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首页> 外文期刊>Annual review of ecology, evolution, and systematics >EVOLUTIONARY ECOLOGY OF PLANT ADAPTATION TO SERPENTINE SOILS
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EVOLUTIONARY ECOLOGY OF PLANT ADAPTATION TO SERPENTINE SOILS

机译:植物对Serpentine土壤的适应性进化生态学

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Plant adaptation to serpentine soil has been a topic of study for many decades; yet investigation of the genetic component of this adaptation has only recently begun. We review the defining properties of serpentine soil and the pioneering work leading to three established physiological and evolutionary mechanisms hypothesized to be responsible for serpentine tolerance: tolerance of a low calcium-to-magnesium ratio; avoidance of Mg toxicity; or a high Mg requirement. In addition; we review recent work in serpentine ecology documenting the high proportion of endemic species present; the adaptive morphologies of serpentine-tolerant plants; and the distinctive structure of serpentine communities. Studies of the physiological mechanisms proposed to confer serpentine tolerance have shown that uptake of particular ions and heavy metals varies between serpentine-tolerant and -intolerant species. Recent studies examining the genetic basis of serpentine adaptation have shown serpentine-adaptive quantitativetrait loci QTL to have large phenotypic effects; drought tolerance to be as important as metal tolerance; and serpentine adaptation to have evolved independently multiple times within species. Investigations of plant races and species adapted to contrasting soil types have shown disparate flowering times; divergent floral morphologies; and pollen incompatibility to contribute to reproductive isolation. Finally; we propose that future studies involving serpentine systems should merge the fields of ecology; evolution; physiology; and genetics.
机译:几十年来,植物对蛇形土壤的适应一直是研究的主题。然而,这种适应的遗传成分的研究才刚刚开始。我们回顾了蛇纹石土壤的定义特性,以及导致三种已建立的生理和进化机制的开创性工作,这些机理被认为是对蛇纹石耐受性的原因:低钙镁比的耐受性;避免镁的毒性;或高的镁要求。此外;我们回顾了最近在蛇形生态学方面的工作,记录了目前特有物种的高比例;耐蛇纹石的植物的适应形态以及蛇形社区的独特结构。对赋予蛇纹石耐受性的生理机制的研究表明,特定的离子和重金属的吸收在耐受蛇纹石和不耐受蛇纹石的物种之间有所不同。最近研究蛇纹石适应性的遗传基础的研究表明,蛇纹石适应的数量性状基因座QTL具有很大的表型效应。耐旱性与金属耐性一样重要;和蛇形适应,使其在物种内独立演化了多次。对适合不同土壤类型的植物种族和物种的研究显示出不同的开花时间。不同的花形和花粉不相容有助于生殖隔离。最后;我们建议,未来涉及蛇形系统的研究应合并生态学领域;演化;生理;和遗传学。

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