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拟南芥叶片低温驯化表型的时间异质性。

Temporal heterogeneity of cold acclimation phenotypes in Arabidopsis leaves.

机构信息

Department of Biology, University of York, PO Box 373, York YO10 5YW, UK.

出版信息

Plant Cell Environ. 2010 Feb;33(2):244-58. doi: 10.1111/j.1365-3040.2009.02074.x. Epub 2009 Nov 11.

Abstract

To predict the effects of temperature changes on plant growth and performance, it is crucial to understand the impact of thermal history on leaf morphology, anatomy and physiology. Here, we document a comprehensive range of leaf phenotypes in 25/20 degrees C-grown Arabidopsis thaliana plants that were shifted to 5 degrees C for up to 2 months. When warm-grown, pre-existing (PE) leaves were exposed to cold, leaf thickness increased due to an increase in mesophyll cell size. Leaves that were entirely cold-developed (CD) were twice as thick (eight cell layers) as their warm-developed (WD) counterparts (six layers), and also had higher epidermal and stomatal cell densities. After 4 d of cold, PE leaves accumulated high levels of total non-structural carbohydrates (TNC). However, glucose and starch levels declined thereafter, and after 45 d in the cold, PE leaves exhibited similar TNC to CD leaves. A similar phenomenon was observed in delta(13)C and a range of photosynthetic parameters. In cold-treated PE leaves, an increase in respiration (R(dark)) with cold exposure time was evident when measured at 25 degrees C but not 5 degrees C. Cold acclimation was associated with a large increase in the ratio of leaf R(dark) to photosynthesis. The data highlight the importance of understanding developmental thermal history in determining individual phenotypic traits.

摘要

为了预测温度变化对植物生长和性能的影响,了解热历史对叶片形态、解剖结构和生理学的影响至关重要。在这里,我们记录了 25/20°C 生长的拟南芥植物在转移到 5°C 长达 2 个月的过程中叶片表型的综合范围。当温暖生长的预存(PE)叶片暴露于寒冷中时,由于叶肉细胞大小的增加,叶片厚度增加。完全在寒冷中发育的(CD)叶片比温暖中发育的(WD)叶片厚两倍(八层细胞),并且具有更高的表皮和气孔细胞密度。在寒冷 4 天后,PE 叶片积累了高水平的总非结构性碳水化合物(TNC)。然而,此后葡萄糖和淀粉水平下降,在寒冷中 45 天后,PE 叶片的 TNC 与 CD 叶片相似。在 delta(13)C 和一系列光合作用参数中也观察到了类似的现象。在寒冷处理的 PE 叶片中,当在 25°C 下测量时,随着寒冷暴露时间的增加,呼吸作用(R(dark))明显增加,但在 5°C 下则不然。冷驯化与叶片 R(dark)与光合作用的比值的大幅增加有关。这些数据强调了在确定个体表型特征时理解发育热历史的重要性。

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