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克隆繁殖的驯化植物的进化生态学。

The evolutionary ecology of clonally propagated domesticated plants.

机构信息

Centre d'Ecologie Fonctionnelle et Evolutive, UMR 5175, 1919 route de Mende, 34293 Montpellier cedex 5, France.

出版信息

New Phytol. 2010 Apr;186(2):318-32. doi: 10.1111/j.1469-8137.2010.03210.x. Epub 2010 Feb 25.

Abstract

While seed-propagated crops have contributed many evolutionary insights, evolutionary biologists have often neglected clonally propagated crops. We argue that widespread notions about their evolution under domestication are oversimplified, and that they offer rich material for evolutionary studies. The diversity of their wild ancestors, the diverse ecologies of the crop populations themselves, and the intricate mix of selection pressures, acting not only on the parts harvested but also on the parts used by humans to make clonal propagules, result in complex and diverse evolutionary trajectories under domestication. We examine why farmers propagate some plants clonally, and discuss the evolutionary dynamics of sexual reproduction in clonal crops. We explore how their mixed clonal/sexual reproductive systems function, based on the sole example studied in detail, cassava (Manihot esculenta). Biotechnology is now expanding the number of clonal crops, continuing the 10 000-yr-old trend to increase crop yields by propagating elite genotypes. In an era of rapid global change, it is more important than ever to understand how the adaptive potential of clonal crops can be maintained. A key component of strategies for preserving this adaptive potential is the maintenance of mixed clonal/sexual systems, which can be achieved by encouraging and valuing farmer knowledge about the sexual reproductive biology of their clonal crops.

摘要

虽然种子繁殖作物为进化生物学提供了许多见解,但进化生物学家往往忽略了无性繁殖作物。我们认为,关于它们在驯化过程中进化的普遍观点过于简单化了,它们为进化研究提供了丰富的材料。其野生祖先的多样性、作物种群自身多样的生态环境,以及不仅作用于收获部分,而且作用于人类用于制作无性繁殖体的部分的复杂混合选择压力,导致了驯化过程中复杂多样的进化轨迹。我们考察了为什么农民无性繁殖某些植物,并讨论了无性繁殖作物中有性繁殖的进化动态。我们根据唯一详细研究的例子——木薯(Manihot esculenta),探讨了其混合无性/有性生殖系统的功能。生物技术现在正在扩大无性繁殖作物的数量,延续了通过无性繁殖优良基因型来提高作物产量的 10000 年的趋势。在全球快速变化的时代,了解无性繁殖作物的适应潜力如何得以维持比以往任何时候都更为重要。维持这种适应潜力的策略的一个关键组成部分是维持混合无性/有性系统,可以通过鼓励和重视农民对其无性繁殖作物有性生殖生物学的知识来实现。

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