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Freezing tolerance of 27 saltgrass ecotypes from three cold hardiness zones.

机译:来自三个耐寒区的27种盐草生态型的耐冻性。

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Freezing is the major abiotic stress that limits geographic distribution of warm season turfgrasses. Prior studies have indicated variation in freezing tolerance in saltgrass clones. Therefore, this study examined freezing tolerance of 27 saltgrass clones as related to collection sites in three zones of cold hardiness. Furthermore, these clones were evaluated for time of leaf browning in the fall with the intent to determine if there was a correlation between this trait and freezing tolerance. Rhizomes were sampled during 2004 and 2005 midwinters from clones established in Fort Collins, Colo., and then subjected to a freezing test in a programmable freezer. Saltgrass freezing tolerance was highly influenced by the climatic zone of clone origin in both years of the experiment. Clones with greater freezing tolerance turned brown earlier in fall in both seasons. Ranking of zones for the average LT50 (lethal temperature at which 50% of rhizomes died) was: zone 4, most northern (-17.2 degrees C) < zone 5 (-14.4 degrees C), < zone 6, most southern (-11.1 degrees C) in 2004, and zone 4 (-18.3 degrees C), < zone 5 (-15.7 degrees C) < zone 6 (-13.1 degrees C) in 2005. Clones from northern areas tolerated lower freezing temperatures overall. This likely indicates that freezing tolerance is inherited. Large intraspecific variation in freezing tolerance may be effectively used in developing cold hardy cultivars..
机译:冷冻是主要的非生物胁迫,限制了暖季草坪草的地理分布。先前的研究表明,盐草克隆的耐冻性有所不同。因此,本研究检查了27个盐草无性系的耐寒性,这些耐性与三个耐寒性地区的采集部位有关。此外,评估了这些克隆在秋天的叶片褐变时间,目的是确定该性状与耐寒性之间是否存在相关性。 2004年和2005年仲冬期间,从科罗拉多州柯林斯堡(Fort Collins)建立的克隆中取样了根茎,然后在可编程冰箱中进行了冷冻测试。在这两年的实验中,盐草的耐寒性都受到克隆起源气候区的高度影响。在两个季节中,具有更强耐寒性的克隆在秋天早些时候变成棕色。平均LT50(50%的根茎死亡的致死温度)的区域排名为:区域4,最北部(-17.2摄氏度)<区域5(-14.4摄氏度),<区域6,最南部(-11.1)在2004年达到4摄氏度(-18.3摄氏度),在2005年达到4区(-18.3摄氏度)<5区(-15.7摄氏度)<6区(-13.1摄氏度)。北部地区的克隆总体上可以承受较低的冷冻温度。这可能表明冻结耐受性是遗传的。种内耐寒性的较大差异可以有效地用于开发耐寒品种。

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