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Effects of experimental warming on stomatal traits in leaves of maize (Zea may L.)

机译:实验升温对玉米叶片气孔性状的影响

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摘要

We examined the warming effects on the stomatal frequency, stomatal aperture size and shape, and their spatial distribution pattern of maize (Zea may L.) leaves using a light microscope, an electron scanning microscope, and geostatistic techniques. A field manipulative experiment was conducted to elevate canopy temperature by 2.08°C, on average. We found that experimental warming had little effect on stomatal density, but significantly increased stomatal index due to the reduction in the number of epidermal cells under the warming treatment. Warming also significantly decreased stomatal aperture length and increased stomatal aperture width. As a result, warming significantly increased the average stomatal aperture area and stomatal aperture circumference. In addition, warming dramatically changed the stomatal spatial distribution pattern with a substantial increase in the average nearest neighbor distance between stomata on both adaxial and abaxial surfaces. The spatial distribution pattern of stomata was scale dependent with regular patterns at small scales and random patterns at larger scales on both leaf surfaces. Warming caused the stomatal distribution to become more regular on both leaf surfaces with smaller L(t) values (Ripley's K-function, L(t) is an expectation of zero for any value of t) in the warming plots than the control plots.
机译:我们使用光学显微镜,电子扫描显微镜和地统计学技术研究了变暖对玉米气孔频率,气孔孔径大小和形状及其空间分布格局的影响(玉米(Zea may L.))。进行了现场操作实验,平均将顶篷温度提高了2.08°C。我们发现实验升温对气孔密度影响不大,但由于升温处理下表皮细胞数量减少,气孔指数显着增加。变暖还显着减少了气孔孔径长度并增加了气孔孔径宽度。结果,变暖显着增加了平均气孔孔径面积和气孔孔径周长。此外,变暖极大地改变了气孔空间分布格局,同时增加了正反两面气孔之间的平均最近邻距离。气孔的空间分布模式与尺度相关,在两个叶片表面上均具有小尺度的规则模式和大尺度的随机模式。变暖导致变暖情节的L(t)值(Ripley's K函数,对于任何t值,L(t)期望为零)在两个叶片表面上的气孔分布变得更规则,而不是控制情节。

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