Concurrent overexpression of amino acid permease AAP1(3a) and SUT1 sucrose transporter in pea resulted in increased seed number and changed cytokinin and protein levels

dc.contributor.authorGrant, JE
dc.contributor.authorNinan, A
dc.contributor.authorCripps-Guazzone, N
dc.contributor.authorShaw, M
dc.contributor.authorSong, J
dc.contributor.authorPetřík, I
dc.contributor.authorNovák, O
dc.contributor.authorTegeder, M
dc.contributor.authorJameson, PE
dc.coverage.spatialAustralia
dc.date.accessioned2021-06-13T23:00:05Z
dc.date.available2021-05-25
dc.date.issued2021
dc.date.submitted2021-03-30
dc.description.abstractUsing pea as our model crop, we sought to understand the regulatory control over the import of sugars and amino acids into the developing seeds and its importance for seed yield and quality. Transgenic peas simultaneously overexpressing a sucrose transporter and an amino acid transporter were developed. Pod walls, seed coats, and cotyledons were analysed separately, as well as leaves subtending developing pods. Sucrose, starch, protein, free amino acids, and endogenous cytokinins were measured during development. Temporal gene expression analyses (RT-qPCR) of amino acid (AAP), sucrose (SUT), and SWEET transporter family members, and those from cell wall invertase, cytokinin biosynthetic (IPT) and degradation (CKX) gene families indicated a strong effect of the transgenes on gene expression. In seed coats of the double transgenics, increased content and prolonged presence of cytokinin was particularly noticeable. The transgenes effectively promoted transition of young sink leaves into source leaves. We suggest the increased flux of sucrose and amino acids from source to sink, along with increased interaction between cytokinin and cell wall invertase in developing seed coats led to enhanced sink activity, resulting in higher cotyledon sucrose at process pea harvest, and increased seed number and protein content at maturity.
dc.format.extent16 pages
dc.format.mediumPrint
dc.identifierFP21011
dc.identifierhttps://www.ncbi.nlm.nih.gov/pubmed/34366001
dc.identifier.doi10.1071/fp21011
dc.identifier.eissn1445-4416
dc.identifier.issn1445-4408
dc.identifier.other34366001 (pubmed)
dc.identifier.urihttps://hdl.handle.net/10182/13893
dc.language.isoen
dc.publisherCSIRO Publishing
dc.relationThe original publication is available from CSIRO Publishing - https://doi.org/10.1071/fp21011 - http://dx.doi.org/10.1071/fp21011
dc.relation.isPartOfFunctional Plant Biology
dc.relation.urihttps://doi.org/10.1071/fp21011
dc.rights© CSIRO 2021
dc.rights.ccnameAttribution-NonCommercial-NoDerivatives
dc.rights.ccurihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subjectAAP
dc.subjectcell wall invertase
dc.subjectCKX
dc.subjectIPT
dc.subjectlegume
dc.subjectPisum sativum
dc.subjectprocess peas
dc.subjectseed coat
dc.subjectseed yield
dc.subjectsucrose
dc.subjectSUT
dc.subjectSWEET
dc.subjecttransgenics
dc.subjecttransgenic
dc.subject.anzsrc2020ANZSRC::310802 Plant biochemistry
dc.subject.anzsrc2020ANZSRC::300404 Crop and pasture biochemistry and physiology
dc.subject.anzsrc2020ANZSRC::3108 Plant biology
dc.subject.anzsrc2020ANZSRC::310804 Plant developmental and reproductive biology
dc.subject.anzsrc2020ANZSRC::300802 Horticultural crop growth and development
dc.subject.meshPeas
dc.subject.meshSeeds
dc.subject.meshSucrose
dc.subject.meshCytokinins
dc.subject.meshAmino Acid Transport Systems
dc.subject.meshAmino Acid Transport Systems
dc.subject.meshCytokinins
dc.subject.meshPeas
dc.subject.meshSeeds
dc.subject.meshSucrose
dc.titleConcurrent overexpression of amino acid permease AAP1(3a) and SUT1 sucrose transporter in pea resulted in increased seed number and changed cytokinin and protein levels
dc.typeJournal Article
lu.contributor.unitLincoln University
lu.contributor.unitFaculty of Agriculture and Life Sciences
lu.contributor.unitDepartment of Pest Management and Conservation
pubs.issue9
pubs.notesOnline Early Article
pubs.publication-statusPublished
pubs.publisher-urlhttp://dx.doi.org/10.1071/fp21011
pubs.volume48
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