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Understanding plant reproductive diversity

机译:了解植物繁殖多样性

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摘要

Flowering plants display spectacular floral diversity and a bewildering array of reproductive adaptations that promote mating, particularly outbreeding. A striking feature of this diversity is that related species often differ in pollination and mating systems, and intraspecific variation in sexual traits is not unusual, especially among herbaceous plants. This variation provides opportunities for evolutionary biologists to link micro-evolutionary processes to the macro-evolutionary patterns that are evident within lineages. Here, I provide some personal reflections on recent progress in our understanding of the ecology and evolution of plant reproductive diversity. I begin with a brief historical sketch of the major developments in this field and then focus on three of the most significant evolutionary transitions in the reproductive biology of flowering plants: the pathway from outcrossing to predominant self-fertilization, the origin of separate sexes (females and males) from hermaphroditism and the shift from animal pollination to wind pollination. For each evolutionary transition, I consider what we have discovered and some of the problems that still remain unsolved. I conclude by discussing how new approaches might influence future research in plant reproductive biology.
机译:开花植物显示出惊人的花卉多样性,并产生令人困惑的繁殖适应,促进交配,特别是近交繁殖。这种多样性的一个显着特征是,相关物种的授粉和交配系统通常会有所不同,而且性状的种内变异并不罕见,尤其是在草本植物中。这种变化为进化生物学家提供了将微观进化过程与谱系中显而易见的宏观进化模式联系起来的机会。在这里,我对我们对植物繁殖多样性的生态学和进化的理解的最新进展提供了一些个人看法。我首先简要回顾一下该领域的主要发展,然后重点介绍开花植物生殖生物学中最重要的三个进化过渡:从异源杂交到优势自我受精的途径,两性(女性)的起源和雄性)从雌雄同体和从动物授粉到风授粉的转变。对于每个进化的过渡,我都会考虑我们所发现的内容以及一些仍未解决的问题。最后,我将讨论新方法如何影响植物生殖生物学的未来研究。

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