DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds

The impact ofqDTY12.1in maintaining yield under drought has not been consistent across genetic backgrounds. We hypothesized that synergism or antagonism with additive‐effect peripheral genes across the background genome either enhances or undermines its full potential. By modeling the transcriptiona...

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Autores principales: Sanchez, Jacobo, Kaur, Pushpinder Pal, Pabuayon, Isaiah C. M., Karampudi, Naga Bhushana Rao, Kitazumi, Ai, Sandhu, Nitika, Catolos, Margaret, Kumar, Arvind, de los Reyes, Benildo G.
Formato: Journal Article
Lenguaje:Inglés
Publicado: Wiley 2022
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Acceso en línea:https://hdl.handle.net/10568/164159
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author Sanchez, Jacobo
Kaur, Pushpinder Pal
Pabuayon, Isaiah C. M.
Karampudi, Naga Bhushana Rao
Kitazumi, Ai
Sandhu, Nitika
Catolos, Margaret
Kumar, Arvind
de los Reyes, Benildo G.
author_browse Catolos, Margaret
Karampudi, Naga Bhushana Rao
Kaur, Pushpinder Pal
Kitazumi, Ai
Kumar, Arvind
Pabuayon, Isaiah C. M.
Sanchez, Jacobo
Sandhu, Nitika
de los Reyes, Benildo G.
author_facet Sanchez, Jacobo
Kaur, Pushpinder Pal
Pabuayon, Isaiah C. M.
Karampudi, Naga Bhushana Rao
Kitazumi, Ai
Sandhu, Nitika
Catolos, Margaret
Kumar, Arvind
de los Reyes, Benildo G.
author_sort Sanchez, Jacobo
collection Repository of Agricultural Research Outputs (CGSpace)
description The impact ofqDTY12.1in maintaining yield under drought has not been consistent across genetic backgrounds. We hypothesized that synergism or antagonism with additive‐effect peripheral genes across the background genome either enhances or undermines its full potential. By modeling the transcriptional networks across siblingqDTY12.1‐introgression lines with contrasting yield under drought (LPB = low‐yield penalty; HPB = high‐yield penalty), theqDTY12.1‐encodedDECUSSATEgene (OsDEC) was revealed as the core of a synergy with other genes in the genetic background.OsDECis expressed in flag leaves and induced by progressive drought at booting stage in LPB but not in HPB. The uniqueOsDECsignature in LPB is coordinated with 35 upstream and downstream peripheral genes involved in floral development through the cytokinin signaling pathway. Results support the differential network rewiring effects through genetic coupling–uncoupling betweenqDTY12.1and other upstream and downstream peripheral genes across the distinct genetic backgrounds of LPB and HPB. The functionalDEC‐network in LPB defines a mechanism for early flowering as a means for avoiding the drought‐induced depletion of photosynthate needed for reproductive growth. Its impact is likely through the timely establishment of stronger source‐sink dynamics that sustains a robust reproductive transition under drought.
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spelling CGSpace1641592025-01-27T15:00:52Z DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds Sanchez, Jacobo Kaur, Pushpinder Pal Pabuayon, Isaiah C. M. Karampudi, Naga Bhushana Rao Kitazumi, Ai Sandhu, Nitika Catolos, Margaret Kumar, Arvind de los Reyes, Benildo G. plant science agronomy and crop science genetics The impact ofqDTY12.1in maintaining yield under drought has not been consistent across genetic backgrounds. We hypothesized that synergism or antagonism with additive‐effect peripheral genes across the background genome either enhances or undermines its full potential. By modeling the transcriptional networks across siblingqDTY12.1‐introgression lines with contrasting yield under drought (LPB = low‐yield penalty; HPB = high‐yield penalty), theqDTY12.1‐encodedDECUSSATEgene (OsDEC) was revealed as the core of a synergy with other genes in the genetic background.OsDECis expressed in flag leaves and induced by progressive drought at booting stage in LPB but not in HPB. The uniqueOsDECsignature in LPB is coordinated with 35 upstream and downstream peripheral genes involved in floral development through the cytokinin signaling pathway. Results support the differential network rewiring effects through genetic coupling–uncoupling betweenqDTY12.1and other upstream and downstream peripheral genes across the distinct genetic backgrounds of LPB and HPB. The functionalDEC‐network in LPB defines a mechanism for early flowering as a means for avoiding the drought‐induced depletion of photosynthate needed for reproductive growth. Its impact is likely through the timely establishment of stronger source‐sink dynamics that sustains a robust reproductive transition under drought. 2022-03 2024-12-19T12:53:31Z 2024-12-19T12:53:31Z Journal Article https://hdl.handle.net/10568/164159 en Open Access Wiley Sanchez, Jacobo; Kaur, Pushpinder Pal; Pabuayon, Isaiah C. M.; Karampudi, Naga Bhushana Rao; Kitazumi, Ai; Sandhu, Nitika; Catolos, Margaret; Kumar, Arvind and de los Reyes, Benildo G. 2021. DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds. The Plant Genome, Volume 15, no. 1
spellingShingle plant science
agronomy and crop science
genetics
Sanchez, Jacobo
Kaur, Pushpinder Pal
Pabuayon, Isaiah C. M.
Karampudi, Naga Bhushana Rao
Kitazumi, Ai
Sandhu, Nitika
Catolos, Margaret
Kumar, Arvind
de los Reyes, Benildo G.
DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title_full DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title_fullStr DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title_full_unstemmed DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title_short DECUSSATE network with flowering genes explains the variable effects of qDTY12.1 to rice yield under drought across genetic backgrounds
title_sort decussate network with flowering genes explains the variable effects of qdty12 1 to rice yield under drought across genetic backgrounds
topic plant science
agronomy and crop science
genetics
url https://hdl.handle.net/10568/164159
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