Electronic Resource
Adaptive Reprogramming During Early Seed Germination Requires Temporarily Enhanced Fermentation-A Critical Role for Alternative Oxidase Regulation That Concerns Also Microbiota Effectiveness
العنوان: | Adaptive Reprogramming During Early Seed Germination Requires Temporarily Enhanced Fermentation-A Critical Role for Alternative Oxidase Regulation That Concerns Also Microbiota Effectiveness |
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المؤلفون: | Bharadwaj, R, Noceda, C, Mohanapriya, G, Kumar, SR, Thiers, KLL, Costa, JH, Macedo, ES, Kumari, A, Gupta, KJ, Srivastava, S, Adholeya, Alok, Oliveira, M, Velada, I, Sircar, D, Sathishkumar, R, Arnholdt-Schmitt, B |
بيانات النشر: | Frontiers Media SA 2021-10-01 |
نوع الوثيقة: | Electronic Resource |
مستخلص: | |
مصطلحات الفهرس: | Journal Article |
URL: | issn: 1664-462X Frontiers in Plant Science |
الاتاحة: | Open access content. Open access content |
ملاحظة: | 11 p. |
Other Numbers: | LD0 oai:dro.deakin.edu.au:DU:30159734 1306168936 |
المصدر المساهم: | DEAKIN UNIV From OAIster®, provided by the OCLC Cooperative. |
رقم الانضمام: | edsoai.on1306168936 |
قاعدة البيانات: | OAIster |
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Microbiota constitutes part of the inner and outer environment of the plant. This <jats:italic>Umwelt</jats:italic> underlies steady dynamics, due to complex local and global biotic and abiotic changes. Hence, adaptive plant holobiont responses are crucial for continuous metabolic adjustment at the systems level. Plants require oxygen-dependent respiration for energy-dependent adaptive morphology, such as germination, root and shoot growth, and formation of adventitious, clonal, and reproductive organs, fruits, and seeds. Fermentative paths can help in acclimation and, to our view, the role of alternative oxidase (AOX) in coordinating complex metabolic and physiological adjustments is underestimated. Cellular levels of sucrose are an important sensor of environmental stress. We explored the role of exogenous sucrose and its interplay with AOX during early seed germination. We found that sucrose-dependent initiation of fermentation during the first 12 h after imbibition (HAI) was beneficial to germination. However, parallel upregulated <jats:italic>AOX</jats:italic> expression was essential to control negative effects by prolonged sucrose treatment. Early downregulated <jats:italic>AOX</jats:italic> activity until 12 HAI improved germination efficiency in the absence of sucrose but suppressed early germination in its presence. The results also suggest that seeds inoculated with arbuscular mycorrhizal fungi (AMF) can buffer sucrose stress during germination to restore normal respiration more efficiently. Following this approach, we propose a simple method to identify organic seeds and low-cost <jats:italic>on-farm</jats:italic> perspectives for early identifying disease tolerance, predicting plant holobiont behavior, and improving germination. Furthermore, the research strengthens the view that AOX can serve a ) Array ( [Name] => Subject [Label] => Index Terms [Group] => Su [Data] => <searchLink fieldCode="DE" term="%22Journal+Article%22">Journal Article</searchLink> ) Array ( [Name] => URL [Label] => URL [Group] => URL [Data] => <externalLink term="http://hdl.handle.net/10536/DRO/DU:30159734">http://hdl.handle.net/10536/DRO/DU:30159734</externalLink><br /><externalLink term="http://doi.org/10.3389/fpls.2021.686274">http://doi.org/10.3389/fpls.2021.686274</externalLink><br /><externalLink term="http://elements.deakin.edu.au/viewobject.html?id=290250&cid=1">http://elements.deakin.edu.au/viewobject.html?id=290250&cid=1</externalLink><br />issn: 1664-462X<br /><externalLink term="http://doi.org/10.3389/fpls.2021.686274">http://doi.org/10.3389/fpls.2021.686274</externalLink><br /><externalLink term="http://elements.deakin.edu.au/viewobject.html?id=290250&cid=1">http://elements.deakin.edu.au/viewobject.html?id=290250&cid=1</externalLink><br />Frontiers in Plant Science ) Array ( [Name] => Avail [Label] => Availability [Group] => [Data] => Open access content. 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