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窄叶羽扇豆黑荚综合征由菜豆黄花叶病毒晚期感染引起。

Black Pod Syndrome of Lupinus angustifolius Is Caused by Late Infection with Bean yellow mosaic virus.

作者信息

Kehoe M A, Buirchell B J, Coutts B A, Jones R A C

机构信息

School of Plant Biology and Institute of Agriculture, Faculty of Science, University of Western Australia, Crawley, WA 6009, Australia; and Crop Protection and Lupin Breeding Branches, Department of Agriculture and Food Western Australia, Bentley Delivery Centre, Perth, WA 6983, Australia.

出版信息

Plant Dis. 2014 Jun;98(6):739-745. doi: 10.1094/PDIS-11-13-1144-RE.

Abstract

Black pod syndrome (BPS) causes devastating losses in Lupinus angustifolius (narrow-leafed lupin) crops in Australia, and infection with Bean yellow mosaic virus (BYMV) was suggested as a possible cause. In 2011, an end-of-growing-season survey in which L. angustifolius plants with BPS were collected from six locations in southwestern Australia was done. Tissue samples from different positions on each of these symptomatic plants were tested for BYMV and generic potyvirus by enzyme-linked immunosorbent assay and reverse-transcription polymerase chain reaction (RT-PCR). Detection was most reliable when RT-PCR with generic potyvirus primers was used on tissue taken from the main stem of the plant just below the black pods. Partial coat protein nucleotide sequences from eight isolates from BPS-symptomatic L. angustifolius plants all belonged to the BYMV general phylogenetic group. An initial glasshouse experiment revealed that mechanical inoculation of L. angustifolius plants with BYMV after pods had formed caused pods to turn black. This did not occur when the plants were inoculated before this growth stage (at first flowering) because BYMV infection caused plant death. A subsequent experiment in which plants were inoculated at eight different growth stages confirmed that BPS was only induced when L. angustifolius plants were inoculated after first flowering, when pods had formed. Thus, BYMV was isolated from symptomatic L. angustifolius survey samples, inoculated to and maintained in culture hosts, inoculated to healthy L. angustifolius test plants inducing BPS, and then successfully reisolated from them. As such, Koch's postulates were fulfilled for the hypothesis that late infection with BYMV causes BPS in L. angustifolius plants.

摘要

黑荚病(BPS)给澳大利亚的窄叶羽扇豆作物造成了毁灭性损失,有人认为感染菜豆黄花叶病毒(BYMV)可能是病因。2011年,在澳大利亚西南部六个地点进行了一项生长季末调查,收集了患有黑荚病的窄叶羽扇豆植株。通过酶联免疫吸附测定和逆转录聚合酶链反应(RT-PCR),对这些有症状植株不同部位的组织样本进行了BYMV和通用马铃薯Y病毒检测。当使用通用马铃薯Y病毒引物对取自植株主茎黑荚下方的组织进行RT-PCR检测时,检测结果最为可靠。从患有黑荚病症状的窄叶羽扇豆植株中分离出的八个分离株的部分外壳蛋白核苷酸序列均属于BYMV的一般系统发育组。初步温室试验表明,在豆荚形成后用BYMV对窄叶羽扇豆植株进行机械接种会导致豆荚变黑。而在这个生长阶段之前(初花期)对植株进行接种则不会出现这种情况,因为BYMV感染会导致植株死亡。随后的一项实验在八个不同生长阶段对植株进行接种,证实只有在窄叶羽扇豆植株初花期之后、豆荚形成时接种才会诱发黑荚病。因此,从有症状的窄叶羽扇豆调查样本中分离出BYMV,接种到培养宿主并在其中维持,再接种到健康的窄叶羽扇豆试验植株上诱发黑荚病,然后又成功地从这些植株中重新分离出该病毒。这样一来,就满足了科赫法则,即证明了BYMV晚期感染会导致窄叶羽扇豆植株患黑荚病这一假说。

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