Resultados de búsqueda - "structural functionalism"

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  1. Relationship between degradation and the structural-functional complexity of subtropical xerophytic forests in the Argentine Wet Chaco por Alvarez Arnesi, Eugenio, Lopez, Dardo Ruben, Barberis, Ignacio M.

    Publicado 2024
    “…Once this capacity is exceeded beyond the threshold limit, resilience is lost, and degradation occurs. The Structural – Functional of State and Transition Models (SFSTM) provide a conceptual framework to address ecosystem resilience and the identification of degradation thresholds. …”
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  2. Structural–functional approach to identify post-disturbance recovery indicators in forests from northwestern Patagonia: a tool to prevent state transitions por Cavallero, Laura, Lopez, Dardo Ruben, Raffaele, Estela, Aizen, Marcelo Adrian

    Publicado 2018
    “…The ultimate goal of this study is to propose a structural–functional approach based on a reference system (i.e. chronosequence) as a tool to detect post-disturbance recovery indicators in forests from NW Patagonia. …”
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  3. Structure-function studies of biomass degrading enzymes : crystallization of EndoT from Hypocrea jecorina and Cel5H from Saccharophagus degradans, and enzyme hharacterization of Cel5H por Zhang, Jing

    Publicado 2009
    “…The purpose of this project was to investigate the structure-function relationship of two carbohydrate active enzymes, Endo-N-acetyl-β-(D)-glucosaminidase (EndoT) from Hypocrea jecorina and Cel5H from Saccharophagus degradans. …”
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  4. The dark side of the genome: revealing the native transposable element/repeat content of eukaryotic genomes por Copetti, Dario, Wing, Rod A.

    Publicado 2016
    “…This lack of completeness is largely due to the inability to assemble the variable (often significant) fraction of nuclear genomes that is composed primarily of repeated sequences (with either a structural function such as satellite DNA and simple sequence repeats or “selfish DNA” such as high-copy transposable elements [TEs]), herein defined as the “dark side of the genome.” …”
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  5. Modelling impacts of drivers on biodiversity and ecosystems por Brotons, Lluís, Christensen, Villy, Ravindranath, N. H., Cao, Mingchang, Chun, Jung Hwa., Maury, Olivier, Peri, Pablo Luis, Proença, Vânia, Salihoglu, Baris

    Publicado 2021
    “…Key findings: 1-Models of biodiversity and ecosystem function are critical to our capability to predict and understand responses to environmental change; 2- There is a need to match biodiversity and ecosystem function model development to stakeholder and policy needs; 3- Biodiversity and ecosystem modelling depends heavily on our understanding of ecosystem structure, function and process and on their adequate representation in models; 4- Uncertainty in ecosystem dynamics is inherent in ecosystem modelling.…”
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  6. Dynamic networks of interactive learning and agricultural research for development: three critical roles for agricultural advisory services por Maatman, Arno, Wongtschowski, Mariana, Heemskerk, Willem, Sellamna, Nour, Davis, Kristin E.

    Publicado 2011
    “…Innovation systems operate at different levels, in terms of structure, functioning, and performance at the national level, and from two different angles: as a macrostructure that involves different functions and key organizations working on these functions, and as the composite of different innovation networks comprising individuals and local and national organizations. …”
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  7. Pedigree genome data of an early-matured Geng/japonica glutinous rice mega variety Longgeng 57 por Lei, Yuanbao, Zhang, Yunjiang, Xu, Linyun, Ma, Wendong, Zhou, Ziqi, Li, Jie, Quan, Pengyu, Faruquee, Muhiuddin, Yang, Dechen, Zhang, Fan, Zhou, Yongli, Quan, Guangjun, Zhao, Xiuqin, Wang, Wensheng, Liu, Bailong, Li, Zhikang, Xu, Jianlong, Zheng, Tianqing

    Publicado 2024
    “…These data sets can be used for deep variation mining, aid in the discovery of new insights into genome structure, function, and evolution, and help to provide essential support to biological research in general.…”
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  8. Restoration and research on degraded forest ecosystems por Don Koo Lee, Sayer, Jeffrey A.

    Publicado 2004
    “…An understanding of causes or issues in degraded forest ecosystems is essential to start structural/functional restoration activities. This special journal issue is a compilation of nine papers presented in a seminar on "Restoration Research of Degraded Forest Ecosystem" that was held at Seoul National University (SNU), Seoul, Korea during 13–14 April 200 by the auspices of Korea Science and Engineering Foundation (KOSEF), and by the support of Yuhan-Kimberly (Y-K), Korea Forest Research Institute (KFRI), Korean Forest Society (KFS) and Northeast Asian Forest Forum (NEAFF). …”
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  9. Cassava mosaic por Alabi, O.J., Mulenga, R., Legg, James P.

    Publicado 2015
    “…This chapter presents the symptopms, causative viruses, epidemiology, economic impact, monitoring and management of CMD. The genome structure, function and diversity, host range, transmission, detection and distribution of the causal agent are also described. …”
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  10. Quantitative descriptions of rice plant architecture and their application por Li, Xumeng, Wang, Xiaohui, Peng, Yulin, Wei, Hailin, Zhu, Xinguang, Chang, Shuoqi, Li, Ming, Li, Tao, Huang, Huang

    Publicado 2017
    “…However, many important structural phenotypic traits still lack quantitative description and modeling on structural-functional relativity. This study defined new architecture indices (AIs) derived from the digitalized plant architecture using the virtual blade method. …”
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  11. The ÓMICAS alliance, an international research program on multi-omics for crop breeding optimization por Jaramillo Botero, Andres, Colorado, Julian D., Quimbaya, Mauricio, Rebolledo, María Camila, Lorieux, Mathias, Ghneim-Herrera, Thaura, Arango, Carlos A., Tobón, Luis E., Finke, Jorge, Rocha, Camilo, Muñoz, Fernando, Riascos, John J., Silva, Fernando, Chirinda, Ngonidzashe, Caccamo, Mario Jose, Vandepoele, Klaas, Goddard, William A.

    Publicado 2022
    “…The massive data sets are used to derive in-silico models, methods and tools to discover complex underlying structure-function associations, which are then carried over to the production of new germplasm with improved agricultural traits. …”
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