首页> 外文期刊>Grass and forage science: the journal of the British Grassland Society. >Tolerance to frost and ice encasement in cultivars of timothy and perennial ryegrass during winter.
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Tolerance to frost and ice encasement in cultivars of timothy and perennial ryegrass during winter.

机译:在冬季,对提摩太和多年生黑麦草品种的霜冻和冰冻包容性耐受。

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摘要

Ice encasement causes major winter damage in grasslands in coastal areas of Northern Scandinavia and may also affect grass performance in a future changing climate. Changes in ice-encasement tolerance (LD50), frost tolerance (LT50) and water-soluble carbohydrate (WSC) content were investigated in different cultivars of timothy and perennial ryegrass sampled at three sites with contrasting conditions. Timothy endured ice encasement for 40 d more than ryegrass (maximum LD50 63 vs. 20 d), and a cultivar originating from 69 degrees N tolerated significantly longer periods in ice than a cultivar from 59 degrees N. A similar relationship between cultivar origin and tolerance was observed for ryegrass. The higher LD50 in timothy compared with ryegrass seemed to be associated with a lower rate of change in WSC content during ice encasement, but no apparent relationship was found between WSC content at the start of encasement and plant survival in ice. A significant linear relationship was found between LD50 and LT50 of plants sampled in the field. A differing decline in frost tolerance during ice encasement for the species indicated that timothy is more resistant to dehardening under ice than ryegrass. This study contributes data and functional relationships needed to develop models of grass performance during winter.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2494.2010.00762.x
机译:冰封在北欧斯堪的纳维亚半岛沿海地区的草原上造成严重的冬季破坏,并且在未来气候变化的情况下也可能影响草的生长。在三个条件相反的地方,对三个月龄和多年生黑麦草的不同品种的冰袋耐受性(LD50),霜冻耐受性(LT50)和水溶性碳水化合物(WSC)含量进行了研究。蒂莫西比黑麦草更能忍受40 d的冰包裹(最大LD50 63 vs. 20 d),而起源于69度N的品种在冰中的耐受时间要长于来自59度N的品种。在品种上,耐受性相似观察到有黑麦草。与黑麦草相比,在冰期中较高的LD50似乎与冰包裹过程中WSC含量变化率较低有关,但是在包裹开始时WSC含量与冰中植物存活率之间没有发现明显的关系。在田间采样的植物的LD50和LT50之间发现了显着的线性关系。该物种在冰封期间对霜冻耐受性的不同下降表明,苔藓植物比黑麦草更耐冰下的去硬化。这项研究为开发冬季草性能模型所需的数据和功能关系做出了贡献。数字对象标识符http://dx.doi.org/10.1111/j.1365-2494.2010.00762.x

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