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首页> 外文期刊>Journal of the American Society for Horticultural Science >Bermudagrass Freezing Tolerance Associated with Abscisic Acid Metabolism and Dehydrin Expression during Cold Acclimation.
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Bermudagrass Freezing Tolerance Associated with Abscisic Acid Metabolism and Dehydrin Expression during Cold Acclimation.

机译:冷驯化过程中与脱落酸代谢和脱水素表达相关的百慕大草冷冻耐受性。

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摘要

Recent advances in bermudagrass [Cynodon dactylon (L.) Pers. var. dactylon] breeding and cultural management practices have enabled its use as a sports surface in U.S. Department of Agriculture cold hardiness zones 5 and 6. Use of these more cold-hardy bermudagrass cultivars further into transition- and cool-season zones increases the probability of freezing injury and increases the need for an improved understanding of physiological responses to chilling and freezing temperatures. Abscisic acid (ABA) has been shown to increase during cold acclimation (CA) and play a role in dehydration tolerance. This study investigated changes in ABA metabolism and dehydrin expression during CA and their association with freezing tolerance in four bermudagrass cultivars. Two cold-tolerant ('Patriot' and 'Riviera') and two relatively cold-sensitive ('Tifway' and 'Princess') cultivars were either subjected to CA at 8 pC day/4 pC night with a light intensity of 250 omolp"m-2p"s-1 over a 10-h photoperiod for 21 days or maintained at 28 pC day/24 pC night over a 12-h photoperiod. In a separate study, exogenous ABA at 0, 50, 100, and 150 oM was applied to 'Patriot' bermudagrass without CA. ABA content in leaf and stolon tissues increased substantially during the first week of CA and remained relatively stable thereafter. 'Patriot' and 'Riviera' had greater ABA content and less stolon electrolyte leakage (EL) relative to 'Tifway' and 'Princess'. Expression of a 25 kDa dehydrin protein increased during CA in all four cultivars. A significant correlation was found between ABA content and freezing tolerance. Exogenously applying ABA to 'Patriot' at 50, 100, and 150 oM significantly increased endogenous ABA content and the 25 kDa dehydrin expression and reduced stolon EL. The results suggest that alteration of ABA metabolism during CA is closely associated with freezing tolerance. Selection and use of cultivars with substantial accumulation of ABA and certain dehydrins during CA or in response to exogenous ABA could improve bermudagrass persistence in transition zone climates.
机译:百慕大草的最新进展[Cynodon dactylon(L.)Pers。变种dactylon]的繁殖和文化管理实践已使其可以在美国农业部5号和6号耐寒性地区用作运动场。将这些耐寒性强的百慕大葡萄品种进一步用于过渡季节和凉爽季节的地区,则增加了冻结的可能性伤害,并需要更好地了解对冷藏和冷冻温度的生理反应。脱落酸(ABA)已显示在冷驯化(CA)期间增加,并在脱水耐受性中起作用。这项研究调查了CA期间ABA代谢和脱水素表达的变化及其与4个百慕大草品种的耐寒性的关系。对两个耐寒('Patriot'和'Riviera')和两个相对耐寒的('Tifway'和'Princess')品种分别于每天8 pC / 4 pC的夜晚进行光强为250摩尔的CA。在10小时的光周期中m-2p“ s-1持续21天,或在12小时的光周期中维持在28 pC日/ 24 pC夜。在另一项研究中,将0、50、100和150 oM的外源ABA应用于没有CA的“爱国者”百慕大。在CA的第一周,叶片和茎组织中的ABA含量大幅增加,此后保持相对稳定。与“ Tifway”和“ Princess”相比,“ Patriot”和“ Riviera”的ABA含量更高,脚电解质泄漏(EL)更少。在所有四个品种的CA中,25 kDa脱水蛋白的表达均增加。发现ABA含量与抗冻性之间存在显着相关性。在50、100和150 oM外加ABA到'Patriot'时,显着增加了内源ABA含量和25 kDa脱水蛋白表达并降低了茎EL。结果表明,CA期间ABA代谢的改变与耐寒性密切相关。在CA期间或对外源ABA的响应中,ABA的大量积累和某些脱水素的栽培品种的选择和使用可改善过渡带气候下百慕大草的持久性。

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