THE SCIENTIFIC BASIS OF FORESTRY

持续性 农林复合经营 生产力 森林经营 多样性(政治) 生物多样性 业务 林木育种 环境资源管理 植被(病理学) 地理 生态学 政治学 环境科学 木本植物 生物 经济 医学 宏观经济学 病理 法学
作者
David A. Perry
出处
期刊:Annual review of ecology and systematics [Annual Reviews]
卷期号:29 (1): 435-466 被引量:120
标识
DOI:10.1146/annurev.ecolsys.29.1.435
摘要

A sufficiently wise and flexible silvicultural art can be developed on the ground only by practitioners who understand the forest as a biological entity. F. S. Baker ( 10 ) …the existing level of knowledge about forests is inadequate to develop sound forest management policies. National Research Council ( 114 ) ▪ Abstract Over the past two decades forestry in the United States has diverged into two approaches with quite different objectives and scientific priorities. The management focus of most industrial lands is on increasing productivity of wood fiber via plantations and various cultural tools, especially genetic selection, fertilization, and control of noncrop vegetation. Federal forest management has shifted from a similar focus to greater emphasis on protecting diversity and water. Issues of long-term sustainability are important regardless of ownership. Science has played and continues to play a fundamental role in all aspects. Selection for fast-growing genotypes has increased yields on the order of 10% to 20% depending on species. Fertilization often increases growth significantly but responses are variable and difficult to predict. Significant questions remain concerning the sustainability of intensive forestry, particularly when practiced over wide areas. Soils are heavily impacted by some harvesting practices, and the degree to which damage can be repaired by fertilizers is an important scientific issue. Intensive forestry often results in increased pest problems. In at least one case (fusiform rust in southern pines), a pest has been contained by selecting resistant cultivars, a situation that may or may not be evolutionarily stable. Species diversity is clearly reduced under intensive management, raising questions about the functional role of species with no commercial value. Many of the questions facing forestry science—particularly those dealing with the relation between complexity and function—are precisely the ones confronting basic ecology. Over the past decade scientists have labored to develop ecosystem-based management approaches that maintain system complexity and function, and scientists have increasingly played nontraditional roles at the interface between biology, sociology, and policy.
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