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Boron remobilization at low boron supply in olive (Olea europaea) in relation to leaf and phloem mannitol concentrations

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dc.contributor.author Liakopoulos, G en
dc.contributor.author Stavrianakou, S en
dc.contributor.author Filippou, M en
dc.contributor.author Fasseas, C en
dc.contributor.author Tsadilas, C en
dc.contributor.author Drossopoulos, I en
dc.contributor.author Karabourniotis, G en
dc.date.accessioned 2014-06-06T06:46:27Z
dc.date.available 2014-06-06T06:46:27Z
dc.date.issued 2005 en
dc.identifier.issn 0829318X en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/3012
dc.relation.uri http://www.scopus.com/inward/record.url?eid=2-s2.0-14344266611&partnerID=40&md5=c8c3b0229aa17618ea0d96395adca682 en
dc.subject Boron deficiency en
dc.subject Carbohydrates en
dc.subject Phloem en
dc.subject Photosynthesis en
dc.subject Plant stress en
dc.subject Plasmodesmata en
dc.subject.other boron en
dc.subject.other mannitol en
dc.subject.other boron en
dc.subject.other phloem en
dc.subject.other photosynthesis en
dc.subject.other remobilization en
dc.subject.other article en
dc.subject.other chemistry en
dc.subject.other metabolism en
dc.subject.other olive tree en
dc.subject.other phloem en
dc.subject.other photosynthesis en
dc.subject.other physiology en
dc.subject.other plant leaf en
dc.subject.other tree en
dc.subject.other Boron en
dc.subject.other Mannitol en
dc.subject.other Olea en
dc.subject.other Phloem en
dc.subject.other Photosynthesis en
dc.subject.other Plant Leaves en
dc.subject.other Trees en
dc.subject.other Olea europaea en
dc.title Boron remobilization at low boron supply in olive (Olea europaea) in relation to leaf and phloem mannitol concentrations en
heal.type journalArticle en
heal.publicationDate 2005 en
heal.abstract For plant species in which a considerable portion of the photoassimilates are translocated in the phloem as sugar alcohols, boron is freely translocated from mature organs to growing tissues. However, the effects of decreased plant boron status on boron remobilization are poorly understood. We conducted a growth chamber experiment (CE) and a field experiment (FE) to study the effects of low boron supply on boron remobilization in olive (Olea europaea L.), a species that transports considerable amounts of mannitol in the phloem. For the CE, several physiological parameters were compared between control (B+) and boron-deficient olive plants (B-) during the expansion of new leaves. Boron remobilization was assessed by measuring boron content of selected leaves at the beginning and at the end of the CE. As expected, boron was remobilized from mature leaves to young leaves of B+ plants; however, considerable boron remobilization was also observed in B- plants, suggesting a mechanism whereby olive can sustain a minimum boron supply for growth of new tissues despite an insufficient external boron supply. Boron deficiency caused inhibition of new growth but had no effect on photosynthetic capacity per unit leaf surface area of young and mature leaves, thereby altering the carbon utilization pattern and resulting in carbon allocation to structures within the source leaves and accumulation of soluble carbohydrates. Specifically, in mature B- leaves in the CE and in B- leaves in the FE, mannitol concentration on a leaf water content basis increased by 48 and 27% respectively, compared with controls. Carbon export ability (assessed by both phloem anatomy and phloem exudate composition of FE leaves) was enhanced at low boron supply. We conclude that, at low boron supply, increased mannitol concentrations maintain boron remobilization from source leaves to boron-demanding sink leaves. © 2005 Heron Publishing - Victoria, Canada. en
heal.journalName Tree Physiology en
dc.identifier.issue 2 en
dc.identifier.volume 25 en
dc.identifier.spage 157 en
dc.identifier.epage 165 en


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