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2篇 您的检索式:作者名="Teresa Docimo"
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1Role of Arabidopsis UV RESISTANCE LOCUS 8 in Plant Growth Reduction under Osmotic Stress and Low Levels of UV-B显示文摘在热点环境,植物暴露于压力的不同类型,例如触发普通 morphogenic 的 UV-B,而且 droughtstress 的过量适应反应导致植物生长的一般减小。这里,我们 reportthat Arabidopsis thaliana 紫外抵抗地点 8 (UVR8 ) 基因, UV-B morphogenic 反应的一个已知的管理者,能补充 Saccharomyces cerevisiae osmo 敏感的异种和它的表示在 Arabidopsis 植物在渗透或咸的应力以后被导致。在 UV-B 的底层下面,植物 overexpressing UVR8 与减少的根开发被相形见绌并且与控制植物相比积累更多的 flavonoids。生长 defectsare 主要由于细胞扩大的抑制。UVR8 overexpression 在 UV-B 的底层下面在植物触发的生长抑制被导致甘露糖醇的渗透的应力加重,但是它不是由离子的应力的 significantlyaffected。相反, uvr8-6 异种植物不在标准条件下面不同于野类型的植物,但是他们显示出一个增加的射击生长 underhigh 盐压力。我们的数据建议 flavonoid 并且可能的调停 UVR8 的累积在植物生长素 homeostasisare 改变观察生长显型的内在的机制并且 UVR8 可能为 integratingplant 生长和压力 signals.Key 词有一个重要角色:Rossella Fasano Nathalie Gonzalez Alessandra Tosco Fabrizio Dal Piaz Teresa Docimo Ramon Serrano Stefania Grillo Antonella Leone Dirk Inze 2014Molecular Plant2014,7,5:7
2Transcriptome reprogramming,epigenetic modifications and alternative splicing orchestrate the tomato root response to the beneficial fungus Trichoderma harzianum显示文摘Beneficial interactions of rhizosphere microorganisms are widely exploited for plant biofertilization and mitigation of biotic and abiotic constraints.To provide new insights into the onset of the roots–beneficial microorganisms interplay,we characterised the transcriptomes expressed in tomato roots at 24,48 and 72 h post inoculation with the beneficial fungus Trichoderma harzianum T22 and analysed the epigenetic and post-trascriptional regulation mechanisms.We detected 1243 tomato transcripts that were differentially expressed between Trichoderma-interacting and control roots and 83 T.harzianum transcripts that were differentially expressed between the three experimental time points.Interaction with Trichoderma triggered a transcriptional response mainly ascribable to signal recognition and transduction,stress response,transcriptional regulation and transport.In tomato roots,salicylic acid,and not jasmonate,appears to have a prominent role in orchestrating the interplay with this beneficial strain.Differential regulation of many nutrient transporter genes indicated a strong effect on plant nutrition processes,which,together with the possible modifications in root architecture triggered by ethylene/indole-3-acetic acid signalling at 72 h post inoculation may concur to the well-described growth-promotion ability of this strain.Alongside,T.harzianum-induced defence priming and stress tolerance may be mediated by the induction of reactive oxygen species,detoxification and defence genes.A deeper insight into gene expression and regulation control provided first evidences for the involvement of cytosine methylation and alternative splicing mechanisms in the plant–Trichoderma interaction.A model is proposed that integrates the plant transcriptomic responses in the roots,where interaction between the plant and beneficial rhizosphere microorganisms occurs.Monica De Palma Maria Salzano Clizia Villano Riccardo Aversano Matteo Lorito Michelina Ruocco Teresa Docimo Anna Lisa Piccinelli Nunzio D’Agostino Marina Tucci 2019Horticulture Research2019,6,1:2
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