Department of Botany, University of Vermont, Burlington, Vermont 05405-0086 USA.
Am J Bot. 2005 Oct;92(10):1675-83. doi: 10.3732/ajb.92.10.1675.
Legumes are unique among higher plants in forming a symbiosis with Rhizobium. Phylogenetic studies indicate this symbiosis may have evolved as many as three times within the Fabaceae; alternatively, a predisposition for nodulation evolved early in the history of the legume lineage. We have identified a physiological trait-increased lateral root formation in response to abscisic acid (ABA)- that marks all nodulating and non-nodulating legume species in our study set with the exception of Chamaecrista fasciculata and Cercis occidentalis. In contrast, nonlegume species tested decrease lateral root formation in response to ABA. Cercis is not a descendant of any common ancestor hypothesized to have evolved Rhizobium nodulation and has an intermediate response to ABA, partway between that of nonlegumes and legumes. We suggest that acquisition of altered responsiveness of roots to ABA is coincident with the appearance of a predisposition for nodulation within the legumes, followed by a loss in Chamaecrista. In addition, we demonstrate that altered ABA responsiveness of lateral root formation characterizes roots of the actinorhizal nodulator, Casuarina glauca, but not the closely related, nonactinorhizal species, Betula papyrifera. Thus our data provide evidence for a physiological root trait associated with nodulation both in legumes and in an actinorhizal plant.
豆科植物在与根瘤菌形成共生关系方面在高等植物中独具特色。系统发育研究表明,这种共生关系可能在豆科植物内部进化了多达三次;或者,结瘤的倾向在豆科植物的早期历史中就已经进化了。我们已经确定了一种生理特征——对脱落酸(ABA)的响应增加侧根形成——除了 Chamaecrista fasciculata 和 Cercis occidentalis 之外,它可以标记我们研究集中的所有结瘤和非结瘤豆科植物物种。相比之下,测试的非豆科植物物种在响应 ABA 时会减少侧根形成。山黧豆不是任何假定具有进化出根瘤菌结瘤能力的共同祖先的后代,并且对 ABA 的反应处于中间状态,介于非豆科植物和豆科植物之间。我们认为,对 ABA 响应的改变与豆科植物中结瘤倾向的出现是同时发生的,随后 Chamaecrista 失去了这种能力。此外,我们证明侧根形成的 ABA 响应改变的特征是根瘤菌结瘤固氮根瘤菌 Casuarina glauca 的特征,但不是密切相关的非根瘤菌物种 Betula papyrifera 的特征。因此,我们的数据为豆科植物和根瘤菌植物中与结瘤相关的生理根特性提供了证据。