Adam L, Somerville S C
Department of Plant Biology, Carnegie Institution of Washington, Stanford, CA 94305, USA.
Plant J. 1996 Mar;9(3):341-56. doi: 10.1046/j.1365-313x.1996.09030341.x.
This paper reports on six Arabidopsis accessions that show resistance to a wild isolate of the powdery mildew pathogen, Erysiphe cichoracearum. Resistance at 7 days post-inoculation in these accessions was characterized by limited fungal growth and sporadic development of chlorotic or necrotic lesions at inoculation sites. Three accessions, Wa-1, Kas-1 and SI-0, were highly resistant, while the other accessions permitted some fungal growth and conidiation. Papilla formation was a frequent host response; however, cell death appeared to be neither a rapid nor a common response to infection. To determine the genetic basis of resistance, segregation analyses of progeny from crosses between each of the resistant accessions and Columbia (gl1), which is susceptible to the powdery mildew pathogen, were performed. For all accessions except Sl-0, resistance was conferred by a single locus. Sl-0 was unique in that two unlinked loci controlled the disease reaction phenotype. In accessions Wa-1, Kas-1, Stw-0 and Su-0, powdery mildew resistance was encoded by a semi-dominant allele. However, susceptibility was dominant to resistance in accessions Te-0 and Sl-0. Mapping studies revealed that powdery mildew resistances in Kas-1, Wa-1, Te-0, Su-0 and Stw-0 were controlled by five independent loci. This study suggests that the Arabidopsis powdery mildew disease will be a suitable model system in which to investigate powdery mildew diseases.
本文报道了六个拟南芥种质,它们对白粉病病原体菊科白粉菌的一个野生分离株表现出抗性。在接种后7天,这些种质的抗性表现为真菌生长受限,接种部位出现散发性的褪绿或坏死病斑。三个种质,Wa-1、Kas-1和SI-0,具有高度抗性,而其他种质允许真菌有一定程度的生长和分生孢子形成。乳突形成是常见的宿主反应;然而,细胞死亡似乎既不是对感染的快速反应,也不是常见反应。为了确定抗性的遗传基础,对每个抗性种质与对白粉病病原体敏感的哥伦比亚(gl1)杂交后代进行了分离分析。除Sl-0外,所有种质的抗性均由单个基因座控制。Sl-0的独特之处在于,两个不连锁的基因座控制着疾病反应表型。在Wa-1、Kas-1、Stw-0和Su-0种质中,白粉病抗性由一个半显性等位基因编码。然而,在Te-0和Sl-0种质中,感病性相对于抗性是显性的。定位研究表明,Kas-1、Wa-1、Te-0、Su-0和Stw-0中的白粉病抗性由五个独立的基因座控制。这项研究表明,拟南芥白粉病将是一个适合研究白粉病的模型系统。