کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
8352578 | 1541891 | 2018 | 9 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Endophytic Pseudomonas induces metabolic flux changes that enhance medicinal sesquiterpenoid accumulation in Atractylodes lancea
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کلمات کلیدی
ABAPCIBAtractylodes lanceaTTCIAAMevalonateNaAGC–MS - GC-MSHydrogen peroxide - آب اکسیژنهEthylene - اتیلنacetyl coenzyme A - استیل کوآنزیم AAcetyl CoA - استیل کولاabscisic acid - اسید آبسزیکBacterial endophyte - اندوفیت باکتریاییConversion - تبدیلANOVA - تحلیل واریانس Analysis of varianceTriphenyltetrazolium chloride - ترفتhenyltetrazolium chloridestandard errors - خطاهای استانداردgas chromatography–mass spectrometry - طیف سنجی جرم کروماتوگرافی گازMVA - مالیات بر ارزش افزودهIAM - من هستمnaphthaleneacetic acid - نفتالین اسیدهای اسیدH2O2 - هیدروژن پراکسیدHPLC - کروماتوگرافی مایعی کاراGas chromatography - کروماتوگرافی گازیGibberellin - گیببرلین
موضوعات مرتبط
علوم زیستی و بیوفناوری
علوم کشاورزی و بیولوژیک
دانش گیاه شناسی
پیش نمایش صفحه اول مقاله
چکیده انگلیسی
The bacterial endophyte Pseudomonas fluorescens ALEB7B significantly enhances photosynthate accumulations in Atractylodes lancea. These carbohydrates are preferentially used by the host plant to synthesize secondary metabolites, rather than to increase plant biomass accumulation. Mechanisms underlying the allocation of endophyte-increased carbohydrate in different plant metabolic processes are largely unknown. We have studied how P. fluorescens ALEB7B enhances photosynthate accumulation and how bacterial elicitors regulate metabolic flux and increase medicinal sesquiterpenoid formation in A. lancea using the sterile tissue culture plantlets. P. fluorescens ALEB7B enhances plant photosynthate accumulation by synthesizing and secreting indole-3-acetic acid, which has been demonstrated using high-performance liquid chromatography analysis. The increased endogenous indole-3-acetic acid promotes plant root development and then assimilation. Increased carbohydrates provide the material basis for the formations of terpenoid hydrocarbon scaffolds, which has been proved using gas chromatography analysis. Further, protein and polysaccharide elicitors secreted by P. fluorescens ALEB7B have been separated and purified from the bacterial fermentation broth, which have been applied to A. lancea plantlets. Both elicitors can stimulate the conversions of terpenoid hydrocarbon scaffolds to oxygenous sesquiterpenoids, the active medicinal ingredients in A. lancea, by triggering the oxidative burst in planta. Moreover, this study separates an ABC transporter substrate-binding protein from protein elicitors secreted by P. fluorescens ALEB7B with an ÃKTA Prime Plus Purifier System and firstly shows that this protein is essential to induce oxygenous sesquiterpenoid accumulation in A. lancea. This study provides new perspectives for mechanisms of medicinal oxygenous terpenoid synthesis, which has important reference values to the cultivation of medicinal plants that have terpenoids as their active ingredients, such as Artemisia annua and Taxus chinensis.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Plant Physiology and Biochemistry - Volume 130, September 2018, Pages 473-481
Journal: Plant Physiology and Biochemistry - Volume 130, September 2018, Pages 473-481
نویسندگان
Jia-Yu Zhou, Kai Sun, Fei Chen, Jie Yuan, Xia Li, Chuan-Chao Dai,