Tree species world-wide are under increasing threat from diseases and insects, many of which are non-native. The integrity of our natural, urban and plantat'/> Breeding trees resistant to insects and diseases: putting theory into application
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Breeding trees resistant to insects and diseases: putting theory into application

机译:抗昆虫与疾病的育种树木:将理论放入应用中

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AbstractTree species world-wide are under increasing threat from diseases and insects, many of which are non-native. The integrity of our natural, urban and plantation forest ecosystems, and the services they provide are seriously imperiled. Breeding programs that harness the natural genetic resistance within tree species can provide a durable solution to these threats. In many cases, genetic resistance offers the key to restoration of forests and may even prevent extinction of some tree species. The potential use of genetic resistance is often widely discussed, but the development of applied programs and use of resistant seed has only taken place in a relatively few species. The reflections here from some of the most advanced applied resistance programs, as well as some of the unknowns and limitations of implementing a resistance program will provide a guide to managers considering this approach. In any such program, there is a research component, a tree improvement component and a restoration and reforestation component. These three components, along with sustained management and public support, need to be linked for any genetic resistance program to be fully successful in facilitating the recovery of healthy forests. Other management activities and newly developing technologies may serve to complement genetic resistance or to expedite its development, but premature, over-emphasis on some of these may slow the operational program. An understanding of the level, frequency, durability and stability of resistance and its limitations are necessary to management planning.
机译:<标题>抽象 ara id =“par1”>树种类在世界范围内都在越来越多的疾病和昆虫的威胁,其中许多是非原生的。我们自然,城市和种植园林生态系统的完整性,以及他们提供的服务严重危险。利用树质内的自然遗传抗性的育种计划可以为这些威胁提供耐用的解决方案。在许多情况下,遗传抵抗能够恢复森林的关键,甚至可以防止一些树种的灭绝。通常讨论潜在的遗传性耐药性,但仅在相对较少的物种中发生应用程序和使用抗性种子的使用。这里的一些最先进的应用阻力计划以及一些未知数和实施阻力计划的局限性将为考虑这种方法提供管理者的指南。在任何此类程序中,存在研究组成部分,树改善组件和恢复和重新造林组件。这三个组件以及持续管理和公共支持,需要与任何遗传抵抗计划相关联,以促进健康森林的复苏。其他管理活动和新开发的技术可用于补充遗传性抵抗或加快其发展,但早产,过度强调其中的一些可能会减缓操作程序。对管理规划需要了解阻力的水平,频率,耐久性和稳定性及其限制。

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