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小麦高温抗条锈性的组织病理学和超微结构变化
引用本文:王保通,商鸿生.小麦高温抗条锈性的组织病理学和超微结构变化[J].植物保护学报,2003,30(2):119-124.
作者姓名:王保通  商鸿生
作者单位:西北农林科技大学教育部植保资源与病虫害综合治理重点开放实验室,杨凌 712100
基金项目:国家自然科学基金(39170511)
摘    要:为了进一步弄清高温抗条锈病的抗性机制,利用荧光显微技术和电镜技术研究了高温抗条锈性品种小偃6号的组织病理学特征和超微结构变化。结果表明:在高温抗条锈性表达时,病斑周围寄主细胞发生坏死和木质化,在高温处理24h,坏死细胞和木质化细胞数分别为初期的17.1和23.8倍。从超微结构观察,在高温抗条锈性表达时,侵染点附近寄主细胞壁表面凹凸不平、粗糙,细胞壁的厚度也较健康细胞厚。之后,细胞内的细胞器消解,仅有沿细胞壁分布的原生质和残存的一些颗粒状物质。

关 键 词:小麦  高温抗条锈性  组织病理学  超微结构  抗病性
收稿时间:2001/1/25 0:00:00
修稿时间:2001年1月25日

Histopathology and ultrastructure of wheat in expression of high-temperature resistance to stripe rust
Wang Baotong and Shang Hongsheng.Histopathology and ultrastructure of wheat in expression of high-temperature resistance to stripe rust[J].Acta Phytophylacica Sinica,2003,30(2):119-124.
Authors:Wang Baotong and Shang Hongsheng
Affiliation:Key Laboratory of Plant Protection and Pest Management, Ministry of Education, Northwest Sci-Tech University of Agriculture and Forestry, Yangling 712100, China and Key Laboratory of Plant Protection and Pest Management, Ministry of Education, Northwest Sci-Tech University of Agriculture and Forestry, Yangling 712100, China
Abstract:The characters of histopathology and the changes of ultrastructure of wheat leaves of Xi-aoyan No.6 were observed with fluorescence microscopy and electron microscopy to understand the mechanism of wheat high-temperature resistance to stripe rust. The result showed that the host cells necrosised and lignified in expression of wheat high-temperature resistance to stripe rust, and then the extension of hyphal in host cells was restrained. The necrosised and lignified cells increased 17.1 and 23.8 times respectively nindividually more than the original ones after 24 hours high temperature treatment. It was observed that the host cell wall became thicker than normal one, and the surface of the cell wall changed into roughness under electron microscopy. Afterwards the organelles in the cell vanished while protoplasm near the cell wall and some small substances as granule still existed.
Keywords:wheat  high-temperature resistance  histopathology  ultrastructure
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