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Size-dependency of leaf physiological characteristics and nitrogen allocation in Robinia pseudoacacia and Cornus controversa : 아까시나무와 층층나무의 흉고직경에 따른 잎의 생리적 특성과 질소 분배 특성의 변화

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dc.contributor.advisor김현석-
dc.contributor.author박민지-
dc.date.accessioned2017-10-31T07:53:06Z-
dc.date.available2017-10-31T07:53:06Z-
dc.date.issued2017-08-
dc.identifier.other000000146439-
dc.identifier.urihttps://hdl.handle.net/10371/137599-
dc.description학위논문 (석사)-- 서울대학교 대학원 농업생명과학대학 산림과학부, 2017. 8. 김현석.-
dc.description.abstractLeaf traits such as leaf mass per area (LMA), leaf nitrogen (N) concentration, and its allocations are good indicators of physiological and structural characteristics of tree. Understanding these leaf-level traits of different size trees is important for analyzing their responses and predicting their effects on forest ecosystem structure and function. This study investigated the patterns of size (diameter at breast height, DBH) dependent changes in leaf traits of two species with different life-history strategies. In particular, the partitioning of leaf N into the different pools of the photosynthetic and structural apparatus of the species was analyzed. Crown top leaves from thirty-seven Robinia pseudoacacia L. (1.3 - 41.3 cm DBH), a light-demanding pioneer and N-fixing species, and fifty-two Cornus controversa Hemsl. (0.8 - 48.8 cm DBH), an intermediate shade-tolerant and mid-successional species were collected for the analysis. LMA of two species increased linearly with DBH, while leaf N concentration decreased nonlinearly in a concave and convex shape for R. pseudoacacia and C. controversa, respectively. Photosynthetic capacities (maximum carboxylation and maximum electron transport rate) of R. pseudoacacia stayed relatively constant over the entire DBH range, while those of C. controversa had peak values at intermediate DBH. For the leaf N allocation, N concentration in ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) (NR), bioenergetics (NB), and cell wall (NW) were higher in R. pseudoacacia than C. controversa. In contrast, N concentration of light-harvesting (NH) was higher for C. controversa than that of R. pseudoacacia. As DBH increased, structural N (NW) showed concave patterns for both species. On the other hand, photosynthetic N (NR, NB, NH) in R. pseudoacacia and NB in C. controversa linearly decreased, but NH of C. controversa decreased nonlinearly and NR of C. controversa showed convex pattern reaching maximum value of 0.303% about at 6 cm. Our research revealed pronounced changes of leaf traits with tree size reflects the differences in life-history strategies, implying that trees alter their N allocation within the photosynthetic and structural apparatus in leaf according to the life history strategies as they grow.-
dc.description.tableofcontents1. Introduction 1
2. Materials and Methods 5
2.1. Study sites 5
2.2. Sampling 6
2.2.1. Tree sampling 6
2.2.2. Leaf and soil sampling 7
2.3. Leaf gas exchange 8
2.4. Crown exposure 9
2.5. Chemical assay 9
2.5.1. Determination of LMA, leaf N and C 9
2.5.2. Determination of leaf N content in Rubisco 10
2.5.3. Determination of leaf N content in bioenergetics 10
2.5.4. Determination of leaf N content in chlorophyll 10
2.5.5. Determination of leaf N content in cell wall 11
2.6. Statistical analysis 12
3. Results 13
3.1. Distribution of DBH, height and crown exposure 13
3.2. Soil N concentration 15
3.3. Comparisons of leaf morphological and physiological traits 1 17
3.4. Influence of crown exposure 19
3.5. The size-dependency of leaf morphological and physiological 1traits 21
3.6. N allocation characteristics 23
4. Discussion 26
4.1. Influence of soil N concentration on leaf traits 26
4.2. Species-specific characteristics of leaf traits 27
4.3. Size-related changes in leaf traits 28
4.4. Leaf N allocation 29
5. Conclusion 30
References 31
Appendix 1 40
Abstract in Korean 41
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dc.formatapplication/pdf-
dc.format.extent1585677 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectRobinia pseudoacacia-
dc.subjectCornus controversa-
dc.subjectleaf functional traits-
dc.subjectsize-dependence-
dc.subjectleaf mass per area-
dc.subjectleaf nitrogen-
dc.subjectnitrogen allocation-
dc.subject.ddc634.9-
dc.titleSize-dependency of leaf physiological characteristics and nitrogen allocation in Robinia pseudoacacia and Cornus controversa-
dc.title.alternative아까시나무와 층층나무의 흉고직경에 따른 잎의 생리적 특성과 질소 분배 특성의 변화-
dc.typeThesis-
dc.description.degreeMaster-
dc.contributor.affiliation농업생명과학대학 산림과학부-
dc.date.awarded2017-08-
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