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首页> 外文期刊>Horticulture,Environment,and Biotechnology >Effects of light intensity and relative humidity on photosynthesis, growth and graft-take of grafted cucumber seedlings during healing and acclimatization.
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Effects of light intensity and relative humidity on photosynthesis, growth and graft-take of grafted cucumber seedlings during healing and acclimatization.

机译:光强和相对湿度对黄瓜嫁接苗愈合和适应过程中光合作用,生长和嫁接的影响。

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摘要

Healing and acclimatization are key processes for the survival of grafted plants. This study evaluated the influence of light intensity (photosynthetic photon flux, PPF) and relative humidity during the healing and acclimatization period on the photosynthetic characteristics, graft-take, and growth of grafted cucumber (Cucumis sativus L.) seedlings, using a system for the continuous measurement of the CO2 exchange rate, in order to establish optimum environmental conditions for the healing and acclimatization of grafted cucumbers seedlings. Cucumbers (Cucumis sativus L. cv. Joeun Baekdadaki) were grafted onto rootstocks (Cucurbita maxima D. x C. moshata D. cv. New Shintozwa). Six combinations of two levels of relative humidity (95 and 90%) and three levels (0, 142, and 237 micro mol.m-2.s-1) of light intensity were set up during healing and acclimatization. Increasing light intensity significantly increased CO2 exchange rates during healing and acclimatization. At 95 and 90% relative humidity, the CO2 exchange rates at 237 micro mol.m-2.s-1 light intensity were 1.5 and 1.8 times higher than those at 142 micro mol.m-2.s-1 light intensity, respectively. The light intensity during healing and acclimatization also affected the amount and distribution of chloroplasts in scion cotyledon. The amount of chloroplasts increased with the increase of PPF during healing and acclimatization, which covered most of cell wall with little open space left, compared with that of dark condition. As PPF increased, the shoot length, ratio of shoot to root, and specific leaf area decreased but the hypocotyl diameter, leaf area, dry weight, and percent dry matter increased. On the other hand, the relative humidity ranging from 90 to 95% did not significantly affect the CO2 exchange rates during healing, acclimatization, and growth of grafted cucumber seedlings. As a result, PPF during healing and acclimatization affected the growth and quality of grafted cucumber seedlings. This showed that higher PPF condition may improve the growth and quality of grafted cucumber seedlings.
机译:复原和适应是嫁接植物存活的关键过程。这项研究评估了光疗强度(光合光子通量,PPF)和相对湿度在愈合和适应阶段对嫁接黄瓜(Cucumis sativus L.)的光合特性,嫁接量和生长的影响。 )幼苗,使用连续测量CO 2 交换速率的系统,以便为嫁接黄瓜幼苗的愈合和驯化建立最佳环境条件。将黄瓜(Cucumis sativus L. cv。Joeun Baekdadaki)嫁接到砧木上( D. x C。moshata D. cv。New Shintozwa)。六个相对湿度水平(95和90%)和三个水平(0、142和237 micro mol.m -2 .s -1 )的组合在康复和适应过程中建立光强度。在康复和适应过程中,增加光强度显着提高了CO 2 交换速率。在相对湿度95和90%的条件下,在237 micro mol.m -2 .s -1 的光强度下,CO 2 的交换速率为1.5分别是142 micro mol.m -2 .s -1 光强度的1.8倍和1.8倍。愈合和适应过程中的光照强度也影响子叶子叶中叶绿体的数量和分布。与黑暗条件下相比,在愈合和适应过程中,叶绿体的数量随PPF的增加而增加,其覆盖了大部分细胞壁,几乎没有开放空间。随着PPF的增加,枝条长度,枝条根比和比叶面积减少,但胚轴直径,叶面积,干重和干物质百分比增加。另一方面,相对湿度在90%至95%范围内,对嫁接黄瓜幼苗的愈合,适应和生长过程中的CO 2 交换速率没有显着影响。结果,PPF在愈合和适应过程中影响了嫁接黄瓜幼苗的生长和质量。这表明较高的PPF条件可以改善嫁接黄瓜幼苗的生长和品质。

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