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植株高度影响小麦镰刀菌根腐病的严重程度。

Plant height affects Fusarium crown rot severity in wheat.

机构信息

CSIRO Plant Industry, 306 Carmody Road, St. Lucia, QLD 4067, Australia.

出版信息

Phytopathology. 2010 Dec;100(12):1276-81. doi: 10.1094/PHYTO-05-10-0142.

Abstract

Effects of plant height on Fusarium crown rot (FCR) disease severity were investigated using 12 pairs of near-isogenic lines (NILs) for six different reduced height (Rht) genes in wheat. The dwarf isolines all gave better FCR resistance when compared with their respective tall counterparts, although the Rht genes involved in these NILs are located on several different chromosomes. Treating plants with exogenous gibberellin increased FCR severity as well as seedling lengths in all of the isolines tested. Analysis of the expression of several defense genes with known correlation with resistance to FCR pathogens between the Rht isolines following FCR inoculation indicated that the better resistance of the dwarf isolines was not due to enhanced defense gene induction. These results suggested that the difference in FCR severity between the tall and dwarf isolines is likely due to their height difference per se or to some physiological and structural consequences of reduced height. Thus, caution should be taken when considering to exploit any FCR locus located near a height gene.

摘要

利用 12 对不同矮秆(Rht)基因的近等基因系(NILs)研究了株高对镰刀菌根腐病(FCR)严重度的影响。与各自的高秆对照相比,所有矮秆分离系均表现出更好的 FCR 抗性,尽管这些 NILs 中涉及的 Rht 基因位于不同的染色体上。用外源赤霉素处理植物会增加所有测试的分离系的 FCR 严重度和幼苗长度。对 FCR 接种后 Rht 分离系中与 FCR 病原体抗性相关的几个防御基因的表达分析表明,矮秆分离系的更好抗性不是由于防御基因诱导增强所致。这些结果表明,高秆和矮秆分离系之间 FCR 严重度的差异可能是由于它们的株高差异本身,或由于矮化引起的某些生理和结构后果。因此,在考虑利用位于高度基因附近的任何 FCR 基因座时应谨慎。

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