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Functional Ecology, ISSN 0269-8463, 2/2003, Volume 17, Issue 1, pp. 10 - 19
Journal Article
New Phytologist, ISSN 0028-646X, 5/2010, Volume 186, Issue 3, pp. 708 - 721
Leaf toughness is thought to enhance physical defense and leaf lifespan. Here, we evaluated the relative importance of tissue-level leaf traits vs lamina... 
Trees | Leaves | Toughness | Plant ecology | Forest ecology | Saplings | Fracture strength | Species | Seedlings | Phenotypic traits | tropical trees | ontogenetic shifts | structural equation modeling | herbivory | leaf functional traits | sapling shade tolerance | leaf toughness | leaf lifespan | Leaf functional traits | Leaf toughness | Structural equation modeling | Ontogenetic shifts | Tropical trees | Herbivory | Sapling shade tolerance | Leaf lifespan | FRACTURE-TOUGHNESS | LEAVES | MECHANICAL-PROPERTIES | FOREST | PLANT SCIENCES | BIOMECHANICAL PROPERTIES | WOODY-PLANTS | LIGHT REQUIREMENTS | FUNCTIONAL TRAITS | ECONOMICS SPECTRUM | TRADE-OFFS | Adaptation, Physiological | Quantitative Trait, Heritable | Species Specificity | Stress, Mechanical | Organ Specificity | Trees - anatomy & histology | Seedlings - growth & development | Biomechanical Phenomena | Trees - physiology | Time Factors | Tropical Climate | Models, Biological | Ecosystem | Plant Leaves - anatomy & histology | Principal Component Analysis | Plant Leaves - physiology | Forest management | Sustainable forestry | Ecosystems | Analysis | Environmental protection | Index Medicus | forest | trade-offs | economics spectrum | leaves | fracture-toughness | mechanical-properties | functional traits | light requirements | biomechanical properties | woody-plants
Journal Article
The New Phytologist, ISSN 0028-646X, 9/2002, Volume 155, Issue 3, pp. 403 - 416
Journal Article
Frontiers in Plant Science, ISSN 1664-462X, 07/2017, Volume 8, pp. 1278 - 1278
Leaf growth and senescence are controlled by tight genetic factors involved regulation at multiple levels. Circular RNAs (circRNAs) have recently been reported... 
Leaves | Senescence | CircRNAs | Regulation | Growth | senescence | circRNAs | leaves | regulation | TRANSCRIPTOME | BIOGENESIS | SPONGE | growth | PLANT LEAF SENESCENCE | EFFICIENT | PLANT SCIENCES
Journal Article
Agricultural Water Management, ISSN 0378-3774, 01/2019, Volume 211, pp. 190 - 201
Plant growth and photosynthesis in response to water status have been extensively investigated. However, elucidating the photosynthetic process and its... 
Chlorophyll fluorescence | Climatic change | Drought episode | Photosynthetic potentials | Leaf lifespan | Zea mays L | FREQUENTLY ASKED QUESTIONS | AGRONOMY | WATER RESOURCES | WHEAT | PHOTOPROTECTION | RESPONSES | RECOVERY | WATER-STRESS | GROWTH | PHOTOSYSTEM-II | IMPACTS | PHOTOSYNTHESIS | Fluorescence | Chlorophyll | Photosynthesis | Droughts | Analysis | Phytochemistry
Journal Article
Plant and Soil, ISSN 0032-079X, 7/2015, Volume 392, Issue 1/2, pp. 301 - 308
Aims In addition to multiple above- and belowground abiotic factors, root herbivory can be an important determinant of root lifespan. In this study, we... 
Life Sciences | Chemical defense | Soluble phenolics | Plant Physiology | Ecology | Root lifespan | Herbivory | Plant Sciences | Soil Science & Conservation | AGRONOMY | PINE FOREST | COMMUNITIES | FINE ROOTS | PLANT SCIENCES | SOIL SCIENCE | CITRUS TREES | GROUND INSECT HERBIVORY | VERTICAL-DISTRIBUTION | DYNAMICS | NITROGEN | SOIL | LEAF | Phenols | Roots (Botany) | Research | Analysis | Trees | Plant biology | Defense mechanisms | Herbivores
Journal Article