Department of Entomology and Plant Pathology, The University of Tennessee, Knoxville, TN 37996, USA.
Mol Plant Microbe Interact. 2013 Feb;26(2):203-15. doi: 10.1094/MPMI-06-12-0156-R.
The complex Rsv1 locus in soybean plant introduction (PI) 'PI96983' confers extreme resistance (ER) against Soybean mosaic virus (SMV) strain N but not SMV-G7 and SMV-G7d. Both the SMV helper-component proteinase (HC-Pro) and P3 cistrons can serve as avirulence factors recognized by Rsv1. To understand the genetics underlying recognition of the two cistrons, we have utilized two soybean lines (L800 and L943) derived from crosses between PI96983 (Rsv1) and Lee68 (rsv1) with distinct recombination events within the Rsv1 locus. L800 contains a single PI96983-derived member (3gG2) of an Rsv1-associated subfamily of nucleotide-binding leucine-rich repeat (NB-LRR) genes. In contrast, although L943 lacks 3gG2, it contains a suite of five other NB-LRR genes belonging to the same family. L800 confers ER against SMV-N whereas L943 allows limited replication at the inoculation site. SMV-N-derived chimeras containing HC-Pro from SMV-G7 or SMV-G7d gained virulence on L943 but not on L800 whereas those with P3 replacement gained virulence on L800 but not on L943. In reciprocal experiments, SMV-G7- and SMV-G7d-derived chimeras with HC-Pro replacement from SMV-N lost virulence on L943 but retained virulence on L800 whereas those with P3 replacement lost virulence on L800 while remaining virulent on L943. These data demonstrate that distinct resistance genes at the Rsv1 locus, likely belonging to the NB-LRR class, mediate recognition of HC-Pro and P3.
大豆植物引种(PI)'PI96983'中的复杂 Rsv1 基因座赋予其对大豆花叶病毒(SMV)N 株系的极端抗性(ER),但对 SMV-G7 和 SMV-G7d 株系没有抗性。SMV 辅助蛋白酶(HC-Pro)和 P3 顺式元件都可以作为被 Rsv1 识别的无毒因子。为了了解识别这两个顺式元件的遗传基础,我们利用了两个源自 PI96983(Rsv1)和 Lee68(rsv1)杂交的大豆品系(L800 和 L943),它们在 Rsv1 基因座内具有不同的重组事件。L800 含有一个源自 PI96983 的 Rsv1 相关核苷酸结合亮氨酸重复(NB-LRR)基因亚家族的单一成员(3gG2)。相比之下,虽然 L943 缺乏 3gG2,但它含有一套属于同一家族的另外五个 NB-LRR 基因。L800 赋予对 SMV-N 的 ER 抗性,而 L943 则允许在接种部位进行有限的复制。含有来自 SMV-G7 或 SMV-G7d 的 HC-Pro 的 SMV-N 嵌合体在 L943 上获得了毒力,但在 L800 上没有获得毒力,而含有 P3 替换的嵌合体在 L800 上获得了毒力,但在 L943 上没有获得毒力。在互反实验中,含有来自 SMV-N 的 HC-Pro 替换的 SMV-G7 和 SMV-G7d 嵌合体在 L943 上失去了毒力,但在 L800 上仍保持毒力,而含有 P3 替换的嵌合体在 L800 上失去了毒力,但在 L943 上仍保持毒力。这些数据表明,Rsv1 基因座上的不同抗性基因,可能属于 NB-LRR 类,介导对 HC-Pro 和 P3 的识别。