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首页> 外文期刊>Rangeland Ecology & Management >Freezing stress influences emergence of germinated perennial grass seeds. (Special Section: Seed and seedling ecology.)
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Freezing stress influences emergence of germinated perennial grass seeds. (Special Section: Seed and seedling ecology.)

机译:冻害影响了多年生发芽草种子的萌发。 (特别部分:种子和幼苗生态学。)

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In sagebrush rangelands perennial bunchgrasses are typically seeded in fall and a high proportion of planted seeds germinate prior to winter onset but fail to emerge in spring. Our objectives were to evaluate freezing tolerance of germinated but nonemergent bluebunch wheatgrass seeds under laboratory conditions. We used data from a 2-yr pilot study to determine overwinter freezing temperature and duration for soils in southeastern Oregon. We then conducted two experiments to assess freezing tolerance. In experiment 1, bluebunch wheatgrass seeds were planted in control pots and compared to seeds planted at early, mid, or late postgermination stages. Pots from each treatment were placed in a grow room maintained at 12 h 40 min light/11 h 20 min dark photoperiod, with a constant temperature of 22 degrees C for 30 d either immediately or following a 30-d freeze. In experiment 2, germinated bluebunch wheatgrass seeds were planted in pots that were left nonfrozen or were frozen for a specified duration prior to a 30-d period in the grow room. Emergence density and tillers.seedling-1 were quantified for both experiments. The number of days per year for freezing soil conditions in the pilot study ranged yearly from 25 to 51; maximum duration of continuous freezing was 16.5 and 11.2 d. Freezing reduced or eliminated seedling emergence at all postgermination stages (P<0.001) and tiller density was reduced by at least 50% (P<0.001). Maximum reduction in seedling density (P<0.001) was realized within 4 d of initiation of freezing and tillers.seedling-1 were reduced 30-70% with >=6 d of freezing (P=0.001). Our data indicate that freezing-associated mortality of germinated but nonemergent bluebunch wheatgrass seedlings can be extremely high and suggest that management practices to reduce prewinter germination of seeds could improve subsequent emergence and seeding success.Digital Object Identifier http://dx.doi.org/10.2111/REM-D-12-00135.1
机译:在鼠尾草牧场中,多年生束草通常在秋天播种,并且很大一部分播种种子在冬季到来之前就发芽了,但是在春季却没有发芽。我们的目标是在实验室条件下评估发芽但未萌发的蓝bu麦草种子的耐冻性。我们使用了一项为期2年的试验研究得出的数据,以确定俄勒冈州东南部土壤的越冬冻结温度和持续时间。然后,我们进行了两个实验以评估耐冻性。在实验1中,将蓝束小麦草种子种植在对照盆中,并与发芽后早期,中期或后期种植的种子进行比较。将来自每种处理的盆放置在生长室中,该生长室保持在光照12小时40分钟/黑暗光周期11小时20分钟,并立即或在30天冷冻后在22摄氏度的恒温条件下放置30天。在实验2中,将发芽的蓝梗小麦草种子种植在不冻结或在生长室中放置30天之前冷冻指定时间的盆中。量化了两个实验的出苗密度和分。 -1 。试点研究中每年冻结土壤条件的天数每年为25到51天;连续冷冻的最大持续时间为16.5和11.2 d。在所有发芽后阶段,冷冻减少或消除了幼苗的出苗(P <0.001),分till密度降低了至少50%(P <0.001)。在冻结和分till开始后的4 d内实现了幼苗密度的最大降低(P <0.001)。当冻结> = 6 d时,幼苗 -1 降低了30-70%(P = 0.001) 。我们的数据表明发芽但未融合的蓝麦草幼苗的冷冻相关死亡率可能非常高,这表明减少种子越冬发芽的管理措施可以改善随后的出苗率和播种成功率。 /10.2111/REM-D-12-00135.1

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