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首页> 外文期刊>Biologia Plantarum >Leaf anatomy during leaf development of photoautotrophically in vitro -grown tobacco plants as affected by growth irradiance
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Leaf anatomy during leaf development of photoautotrophically in vitro -grown tobacco plants as affected by growth irradiance

机译:受光辐照生长的自养型烟草植物叶片发育过程中的叶片解剖

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摘要

Tobacco (Nicotiana tabacum L.) plants were cultured in vitro photoautotrophically at three levels of irradiance (PAR 400–700 nm): low (LI, 60 µmol m−2 s−1), middle (MI, 180 µmol m−2 s−1) and high (HI, 270 µmol m−2 s−1). Anatomy of the fourth leaf from bottom was followed during leaf development. In HI and MI plants, leaf area expansion started earlier as compared to LI plants, and both HI and MI plants developed some adaptations of sun species: leaves were thicker with higher proportion of palisade parenchyma to spongy parenchyma tissue. Furthermore, in HI and MI plants palisade and spongy parenchyma cells were larger and relative abundance of chloroplasts in parenchyma cells measured as chloroplasts cross-sectional area in the cell was lower than in LI plants. During leaf growth, chloroplasts crosssectional area in both palisade and spongy parenchyma cells in all treatments considerably decreased and finally it occupied only about 5 to 8 % of the cell cross-sectional area. Thus, leaf anatomy of photoautotrophically in vitro cultured plants showed a similar response to growth irradiance as in vivo grown plants, however, the formation of chloroplasts and therefore of photosynthetic apparatus was strongly impaired. Additional key words chloroplast - epidermis - growth irradiance - leaf thickness - leaf ontogeny - palisade parenchyma - spongy parenchyma
机译:烟草(Nicotiana tabacum L.)植株在三种辐照度(PAR 400–700 nm)下进行光合自养体外培养:低(LI,60 µmol m −2 s −1 ),中(MI,180μmolm -2 s -1 )和高(HI,270μmolm -2 s < sup> -1 )。在叶片发育过程中,从底部开始对第四片叶片进行解剖。在HI和MI植物中,与LI植物相比,叶面积扩张开始得更早,并且HI和MI植物都发展了一些对太阳物种的适应:叶片较厚,栅栏薄壁组织占海绵薄壁组织的比例更高。此外,在HI和MI植物中,栅栏和海绵状薄壁组织细胞较大,并且薄壁组织中叶绿体的相对丰度以细胞中的叶绿体横截面积为比LI植物低。在叶片生长期间,在所有处理中,木栅和海绵状薄壁组织细胞中的叶绿体横截面积均显着降低,最终仅占细胞横截面积的5%至8%。因此,光自养体外培养植物的叶片解剖显示出与体内生长的植物相似的对生长辐照的响应,但是,叶绿体的形成以及因此光合装置的形成被大大削弱。关键词叶绿体-表皮-生长辐照度-叶片厚度-叶片个体发育-栅栏薄壁组织-海绵薄壁组织

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