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Poplar Trees (Populus canadensis Moench) Initiate Vegetative Storage Protein Accumulation During New Shoot Development in Spring 被引量:4

Poplar Trees (Populus canadensis Moench) Initiate Vegetative Storage Protein Accumulation During New Shoot Development in Spring
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摘要 It was generally assumed that the accumulation of vegetative storage protein (VSP) in poplar trees and/or temperate hardwoods did not occur in spring. To test this assumption, the accumulation of the 32-kDa VSP and the differential expression of a gene encoding for the protein in poplars were investigated using light and electron microscopy, sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and reverse transcription-polymerase chain reaction (RT-PCR). We report, for the first time, that poplar trees initiated VSP accumulation in new shoots during the development of new shoots in spring under conditions of high temperature and long days. The amount of 32-kDa VSP increased gradually in the stem of new shoots and in two-year-old branches, but there were no detectable changes in its abundance in the bark tissues of trunks during new shoot development. Based on the presence of a 286-bp DNA fragment that is identical to the VSP gene bspA, encoding for the 32-kDa VSP in Populus deltoids Bartr. ex Marsh., the differential expression of the 32-kDa VSP gene in P. canadensis Moench was revealed by RT-PCR. The results indicated that the 32-kDa VSP gene was expressed strongly in new shoots, relative weakly in two-year-old branches and was not expressed in the trunk during new shoot development. This pattern of VSP accumulation and VSP gene space-time differential expression may be an important mechanism by which stored nitrogen compounds are used preferentially to exogenously available nitrogen and, in addition, the dynamic pattern may also have a role in the regulation of nitrogen metabolism, especially nitrogen uptake by the roots. Abstract: It was generally assumed that the accumulation of vegetative storage protein (VSP) in poplar trees and/or temperate hardwoods did not occur in spring. To test this assumption, the accumulation of the 32-kDa VSP and the differential expression of a gene encoding for the protein in poplars were investigated using light and electron microscopy, sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and reverse transcription-polymerase chain reaction (RT-PCR). We report, for the first time, that poplar trees initiated VSP accumulation in new shoots during the development of new shoots in spring under conditions of high temperature and long days. The amount of 32-kDa VSP increased gradually in the stem of new shoots and in two-year-old branches, but there were no detectable changes in its abundance in the bark tissues of trunks during new shoot development. Based on the presence of a 286-bp DNA fragment that is identical to the VSP gene bspA, encoding for the 32-kDa VSP in Populus deltoids Bartr. ex Marsh., the differential expression of the 32-kDa VSP gene in P. canadensis Moench was revealed by RT-PCR. The results indicated that the 32-kDa VSP gene was expressed strongly in new shoots, relative weakly in two-year-old branches and was not expressed in the trunk during new shoot development. This pattern of VSP accumulation and VSP gene space-time differential expression may be an important mechanism by which stored nitrogen compounds are used preferentially to exogenously available nitrogen and, in addition, the dynamic pattern may also have a role in the regulation of nitrogen metabolism, especially nitrogen uptake by the roots.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2005年第6期717-725,共9页 植物学报(英文版)
基金 国家自然科学基金,国家重点基础研究发展计划(973计划)
关键词 new shoot nitrogen storage Populus canadensis temperate hardwoods vegetative storage proteins new shoot nitrogen storage Populus canadensis temperate hardwoods vegetative storage proteins
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  • 1Beardmore T, Wetzel S, Kalous M (2000). Interactions of airborne methyl jasmonate with vegetative storage protein gene and protein accumulation and biomass partitioning in Populus plants. Can J ForRes 30,1106-1113.
  • 2Black BL, Parmentier-Line CM, Fuchigami LH, Coleman GD (2001). Ecotypic and genetic variation in poplar bark storage protein gene expression and accumulation. Tree Physiol 21,1289-1297.
  • 3Clausen S, Apel K (1991). Seasonal changes in the concentration of the major storage protein and its mRNA in xylem ray cells of poplar trees. Plant Mol Biol 17, 669-678.
  • 4Coleman GD, Chen THH (1993). Sequence of a poplar bark storage protein gene. Plant Physiol 102,1347-1348.
  • 5Coleman GD, Chen THH, Fuchigami LH (1992). Complementary DNA cloning of poplar bark storage protein and control of its expression by photoperiod. Plant Physiol 98,687-693.
  • 6Coleman GD, Bafiados MP, Chen THH (1994). Poplar bark storage protein and a related wound-induced gene are differentially induced by nitrogen. Plant Physiol 106,211-215.
  • 7Cooper HD, Clarkson DT (1989). Cycling of amino-nitrogen and other nutrients between shoots and roots in cereals: A possible mechanism integrating shoot and root in the regulation of nutrient uptake. J Exp Bot 40,753-762.
  • 8Dyckmans J, Flessa H (2001). Influence of tree internal N status on uptake and translocation of C and N in beech: A dual ^13C and ^15N labeling approach. Tree Physiol 21,395-401.
  • 9Grassi G, Millard P, Gioacchini P, Tagliavini M (2003). Recycling of nitrogen in the xylem of Prunus avium trees when spring remobilization of internal reserves declines. Tree Physiol 23,1061-1068.
  • 10Greenwood JS, Demmers C, Wetzel S (1990). Seasonally dependent formation of protein-storage vacuoles in the inner bark tissues of Salix microstachya. Can J Bot 68,1747-1755.

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