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MSD1 regulates pedicellate spikelet fertility in sorghum through the jasmonic acid pathway.


ABSTRACT: Grain number per panicle (GNP) is a major determinant of grain yield in cereals. However, the mechanisms that regulate GNP remain unclear. To address this issue, we isolate a series of sorghum [Sorghum bicolor (L.) Moench] multiseeded (msd) mutants that can double GNP by increasing panicle size and altering floral development so that all spikelets are fertile and set grain. Through bulk segregant analysis by next-generation sequencing, we identify MSD1 as a TCP (Teosinte branched/Cycloidea/PCF) transcription factor. Whole-genome expression profiling reveals that jasmonic acid (JA) biosynthetic enzymes are transiently activated in pedicellate spikelets. Young msd1 panicles have 50% less JA than wild-type (WT) panicles, and application of exogenous JA can rescue the msd1 phenotype. Our results reveal a new mechanism for increasing GNP, with the potential to boost grain yield, and provide insight into the regulation of plant inflorescence architecture and development.

SUBMITTER: Jiao Y 

PROVIDER: S-EPMC5826930 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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MSD1 regulates pedicellate spikelet fertility in sorghum through the jasmonic acid pathway.

Jiao Yinping Y   Lee Young Koung YK   Gladman Nicholas N   Chopra Ratan R   Christensen Shawn A SA   Regulski Michael M   Burow Gloria G   Hayes Chad C   Burke John J   Ware Doreen D   Xin Zhanguo Z  

Nature communications 20180226 1


Grain number per panicle (GNP) is a major determinant of grain yield in cereals. However, the mechanisms that regulate GNP remain unclear. To address this issue, we isolate a series of sorghum [Sorghum bicolor (L.) Moench] multiseeded (msd) mutants that can double GNP by increasing panicle size and altering floral development so that all spikelets are fertile and set grain. Through bulk segregant analysis by next-generation sequencing, we identify MSD1 as a TCP (Teosinte branched/Cycloidea/PCF)  ...[more]

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