globalchange  > 气候变化事实与影响
DOI: 10.1016/j.plaphy.2019.02.007
WOS记录号: WOS:000462106100020
论文题名:
Metabolomic responses triggered by arbuscular mycorrhiza enhance tolerance to water stress in wheat cultivars
作者: Bernardo, Letizia1,2; Carletti, Paolo3; Badeck, Franz W.1; Rizza, Fulvia1; Morcia, Caterina1; Ghizzoni, Roberta1; Rouphael, Youssef4; Colla, Giuseppe5; Terzi, Valeria1; Lucini, Luigi2
通讯作者: Lucini, Luigi
刊名: PLANT PHYSIOLOGY AND BIOCHEMISTRY
ISSN: 0981-9428
出版年: 2019
卷: 137, 页码:203-212
语种: 英语
英文关键词: Funneliformis mosseae ; Triticum durum ; Triacurn aestivum ; drought ; Brassinosteroids ; ROS ; Phytohormones
WOS关键词: PLANT-GROWTH ; SYMBIOSIS ; DROUGHT ; BRASSINOSTEROIDS ; BIOSYNTHESIS ; PERSPECTIVES ; ALLEVIATION ; PATHWAYS ; SYSTEMS ; ROOTS
WOS学科分类: Plant Sciences
WOS研究方向: Plant Sciences
英文摘要:

Under global climate change forecasts, the pressure of environmental stressors (and in particular drought) on crop productivity is expected to rise and challenge further global food security. The application of beneficial microorganisms may represent an environment friendly tool to secure improved crop performance and yield stability. Accordingly, this current study aimed at elucidating the metabolomic responses triggered by mycorrhizal (Funneliformis mosseae) inoculation of durum (Triticurn durum Desf.; cv. 'Mongibello') and bread wheat cultivars (Triacurn aestivurn L.; cv. 'Chinese Spring') under full irrigation and water deficit regimes. Metabolomics indicated a similar regulation of secondary metabolism in both bread and durum wheat cultivars following water limiting conditions. Nonetheless, a mycorrhizal fungi (AMF) x cultivar interaction could be observed, with the bread wheat cultivar being more affected by arbuscular colonization under water limiting conditions. Discriminant compounds could be mostly related to sugars and lipids, both being positively modulated by AMF colonization under water stress. Moreover, a regulation of metabolites related to oxidative stress and a tuning of crosstalk between phytohormones were also evidenced. Among the latter, the stimulation of the brassinosteroids biosynthetic pathway was particularly evident in inoculated wheat roots, supporting the hypothesis of their involvement in enhancing plant response to water stress and modulation of oxidative stress conditions. This study proposes new insights on the modulation of the tripartite interaction plant-AMF-environmental stress.


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被引频次[WOS]:86   [查看WOS记录]     [查看WOS中相关记录]
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/133976
Appears in Collections:气候变化事实与影响

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作者单位: 1.Council Agr Res & Econ, Res Ctr Geom & Bioinformat CREA GB, Via San Protaso 302, Fiorenzuola Darda, PC, Italy
2.Univ Cattolica Sacro Cuore, Dept Sustainable Food Proc, Res Ctr Nutrigen & Proteorn, Piacenza, Italy
3.Univ Padua, Dept Agr Food Nat Resources Anim & Environm, Padua, Italy
4.Univ Naples Federico II, Dept Agr Sci, Portici, Italy
5.Univ Tuscia, Dept Agr & Forest Sci, Viterbo, Italy

Recommended Citation:
Bernardo, Letizia,Carletti, Paolo,Badeck, Franz W.,et al. Metabolomic responses triggered by arbuscular mycorrhiza enhance tolerance to water stress in wheat cultivars[J]. PLANT PHYSIOLOGY AND BIOCHEMISTRY,2019-01-01,137:203-212
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