracek, Marie E.
author_sort Preuss, Sasha B.
collection PubMed
description Crop yield is a highly complex quantitative trait. Historically, successful breeding for improved grain yield has led to crop plants with improved source capacity, altered plant architecture, and increased resistance to abiotic and biotic stresses. To date, transgenic approaches towards improving crop grain yield have primarily focused on protecting plants from herbicide, insects, or disease. In contrast, we have focused on identifying genes that, when expressed in soybean, improve the intrinsic ability of the plant to yield more. Through the large scale screening of candidate genes in transgenic soybean, we identified an Arabidopsis thaliana B-box domain gene (AtBBX32) that significantly increases soybean grain yield year after year in multiple transgenic events in multi-location field trials. In order to understand the underlying physiological changes that are associated with increased yield in transgenic soybean, we examined phenotypic differences in two AtBBX32-expressing lines and found increases in plant height and node, flower, pod, and seed number. We propose that these phenotypic changes are likely the result of changes in the timing of reproductive development in transgenic soybean that lead to the increased duration of the pod and seed development period. Consistent with the role of BBX32 in A. thaliana in regulating light signaling, we show that the constitutive expression of AtBBX32 in soybean alters the abundance of a subset of gene transcripts in the early morning hours. In particular, AtBBX32 alters transcript levels of the soybean clock genes GmTOC1 and LHY-CCA1-like2 (GmLCL2). We propose that through the expression of AtBBX32 and modulation of the abundance of circadian clock genes during the transition from dark to light, the timing of critical phases of reproductive development are altered. These findings demonstrate a specific role for AtBBX32 in modulating soybean development, and demonstrate the validity of expressing single genes in crops to deliver increased agricultural productivity.
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spelling pubmed-32818792012-02-23 Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield Preuss, Sasha B. Meister, Robert Xu, Qingzhang Urwin, Carl P. Tripodi, Federico A. Screen, Steven E. Anil, Veena S. Zhu, Shuquan Morrell, James A. Liu, Grace Ratcliffe, Oliver J. Reuber, T. Lynne Khanna, Rajnish Goldman, Barry S. Bell, Erin Ziegler, Todd E. McClerren, Amanda L. Ruff, Thomas G. Petracek, Marie E. PLoS One Research Article Crop yield is a highly complex quantitative trait. Historically, successful breeding for improved grain yield has led to crop plants with improved source capacity, altered plant architecture, and increased resistance to abiotic and biotic stresses. To date, transgenic approaches towards improving crop grain yield have primarily focused on protecting plants from herbicide, insects, or disease. In contrast, we have focused on identifying genes that, when expressed in soybean, improve the intrinsic ability of the plant to yield more. Through the large scale screening of candidate genes in transgenic soybean, we identified an Arabidopsis thaliana B-box domain gene (AtBBX32) that significantly increases soybean grain yield year after year in multiple transgenic events in multi-location field trials. In order to understand the underlying physiological changes that are associated with increased yield in transgenic soybean, we examined phenotypic differences in two AtBBX32-expressing lines and found increases in plant height and node, flower, pod, and seed number. We propose that these phenotypic changes are likely the result of changes in the timing of reproductive development in transgenic soybean that lead to the increased duration of the pod and seed development period. Consistent with the role of BBX32 in A. thaliana in regulating light signaling, we show that the constitutive expression of AtBBX32 in soybean alters the abundance of a subset of gene transcripts in the early morning hours. In particular, AtBBX32 alters transcript levels of the soybean clock genes GmTOC1 and LHY-CCA1-like2 (GmLCL2). We propose that through the expression of AtBBX32 and modulation of the abundance of circadian clock genes during the transition from dark to light, the timing of critical phases of reproductive development are altered. These findings demonstrate a specific role for AtBBX32 in modulating soybean development, and demonstrate the validity of expressing single genes in crops to deliver increased agricultural productivity. Public Library of Science 2012-02-17 /pmc/articles/PMC3281879/ /pubmed/22363475 http://dx.doi.org/10.1371/journal.pone.0030717 Text en Preuss et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Preuss, Sasha B.
Meister, Robert
Xu, Qingzhang
Urwin, Carl P.
Tripodi, Federico A.
Screen, Steven E.
Anil, Veena S.
Zhu, Shuquan
Morrell, James A.
Liu, Grace
Ratcliffe, Oliver J.
Reuber, T. Lynne
Khanna, Rajnish
Goldman, Barry S.
Bell, Erin
Ziegler, Todd E.
McClerren, Amanda L.
Ruff, Thomas G.
Petracek, Marie E.
Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title_full Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title_fullStr Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title_full_unstemmed Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title_short Expression of the Arabidopsis thaliana BBX32 Gene in Soybean Increases Grain Yield
title_sort expression of the arabidopsis thaliana bbx32 gene in soybean increases grain yield
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281879/
https://www.ncbi.nlm.nih.gov/pubmed/22363475
http://dx.doi.org/10.1371/journal.pone.0030717
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