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Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2

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Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2. / Hughes, Rhiannon; Spielman, Melissa; Schruff, Marie et al.
In: Plant Biotechnology Journal, Vol. 6, No. 8, 10.2008, p. 758-769.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Hughes, R, Spielman, M, Schruff, M, Larson, T, Graham, I & Scott, R 2008, 'Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2', Plant Biotechnology Journal, vol. 6, no. 8, pp. 758-769. https://doi.org/10.1111/j.1467-7652.2008.00359.x

APA

Hughes, R., Spielman, M., Schruff, M., Larson, T., Graham, I., & Scott, R. (2008). Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2. Plant Biotechnology Journal, 6(8), 758-769. https://doi.org/10.1111/j.1467-7652.2008.00359.x

Vancouver

Hughes R, Spielman M, Schruff M, Larson T, Graham I, Scott R. Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2. Plant Biotechnology Journal. 2008 Oct;6(8):758-769. Epub 2008 Jul 11. doi: 10.1111/j.1467-7652.2008.00359.x

Author

Hughes, Rhiannon ; Spielman, Melissa ; Schruff, Marie et al. / Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2. In: Plant Biotechnology Journal. 2008 ; Vol. 6, No. 8. pp. 758-769.

Bibtex

@article{40ccd80fda12457fa751f5090418a245,
title = "Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2",
abstract = "It is becoming increasingly vital to improve the yield of seed crops to feed an expanding population and, more recently, for biofuel production. One strategy to increase the yield is to increase the seed size, provided that there is not a concomitant decrease in seed number. In a previous study, we described a mutant in the AUXIN RESPONSE FACTOR 2 (ARF2) gene which produced extra cells in the seed coat and, subsequently, enlarged seeds. However, arf2 mutant plants also show severely reduced self-fertility caused, in part, by over-elongated sepals that prevent flower opening. As a low seed set increases individual seed size, a meaningful comparison of the yield in arf2 and wild-type plants could not be conducted. In this study, we show that targeted expression of wild-type ARF2 in the sepals and petals of arf2-9 mutant flowers restores flower opening and dramatically increases seed set. The restored plants retain both enlarged integuments and increased seed size, reinforcing previous evidence that arf2 mutations increase seed weight through their effect on integuments and not only via reduced fertility. We also show that the measurement of the harvest index in Arabidopsis is useful in assessing the impact of introduced traits on the yield.",
author = "Rhiannon Hughes and Melissa Spielman and Marie Schruff and Tony Larson and Ian Graham and Rod Scott",
year = "2008",
month = oct,
doi = "10.1111/j.1467-7652.2008.00359.x",
language = "English",
volume = "6",
pages = "758--769",
journal = "Plant Biotechnology Journal",
issn = "1467-7652",
publisher = "Wiley-Blackwell",
number = "8",

}

RIS

TY - JOUR

T1 - Yield assessment of integument-led seed growth following targeted repair of auxin response factor 2

AU - Hughes, Rhiannon

AU - Spielman, Melissa

AU - Schruff, Marie

AU - Larson, Tony

AU - Graham, Ian

AU - Scott, Rod

PY - 2008/10

Y1 - 2008/10

N2 - It is becoming increasingly vital to improve the yield of seed crops to feed an expanding population and, more recently, for biofuel production. One strategy to increase the yield is to increase the seed size, provided that there is not a concomitant decrease in seed number. In a previous study, we described a mutant in the AUXIN RESPONSE FACTOR 2 (ARF2) gene which produced extra cells in the seed coat and, subsequently, enlarged seeds. However, arf2 mutant plants also show severely reduced self-fertility caused, in part, by over-elongated sepals that prevent flower opening. As a low seed set increases individual seed size, a meaningful comparison of the yield in arf2 and wild-type plants could not be conducted. In this study, we show that targeted expression of wild-type ARF2 in the sepals and petals of arf2-9 mutant flowers restores flower opening and dramatically increases seed set. The restored plants retain both enlarged integuments and increased seed size, reinforcing previous evidence that arf2 mutations increase seed weight through their effect on integuments and not only via reduced fertility. We also show that the measurement of the harvest index in Arabidopsis is useful in assessing the impact of introduced traits on the yield.

AB - It is becoming increasingly vital to improve the yield of seed crops to feed an expanding population and, more recently, for biofuel production. One strategy to increase the yield is to increase the seed size, provided that there is not a concomitant decrease in seed number. In a previous study, we described a mutant in the AUXIN RESPONSE FACTOR 2 (ARF2) gene which produced extra cells in the seed coat and, subsequently, enlarged seeds. However, arf2 mutant plants also show severely reduced self-fertility caused, in part, by over-elongated sepals that prevent flower opening. As a low seed set increases individual seed size, a meaningful comparison of the yield in arf2 and wild-type plants could not be conducted. In this study, we show that targeted expression of wild-type ARF2 in the sepals and petals of arf2-9 mutant flowers restores flower opening and dramatically increases seed set. The restored plants retain both enlarged integuments and increased seed size, reinforcing previous evidence that arf2 mutations increase seed weight through their effect on integuments and not only via reduced fertility. We also show that the measurement of the harvest index in Arabidopsis is useful in assessing the impact of introduced traits on the yield.

U2 - 10.1111/j.1467-7652.2008.00359.x

DO - 10.1111/j.1467-7652.2008.00359.x

M3 - Journal article

VL - 6

SP - 758

EP - 769

JO - Plant Biotechnology Journal

JF - Plant Biotechnology Journal

SN - 1467-7652

IS - 8

ER -