Drought Tolerance of European Barley (Hordeum Vulgare L.) Varieties

Ildiko Schmidthoffer, L. Szilák, P. Molnar, P. Csontos, A. Skribanek
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引用次数: 10

Abstract

Abstract Drought is one of the major abiotic stresses that frequently causes severe loss in crop yield worldwide. Laboratory predictors of field drought tolerance could significantly increase the effectiveness of existing plant breeding programs. In earlier field experiments, drought tolerance of 22 cultivated barley varieties has already been quantified. In order to develop laboratory markers of drought sensitivity, field drought tolerance data were correlated with parameters obtained in laboratory tests. Root and shoot length and weight were measured on control and PEG-treated (a simple laboratory drought model) seedlings. Significant correlations were found among root growth, shoot weight in laboratory stress conditions and field drought tolerance. Interestingly, a negative correlation was found between root length of the untreated seedlings and drought tolerance. Laboratory Drought Tolerance Index (DTI) was introduced as the linear combination of those laboratory parameters which were correlated with field drought tolerance. DTI showed good predictive value (r = 0.57, p < 0.05) for drought tolerance in field experiments and we suggest it for preselection of drought tolerant barley breeding lines and for the characterization of drought tolerance in general.
欧洲大麦的耐旱性研究品种
干旱是世界范围内经常造成严重作物减产的主要非生物胁迫之一。田间耐旱性的实验室预测可以显著提高现有植物育种计划的有效性。在早期的田间试验中,22个栽培大麦品种的耐旱性已经被量化。为了开发干旱敏感性的实验室标记,田间耐旱性数据与实验室试验中获得的参数相关联。测定了对照和peg处理(简单实验室干旱模型)幼苗的根、茎长和重量。室内胁迫条件下根系生长、茎重与田间抗旱性呈显著相关。有趣的是,未经处理的幼苗根系长度与耐旱性呈负相关。引入实验室抗旱指数(DTI)作为与田间抗旱相关的实验室参数的线性组合。在大田试验中,DTI对大麦耐旱性具有较好的预测价值(r = 0.57, p < 0.05),可用于大麦耐旱性选育和一般耐旱性鉴定。
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