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Femtosecond near-infrared lasers as a novel tool for non-invasive real-time high-resolution time-lapse imaging of chloroplast division in living bundle sheath cells of Arabidopsis

机译:飞秒近红外激光作为拟南芥活束鞘细胞中叶绿体分裂非侵入性实时高分辨率时移成像的新型工具

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Non-linear excitation of fluorophores by contemporaneous absorption of two or more near-infrared (NIR) photons following diffraction-limited focusing with high-numerical-aperture objectives circumvents out-of-focus fluorescence (without a confocal pinhole) and spatially limits photobleaching and photodamage to the minute sub-femtoliter focal volume. This is in contrast to optical events in conventional confocal imaging systems using ultraviolet (UV) or visible laser sources wherein the entire sectors of the specimen above and below the plane of focus experience massive photostress and photodamage. In addition, NIR wavelengths penetrate deeper into the highly scattering environs of plant tissue than UV and visible wavelengths. We delineate a novel non-invasive technique using NIR femtosecond laser pulses at λ=740, 760, 780, and 800 nm for induction of chlorophyll fluorescence by the two-photon effect as well as for intra-tissue time-lapse vital three-dimensional imaging of fundamental events of chloroplast division in deeply seated bundle sheath cells of Arabidopsis thaliana (L.) Heynh. leaves. Our findings establish that (i) mature bundle sheath chloroplasts are indeed capable of division, (ii) the dividing chloroplasts assume a distinct constricted/dumbbell-shaped profile with an average lifespan of 20–25 min, (iii) the complete division of the pre-existing chloroplasts occurs within 50 min, and (iv) the two derivative daughter chloroplasts are invariably unequal in size. This novel NIR-laser-based technique has any number of potential applications, including (i) non-invasive intra-vital imaging of molecular and ion dynamics, (ii) non-destructive screening of mutants impaired in photosynthesis, (iii) diagnosis of physiological states of plants and (iv) bio-optical taxonomy.
机译:在高数值孔径物镜的衍射限制聚焦条件下,通过同时吸收两个或多个近红外(NIR)光子,荧光团的非线性激发避免了离焦荧光(没有共焦针孔),并且在空间上限制了光漂白和光损伤到分飞秒的焦距。这与使用紫外线(UV)或可见激光源的常规共焦成像系统中的光学事件相反,在常规共焦成像系统中,焦平面上方和下方的样本的整个扇区均遭受巨大的光应力和光损伤。此外,NIR波长比UV和可见光波长更深地渗透到高度散射的植物组织环境中。我们描述了一种新的非侵入性技术,该技术使用NIR飞秒激光脉冲在λ= 740、760、780和800 nm处通过双光子效应诱导叶绿素荧光,并用于组织内延时重要的三维拟南芥(L.)Heynh的深层束鞘细胞中叶绿体分裂基本事件的三维成像树叶。我们的发现表明,(i)成熟的束鞘叶绿体确实能够分裂,(ii)分裂的叶绿体具有明显的收缩/哑铃形轮廓,平均寿命为20–25分钟,(iii)完全分裂预先存在的叶绿体在50分钟内发生,并且(iv)两个衍生子叶绿体的大小始终不等。这种基于NIR激光的新颖技术具有许多潜在的应用,包括(i)分子和离子动力学的无创活体内成像,(ii)光合作用受损的突变体的非破坏性筛选,(iii)诊断植物的生理状态和(iv)生物光学分类学。

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