The effect of autumn N supply on the architecture of young peach (Prunus persica L.) trees
Irrigation and fertilisation were recently considered as useful tools to control tree shape, and reduce pruning costs. The role of the N reserves, which determined spring growth, was considered to be essential. We intended therefore to evaluate its effects on peach tree architecture. Four levels of...
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Published in | Trees (Berlin, West) Vol. 23; no. 2; pp. 235 - 245 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Berlin/Heidelberg
Springer-Verlag
01.04.2009
Springer Nature B.V Springer Verlag |
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Abstract | Irrigation and fertilisation were recently considered as useful tools to control tree shape, and reduce pruning costs. The role of the N reserves, which determined spring growth, was considered to be essential. We intended therefore to evaluate its effects on peach tree architecture. Four levels of N fertilisation were applied on 1-year-old trees, from the end of shoot growth to leaf fall. In subsequent spring, each bud fell into one of the ten classes of positions previously defined within the crown. Its development was followed weekly from burst to June. Fertilisation promoted growth until a threshold level, since no differences were evidenced between the three highest N treatments. Fall N did not affect burst but the further transformation of the buds into rosettes, proleptic or ramificated axes. Crown base was little affected. Fall N increased the number of proleptic axes on most median and upper positions. Axes lengthening and thickening were limited on the median positions, promoted at crown top. The variations concerned the mean internodes lengths, not the number of phytomers per axis. Sylleptic ramification was limited to the crown outer parts, and decreased with fall N. Treatment did neither affect the fruit dry weights, nor the ratio between the number of leaves and the number of fruits. Fruit number was proportioned to vegetative growth by blossoming and fruit set. We conclude that a moderate autumn fertilisation improved orchard productivity, but favoured vegetative growth in the crown outer parts. Additional pruning may therefore be required to control tree shape. |
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AbstractList | Irrigation and fertilisation were recently considered as useful tools to control tree shape, and reduce pruning costs. The role of the N reserves, which determined spring growth, was considered to be essential. We intended therefore to evaluate its effects on peach tree architecture. Four levels of N fertilisation were applied on 1-year-old trees, from the end of shoot growth to leaf fall. In subsequent spring, each bud fell into one of the ten classes of positions previously defined within the crown. Its development was followed weekly from burst to June. Fertilisation promoted growth until a threshold level, since no differences were evidenced between the three highest N treatments. Fall N did not affect burst but the further transformation of the buds into rosettes, proleptic or ramificated axes. Crown base was little affected. Fall N increased the number of proleptic axes on most median and upper positions. Axes lengthening and thickening were limited on the median positions, promoted at crown top. The variations concerned the mean internodes lengths, not the number of phytomers per axis. Sylleptic ramification was limited to the crown outer parts, and decreased with fall N. Treatment did neither affect the fruit dry weights, nor the ratio between the number of leaves and the number of fruits. Fruit number was proportioned to vegetative growth by blossoming and fruit set. We conclude that a moderate autumn fertilisation improved orchard productivity, but favoured vegetative growth in the crown outer parts. Additional pruning may therefore be required to control tree shape. Irrigation and fertilisation were recently considered as useful tools to control tree shape, and reduce pruning costs. The role of the N reserves, which determined spring growth, was considered to be essential. We intended therefore to evaluate its effects on peach tree architecture. Four levels of N fertilisation were applied on 1-year-old trees, from the end of shoot growth to leaf fall. In subsequent spring, each bud fell into one of the ten classes of positions previously defined within the crown. Its development was followed weekly from burst to June. Fertilisation promoted growth until a threshold level, since no differences were evidenced between the three highest N treatments. Fall N did not affect burst but the further transformation of the buds into rosettes, proleptic or ramificated axes. Crown base was little affected. Fall N increased the number of proleptic axes on most median and upper positions. Axes lengthening and thickening were limited on the median positions, promoted at crown top. The variations concerned the mean internodes lengths, not the number of phytomers per axis. Sylleptic ramification was limited to the crown outer parts, and decreased with fall N. Treatment did neither affect the fruit dry weights, nor the ratio between the number of leaves and the number of fruits. Fruit number was proportioned to vegetative growth by blossoming and fruit set. We conclude that a moderate autumn fertilisation improved orchard productivity, but favoured vegetative growth in the crown outer parts. Additional pruning may therefore be required to control tree shape.[PUBLICATION ABSTRACT] |
Author | Wendler, Renate Jordan, Marie-Odile Millard, Peter |
Author_xml | – sequence: 1 givenname: Marie-Odile surname: Jordan fullname: Jordan, Marie-Odile email: moj@avignon.inra.fr organization: UR1115 Plantes et Systèmes de Culture Horticoles, INRA – sequence: 2 givenname: Renate surname: Wendler fullname: Wendler, Renate organization: MLURI, Macaulay Institute – sequence: 3 givenname: Peter surname: Millard fullname: Millard, Peter organization: MLURI, Macaulay Institute |
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CitedBy_id | crossref_primary_10_1093_treephys_tpt109 crossref_primary_10_17660_ActaHortic_2016_1137_19 crossref_primary_10_1007_s00468_010_0509_7 crossref_primary_10_1007_s00344_022_10806_y crossref_primary_10_1007_s00468_010_0453_6 crossref_primary_10_3390_insects12111003 crossref_primary_10_1007_s13595_015_0466_9 crossref_primary_10_1007_s00468_011_0600_8 crossref_primary_10_1016_j_cropro_2017_11_001 crossref_primary_10_1016_j_scienta_2011_07_007 crossref_primary_10_1016_j_scienta_2014_09_029 crossref_primary_10_1002_jsfa_10031 crossref_primary_10_3389_fpls_2021_627313 crossref_primary_10_1002_ps_5583 |
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Keywords | Phytomer N cycling Proleptic axes Rosettes Sylleptic axes Bud development |
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SubjectTerms | Agricultural sciences Agriculture Agronomy Autumn Biomedical and Life Sciences buds fertilizer rates Forestry fruit set Fruit trees Fruits Horticulture Leaves Life Sciences Original Paper peaches Plant Anatomy/Development Plant Pathology Plant Physiology Plant Sciences Prunus persica shoots Spring trees vegetative growth |
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Title | The effect of autumn N supply on the architecture of young peach (Prunus persica L.) trees |
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