首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gene induction and repression by salt treatment in roots of the salinity-sensitive Chinese Spring wheat and the salinity-tolerant Chinese Spring × Elytrigia elongata amphiploid
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Gene induction and repression by salt treatment in roots of the salinity-sensitive Chinese Spring wheat and the salinity-tolerant Chinese Spring × Elytrigia elongata amphiploid

机译:盐分敏感的春小麦和耐盐的春×长春两倍体根系的盐诱导基因诱导和抑制

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摘要

An artificial amphiploid from a cross between salinity-sensitive bread wheat cultivar Chinese Spring and highly tolerant Elytrigia elongata (Host) Nevski (= Agropyron elongatum Host) shows enhanced salinity tolerance relative to Chinese Spring. Poly(A)+ RNA was isolated from roots, expanding leaves, and old leaves from amphiploid and Chinese Spring plants prior to and after acclimation to high levels of NaCl in solution cultures. Two-dimensional gel electrophoresis of the in vitro translation products was used to compare these mRNA populations. The amphiploid had 10 mRNA species induced or enhanced and 8 species repressed in root tissue during acclimation to saline growth conditions. These 18 transcripts affected by salt treatment were also detected in wheat roots, but only 4 of these were similarly regulated. In Chinese Spring the acclimation to saline stress resulted in a marked change in the level of expression of 34 transcripts in root tissue; of these, 26 were detected in the amphiploid and only 6 were regulated as in the amphiploid. No differences were seen in gene expression between salt-treated and control plants in leaves and meristematic crowns and unexpanded leaves of the amphiploid.
机译:来自对盐分敏感的面包小麦品种中国春和高度耐受的长寿麦草(寄主)Nevski(=长草农杆菌)之间的杂交后代的人工二倍体显示出相对于中国春天更高的盐分耐受性。在溶液培养中适应高浓度NaCl之前和之后,从两倍体和中国春植物的根,扩张叶和老叶中分离出Poly(A) + RNA。体外翻译产物的二维凝胶电泳用于比较这些mRNA群体。在适应盐水生长条件期间,根系中的二倍体具有10种被诱导或增强的mRNA种类,而8种被抑制。在小麦根中也检测到了这18个受盐处理的转录本,但其中只有4个受到类似的调控。在中国春季,盐胁迫的适应导致根组织中34个转录本的表达水平发生了显着变化。其中,在二倍体中检测到26种,而与六倍体中一样,只有6种受到调控。盐处理过的植物和对照植物的叶片,分生冠和两倍体未膨大叶片之间的基因表达均未见差异。

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