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Responses of plant growth physiological gas exchange parameters of super and non-super rice to rhizosphere temperature at the tillering stage

机译:分super期超级稻和非超级稻的植物生长生理气体交换参数对根际温度的响应

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摘要

Temperature is one of the critical factors affecting rice growth and yield production. This study investigated the effects of rhizosphere temperature at the tillering stage on the growth, physiological parameters and gas exchange attributes of two rice cultivars, i.e., the super rice cultivar Yuxiangyouzhan and the non-super rice cultivar Xiangyaxiangzhan, under hydroponic conditions. Three rhizosphere temperature treatments, i.e., a low-rhizosphere-temperature treatment (LT, nutrient solution at 17.5 ± 1.5 °C), an ambient-temperature treatment (AT, nutrient solution at 27.5 ± 1.5 °C), and a high-rhizosphere-temperature treatment (HT, nutrient solution at 37.5 ± 1.5 °C), were applied in this study. The results showed significant differences in most of the rice growth and physiological and gas exchange parameters as a result of cultivar and rhizosphere temperature as well as their interaction. In addition, the marked reduction in total dry weight was positively correlated with a notable reduction in plant morphological parameters, such as the fresh and dry weight of the leaves and stem sheaths, and changes in gas exchange parameters. Moreover, antioxidant reactions were active in response to high and low rhizosphere temperatures, which varied in different plant tissues. These results suggested that the super and non-super rice were sensitive to high and low rhizosphere temperatures, respectively.
机译:温度是影响水稻生长和产量的关键因素之一。本研究研究了在水培条件下分till期的根际温度对两个水稻品种(超级稻品种Yuxiangyouzhan和非超级稻品种Xiangyaxiangzhan)的生长,生理参数和气体交换属性的影响。三种根际温度处理,即低根际温度处理(LT,营养液在17.5±1.5°C),环境温度处理(AT,营养液在27.5±1.5°C)和高根际处理高温处理(HT,营养液在37.5±1.5 C)在本研究中。结果表明,由于品种和根际温度以及它们之间的相互作用,大多数水稻的生长以及生理和气体交换参数存在显着差异。此外,总干重的显着减少与植物形态参数的显着减少呈正相关,例如叶片和茎鞘的鲜重和干重以及气体交换参数的变化。此外,抗氧化剂反应在根际温度高和低的情况下也很活跃,根际温度在不同的植物组织中变化。这些结果表明,超级稻和非超级稻分别对高和低的根际温度敏感。

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