Proteomics

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Proteome Analysis of rapeseed Cotyledons to Light


ABSTRACT: Among multiple factors, light plays a decisive role in the switch from heterotrophic to autotrophic growth. Under dark condition, the rapeseed hypocotyl extended quickly with an apical hook, yellow and folded cotyledon, and the glyoxysome assembling. Whereas under light, the hypocotyl extended slowly, the cotyledon unfolded and turned green. In this study, we performed proteome profiling analyses to show the differential molecular responses of Brassica napus cotyledons to light and dark and reveal metabolic adaptations in postgerminative seedling establishment. In both light and dark-grown conditions.

INSTRUMENT(S): TripleTOF 5600

ORGANISM(S): Brassica Napus (rape)

TISSUE(S): Cotyledon

SUBMITTER: Dongli He  

LAB HEAD: Pingfang Yang

PROVIDER: PXD003464 | Pride | 2017-09-14

REPOSITORIES: Pride

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Publications

Differential Molecular Responses of Rapeseed Cotyledons to Light and Dark Reveal Metabolic Adaptations toward Autotrophy Establishment.

He Dongli D   Damaris Rebecca N RN   Fu Jinlei J   Tu Jinxing J   Fu Tingdong T   Xi Chen C   Yi Bin B   Yang Pingfang P  

Frontiers in plant science 20160714


Photosynthesis competent autotrophy is established during the postgerminative stage of plant growth. Among the multiple factors, light plays a decisive role in the switch from heterotrophic to autotrophic growth. Under dark conditions, the rapeseed hypocotyl extends quickly with an apical hook, and the cotyledon is yellow and folded, and maintains high levels of the isocitrate lyase (ICL). By contrast, in the light, the hypocotyl extends slowly, the cotyledon unfolds and turns green, the ICL con  ...[more]

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