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Mutants of durum wheat with alterations in tissue affinity for strongly bound water

机译:硬粒小麦的突变体,其组织结合力对强结合水的改变

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摘要

Mutants of Triticum durum Desf. var Trinakria were identified by screening in the field, pedigree M5 collections from sodium azide (SA) treated seeds, for changes in leaf affinity for strongly bound water. This was estimated applying a new method that consists of a simplified analysis of the differences in water adsorbed by the leaf segments at two temperatures. A total of ten M5 lines were identified and tested roy differences for water sorbed (DWS) in a growth chamber, under well watered and water deficit conditions. Subsequently, three mutant lines were isolated that had DWS values greater than Trinakria and a mutant line that expressed the lowest DWS values under well watered conditions and very high DWS values under drought stress. With the exception of this line, whose affinity for water was drought-inducible, there was a high degree of correlation between tissue affinity for water expressed in the field and in the growth chamber. These findings suggest that the trait is genetically transmitted and that the screening procedure is robust. The availability of the mutants should provide new opportunity to investigate the genetic and physiologic basis of bound water.
机译:硬粒小麦的突变体。通过在田间筛选叠氮化钠(SA)处理过的种子的系谱M5集合,确定叶片Trinakria变种对叶片与强结合水的亲和力的变化。使用一种新方法进行了估算,该方法包括对两种温度下叶段吸附的水分差异的简化分析。总共确定了10条M5品系,并在浇水充足和缺水的条件下测试了生长室内吸水率(DWS)的Roy差异。随后,分离出三个突变系,其DWS值大于特里纳克里亚,以及一个突变系,其在水源充足的条件下表现出最低的DWS值,而在干旱胁迫下表现出很高的DWS值。除了该品系对水的亲和力是干旱诱导的以外,在田间和生长室中表达的对水的组织亲和力之间具有高度相关性。这些发现表明该性状是通过遗传途径传播的,并且筛选程序是可靠的。突变体的可用性应提供新的机会来研究结合水的遗传和生理基础。

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