Buell C R, Somerville S C
Department of Plant Biology, Carnegie Institution of Washington, Stanford, CA 94305, USA.
Plant J. 1997 Jul;12(1):21-9. doi: 10.1046/j.1365-313x.1997.12010021.x.
Infiltration of the Arabidopsis thaliana accession Landsberg erecta (Ler) with Xanthomonas campestris pv campestris isolate 2D520 results in extensive necrosis and limited chlorosis within 5-6 days post-inoculation (d.p.i.), which can lead to systemic necrosis within 23 d.p.i. in contrast, the accession Columbia (Col) remains asymptomatic after infiltration. Although both accessions support bacterial growth, 5-28-fold more bacteria are present in Ler than in Col leaf tissue. Inheritance studies indicate that three independent, dominant or partially dominant, nuclear genes condition resistance to X. c. campestris 2D520. The major gene, termed RXC2, conditions monogenic resistance to X. c.; campestris and was mapped to a 5.5 cM interval of chromosome V. Segregation data indicate that the locus RXC3 in conjunction with RXC4 confers digenic resistance to X. c. campestris. The combined action of RXC3 and RXC4 is correlated with a suppression of in planta bacterial levels and a suppression of symptoms relative to Ler. The RXC3 + RXC4-mediated resistance is novel in that although the Col allele of RXC4 contributes positively to resistance, it is the Ler and not the Col allele of RXC3 that contributes positively to resistance. RXC3 was mapped to the bottom arm of chromosome V in a 2.7 cM interval within the major recognition gene complex MRC-J, a cluster of genes involved in disease resistance. RXC4 was mapped to a 12 cM interval on chromosome II that also contains RXC1, a gene conferring tolerance to X. c. campestris.
用野油菜黄单胞菌野油菜致病变种分离株2D520浸润拟南芥生态型Landsberg erecta(Ler),在接种后5 - 6天会导致广泛坏死和有限的黄化,这可能在接种后23天内导致系统性坏死。相比之下,生态型Columbia(Col)在浸润后仍无症状。尽管这两个生态型都支持细菌生长,但Ler叶组织中的细菌数量比Col多5 - 28倍。遗传研究表明,三个独立的、显性或部分显性的核基因决定了对野油菜黄单胞菌野油菜致病变种2D520的抗性。主要基因RXC2决定了对野油菜黄单胞菌野油菜致病变种的单基因抗性,并被定位到第五条染色体的5.5 cM区间。分离数据表明,位点RXC3与RXC4共同赋予对野油菜黄单胞菌野油菜致病变种的双基因抗性。RXC3和RXC4的联合作用与植物体内细菌水平的抑制以及相对于Ler的症状抑制相关。RXC3 + RXC4介导的抗性是新颖的,因为尽管RXC4的Col等位基因对抗性有正向贡献,但对抗性有正向贡献的是RXC3的Ler等位基因而非Col等位基因。RXC3被定位到第五条染色体的短臂上,位于主要识别基因复合体MRC - J内的2.7 cM区间,MRC - J是一组参与抗病性的基因簇。RXC4被定位到第二条染色体上的12 cM区间,该区间也包含RXC1,一个赋予对野油菜黄单胞菌野油菜致病变种耐受性的基因。