Nicotra Adrienne B, Leigh Andrea, Boyce C Kevin, Jones Cynthia S, Niklas Karl J, Royer Dana L, Tsukaya Hirokazu
Research School of Biology, The Australian National University, Canberra, ACT 0200, Australia.
School of the Environment, University of Technology, Sydney, PO Box 123, Broadway, NSW 2007, Australia.
Funct Plant Biol. 2011 Jul;38(7):535-552. doi: 10.1071/FP11057.
Angiosperm leaves manifest a remarkable diversity of shapes that range from developmental sequences within a shoot and within crown response to microenvironment to variation among species within and between communities and among orders or families. It is generally assumed that because photosynthetic leaves are critical to plant growth and survival, variation in their shape reflects natural selection operating on function. Several non-mutually exclusive theories have been proposed to explain leaf shape diversity. These include: thermoregulation of leaves especially in arid and hot environments, hydraulic constraints, patterns of leaf expansion in deciduous species, biomechanical constraints, adaptations to avoid herbivory, adaptations to optimise light interception and even that leaf shape variation is a response to selection on flower form. However, the relative importance, or likelihood, of each of these factors is unclear. Here we review the evolutionary context of leaf shape diversification, discuss the proximal mechanisms that generate the diversity in extant systems, and consider the evidence for each the above hypotheses in the context of the functional significance of leaf shape. The synthesis of these broad ranging areas helps to identify points of conceptual convergence for ongoing discussion and integrated directions for future research.
被子植物的叶子呈现出显著的形状多样性,其范围涵盖了从枝条内和树冠内的发育序列对微环境的响应,到群落内部和群落之间以及目或科之间物种的差异。人们通常认为,由于光合叶片对植物的生长和存活至关重要,其形状的变化反映了作用于功能的自然选择。已经提出了几种并非相互排斥的理论来解释叶片形状的多样性。这些理论包括:叶片的温度调节,特别是在干旱和炎热环境中;水力限制;落叶树种叶片扩展的模式;生物力学限制;避免食草动物的适应;优化光拦截的适应,甚至叶片形状变化是对花形态选择的一种响应。然而,这些因素中每个因素的相对重要性或可能性尚不清楚。在这里,我们回顾了叶片形状多样化的进化背景,讨论了在现存系统中产生多样性的近端机制,并在叶片形状功能意义的背景下考虑了上述每个假设的证据。对这些广泛领域的综合有助于确定正在进行的讨论的概念趋同点和未来研究的综合方向。