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Spatial Nano-Morphology of the Prolamellar Body in Etiolated Arabidopsis thaliana Plants With Disturbed Pigment and Polyprenol Composition

机译:用扰动色素和聚丙烯组成的硫化拟南芥植物中基霉菌体的空间纳米形态

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The prolamellar body (PLB) is a periodic bicontinuous membrane structure based on tubular tetrahedral units. PLBs are present in plant etioplasts and, upon illumination, directly transform into the lamellar thylakoid networks within chloroplasts. Efficient tubular-lamellar rearrangement and later formation of the photosynthetically active thylakoid membranes are crucial steps in the development of plant autotrophy. PLB membranes are mainly composed of galactolipids, carotenoids, and protochlorophyllide (Pchlide), the chlorophyll precursor, bound in a complex with NADPH and Pchlide oxidoreductase. Although the PLB structure has been studied for over 50 years, the direct role of particular membrane components in the formation of the PLB paracrystalline network remains elusive. Moreover, despite the numerous literature data regarding the PLB geometry, their reliable comparative analysis is complicated due to variable experimental conditions. Therefore, we performed comprehensive ultrastructural and low-temperature fluorescence analysis of wild type Arabidopsis thaliana (Arabidopsis) seedlings grown in different conditions typical for studies on etiolated seedlings. We established that the addition of sucrose to the growing media significantly affected the size and compactness of the PLB. The etiolation period was also an important factor influencing the PLB structural parameters and the ratio of free to complex-bound Pchlide. Thus, a reliable PLB structural and spectral analysis requires particular attention to the applied experimental conditions. We investigated the influence of the pigment and polyprenol components of the etioplast membranes on the formation of the PLB spatial structure. The PLB 3D structure in several Arabidopsis mutants (ccr1-1, lut5-1, szl1-1npq1-2, aba1-6, pif1, cpt7) with disturbed levels of particular pigments and polyprenols using electron tomography technique was studied. We found that the PLB nano-morphology was mainly affected in the pif1 and aba1-6 mutants. An increased level of Pchlide (pif1) resulted in the substantial shift of the structural balance between outer and inner PLB water channels and overall PLB compactness compared to wild type plants. The decrease in the relative content of β-branch xanthophylls in aba1-6 plants was manifested by local disturbances in the paracrystalline structure of the PLB network. Therefore, proper levels of particular etioplast pigments are essential for the formation of stable and regular PLB structure.
机译:基体(PLB)是基于管状四面体单元的周期性的双周末膜结构。 PLBS存在于植物的牙骨杆菌中,并且在照明时,直接转化为叶绿体内的层状囊肿网络。有效的管状层状重排和后来形成光合活性的类囊体膜是植物自养发育的关键步骤。 PLB膜主要由半乳糖脂,类胡萝卜素和氯化氯化物,叶绿素前体组成,与NADPH和PCHLIDE氧化还原酶结合。虽然PLB结构已经研究超过50年,但特定膜组分在形成PLB循环网络中的直接作用仍然难以捉摸。此外,尽管有许多关于PLB几何形状的文献数据,但由于可变的实验条件,它们可靠的对比分析复杂。因此,我们对典型的不同条件的野生型拟南芥(拟南芥)幼苗进行了全面的超微结构和低温荧光分析,典型的典型化幼苗研究。我们确实建立了蔗糖对越来越多的介质的含量显着影响了PLB的尺寸和紧凑性。黄光素期也是影响PLB结构参数的重要因素和自由与复合结合的PCLIDE的比例。因此,可靠的PLB结构和光谱分析需要特别注意应用的实验条件。我们研究了牙塑料膜的颜料和聚丙烯组分对PLB空间结构的形成的影响。研究了若干拟南芥突变体中的PLB 3D结构(CCR1-1,LUT5-1,SZL1-1-1-2,ABA1-6,PIF1,CPT7),具有干扰的特定颜料和使用电子断层扫描技术的聚丙烯醇。我们发现PLB纳米形态主要在PIF1和ABA1-6突变体中受到影响。 PChlide(PIF1)水平增加导致外部和内部PLB水通道之间的结构平衡的大幅偏移,以及与野生型植物相比的整体PLB紧凑性。通过PLB网络的脱胆结构中的局部干扰表现了ABA1-6植物中β-分支Xhanthophyls的相对含量的降低。因此,适当水平的特定牙塑料颜料对于形成稳定和常规PLB结构是必不可少的。

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