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Root volatiles in plant-plant interactions I: High root sesquiterpene release is associated with increased germination and growth of plant neighbours

机译:植物植物相互作用中的根挥发物I:高根筛窦释放与植物邻居的萌发和生长增加有关

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Volatile organic compounds (VOCs) emitted by plant leaves can influence the physiology of neighbouring plants. In contrast to leaf VOCs, little is known about the role of root VOCs in plant-plant interactions. Here, we characterize constitutive root VOC emissions of the spotted knapweed (Centaurea stoebe) and explore the impact of these VOCs on the germination and growth of different sympatric plant species. We show that C. stoebe roots emit high amounts of sesquiterpenes, with estimated release rates of (E)-beta-caryophyllene above 3 mu g g(-1) dw hr(-1). Sesquiterpene emissions show little variation between different C. stoebe populations but vary substantially between different Centaurea species. Through root transcriptome sequencing, we identify six root-expressed sesquiterpene synthases (TPSs). Two root-specific TPSs, CsTPS4 and CsTPS5, are sufficient to produce the full blend of emitted root sesquiterpenes. VOC-exposure experiments demonstrate that C. stoebe root VOCs have neutral to positive effects on the germination and growth of different sympatric neighbours. Thus, constitutive root sesquiterpenes produced by two C. stoebe TPSs are associated with facilitation of sympatric neighbouring plants. The release of root VOCs may thus influence plant community structure in nature.
机译:由植物叶子发出的挥发性有机化合物(VOC)可以影响邻近植物的生理学。与叶VOC相比,关于根VOCs在植物植物相互作用中的作用很少。在这里,我们描述了斑点Knapweed(Centaurea Stoebe)的本构型根转牌排放,并探讨了这些VOC对不同SympaTric植物物种的发芽和生长的影响。我们展示了C. Stoebe Roots发出大量的倍半萜烯,估计(e)-beta-亚氰基烯的释放速率高于3μg(-1)DW HR(-1)。 SesquiterPene排放表现出不同的C. Stoebe种群之间的变化很小,但在不同的Centaurea种类之间的不同之处很大。通过根转转录体测序,我们鉴定六种表达的倍二萜合酶(TPS)。两个根特异性TPS,CSTPS4和CSTPS5足以产生发出的根倍萜的完全混合。 VOC曝光实验表明,C. Stoebe Rootocs对不同SympaTric邻居的发芽和生长具有中性对积极影响。因此,由两个C. Stoebe TPS产生的构成根倍半萜系有与SympaTric相邻植物的促进相关联。因此,根霉权的释放可以在自然界中影响植物群落结构。

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