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来自弱光烟草的RNA指导的RNA聚合酶3是自然环境中竞争性生长所必需的。

RNA-directed RNA polymerase3 from Nicotiana attenuata is required for competitive growth in natural environments.

作者信息

Pandey Shree P, Gaquerel Emmanuel, Gase Klaus, Baldwin Ian T

机构信息

Department of Molecular Ecology, Max-Planck-Institute for Chemical Ecology, Jena 07745, Germany.

出版信息

Plant Physiol. 2008 Jul;147(3):1212-24. doi: 10.1104/pp.108.121319. Epub 2008 May 14.

Abstract

SDE1/SGS2/RdR6, a putative RNA-directed RNA polymerase, maintains plant defenses against viruses in Arabidopsis (Arabidopsis thaliana) and Nicotiana benthamiana, but its function has not been examined in natural habitats or with respect to other ecological stresses. We evaluated the organismic-level function of this gene (NaRdR3) in an ecological model species, Nicotiana attenuata, by transforming plants to stably silence RdR3 (irRdR3). Minor morphological changes (elongated leaves and reduced leaf number) and increased susceptibility to tobamoviruses typical of RdR6 silencing in other species were observed, but these changes did not alter the reproductive performance of singly grown plants (measured as seed and capsule production) or herbivore resistance in laboratory trials. 454-sequencing of irRdR3's small RNA (smRNA) transcriptome revealed that 21- and 24-nucleotide smRNAs were not affected, but the abundance of 22- to 23-nucleotide smRNAs was reduced. When planted in pairs with wild-type plants in N. attenuata's natural habitat in the Great Basin Desert, irRdR3 plants produced shorter stalks with significantly reduced flower and capsule numbers, but did not influence the ability of plants to resist the native herbivore community, indicating that silencing RdR3 reduced a plant's competitive ability. We tested this hypothesis in the glasshouse by planting irRdR3 and wild-type pairs in communal containers; again irRdR3 plants had severely reduced stalk elongation and reproductive measures. The reduced competitive ability of irRdR3 plants was associated with altered phytohormone homeostasis, especially as reflected in the distribution of auxin. We suggest that RdR3 helps to regulate hormone balance when plants compete with conspecifics in natural environments.

摘要

SDE1/SGS2/RdR6是一种假定的RNA指导的RNA聚合酶,可维持拟南芥和本氏烟草对病毒的防御,但尚未在自然栖息地或针对其他生态胁迫对其功能进行研究。我们通过转化植物使RdR3(irRdR3)稳定沉默,评估了该基因(NaRdR3)在生态模式物种烟草中的生物体水平功能。观察到一些轻微的形态变化(叶片伸长和叶片数量减少)以及对烟草花叶病毒的易感性增加,这在其他物种中是典型的RdR6沉默现象,但这些变化并未改变单株植物的繁殖性能(以种子和蒴果产量衡量)或实验室试验中的抗虫性。对irRdR3的小RNA(smRNA)转录组进行454测序发现,21和24个核苷酸的smRNA不受影响,但22至23个核苷酸的smRNA丰度降低。当与野生型植物成对种植在大盆地沙漠烟草的自然栖息地时,irRdR3植物的茎较短,花和蒴果数量显著减少,但并未影响植物抵抗本地食草动物群落的能力,这表明沉默RdR3降低了植物的竞争能力。我们在温室中通过将irRdR3和野生型植物成对种植在公共容器中来验证这一假设;同样,irRdR3植物的茎伸长和繁殖指标严重降低。irRdR3植物竞争能力的降低与植物激素稳态的改变有关,尤其是生长素分布的变化。我们认为,当植物在自然环境中与同种植物竞争时,RdR3有助于调节激素平衡。

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