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Aluminum Tolerance Genes on the Short Arm of Chromosome 3RAre Linked to Organic Acid Release in Triticale

机译:染色体3R短臂上的铝耐受基因与黑小麦中的有机酸释放有关

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摘要

Triticale, a hybrid between wheat and rye, shows a high degree of Al tolerance that is inherited from rye, but the mechanisms of high Al tolerance in both rye and triticale are unknown. We found that the short arm of chromosome 3R carries genes necessary for Al tolerance in triticale (× Triticosecale Wittmark cv Currency). Detailed comparative studies with a 3DS.3RL translocation line (ST22) and a non-substitution line (ST2) were conducted. Root elongation was similarly inhibited by Al in ST2 and ST22 during the first 12 h of Al treatment, but more strongly in ST22 than in ST2 at 18 h and thereafter. The root inhibition induced by other metals (Cu, Cd, and La) was similar between ST2 and ST22, suggesting that the action of the genes for Al tolerance on the short arm of triticale chromosome 3R is highly specific to Al. A 2-fold larger amount of malate and citrate was released from the roots of ST2 than from ST22 at 12 and 18 h after Al treatment, respectively. The marked lag phase in the inhibition of root elongation and the release of organic acids implies that theexpression of genes on the short arm of triticale chromosome 3R isinduced by Al, and that these genes are necessary for the release oforganic acids.
机译:黑小麦(Triticale)是小麦和黑麦之间的杂种,显示出高度的耐铝性,其继承自黑麦,但黑麦和黑小麦中高铝耐性的机理尚不清楚。我们发现3R染色体的短臂携带了小黑麦(×Triticosecale Wittmark cv Currency)中的铝耐受所需的基因。使用3DS.3RL易位系(ST22)和非替代系(ST2)进行了详细的比较研究。在Al处理的前12小时,ST2和ST22中的Al相似地抑制了根伸长,但在18 h及其后,ST22中的根伸长比ST2中的更强烈。 ST2和ST22之间由其他金属(Cu,Cd和La)诱导的根抑制相似,这表明小黑小麦3R染色体短臂上的Al耐性基因的作用对Al具有高度特异性。在铝处理后12小时和18小时,从ST2的根中释放出的苹果酸和柠檬酸盐的量分别比从ST22中释放出2倍。根伸长抑制和有机酸释放明显滞后,表明黑小麦3R染色体短臂上的基因表达为由铝诱导,并且这些基因对于释放有机酸。

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