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在耐蔓绿绒品种中,南瓜花叶病毒症状严重程度增加与 P3 蛋白的点突变有关,并且与在感病植物上的相对适合度丧失有关。

Increase in Zucchini yellow mosaic virus Symptom Severity in Tolerant Zucchini Cultivars Is Related to a Point Mutation in P3 Protein and Is Associated with a Loss of Relative Fitness on Susceptible Plants.

出版信息

Phytopathology. 2003 Dec;93(12):1478-84. doi: 10.1094/PHYTO.2003.93.12.1478.

Abstract

ABSTRACT Zucchini yellow mosaic virus (ZYMV, Potyvirus) is a very damaging cucurbit virus worldwide. Interspecific crosses with resistant Cucurbita moschata have led to the release of "resistant" zucchini squash (C. pepo) F(1) hybrids. However, although the resistance is almost complete in C. moschata, the commercial C. pepo hybrids are only tolerant. ZYMV evolution toward increased aggressiveness on tolerant hybrids was observed in the field and was obtained experimentally. Sequence comparisons and recombination experiments revealed that a point mutation in the P3 protein of ZYMV was enough to induce tolerance breaking. Competition experiments were performed between quasi-isogenic wild-type, and aggressive variants of ZYMV distinguished by monoclonal antibodies. The aggressive mutants were more fit than wild-type strains in mixed infections of tolerant zucchini, but they presented a drastic fitness loss in mixed infections of susceptible zucchini or melon. Thus, the ability to induce severe symptoms in tolerant zucchini is related to a genetic load in susceptible zucchini, but also on other susceptible hosts. This represents the first quantitative study of the fitness cost associated with tolerance breaking for a plant virus. Thus, although easily broken, the tolerance might prove durable in some conditions if the aggressive variants are counterselected in susceptible crops.

摘要

摘要

南瓜黄花叶病毒(ZYMV,马铃薯 Y 病毒属)是一种对全世界葫芦科作物具有严重危害性的病毒。与抗性的南瓜属作物种间杂交,产生了“抗性”的西葫芦(Cucurbita pepo)F1 杂种。然而,尽管在南瓜属中抗性几乎是完全的,但商业上的西葫芦杂交种只是具有耐性。在田间和实验中观察到 ZYMV 对耐性杂种的攻击性增强的进化。序列比较和重组实验表明,ZYMV P3 蛋白的一个点突变足以引起耐性突破。通过单克隆抗体区分的准同基因野生型和攻击性 ZYMV 变体之间进行了竞争实验。在耐性西葫芦的混合感染中,攻击性突变体比野生型菌株更具适应性,但在易感西葫芦或瓜的混合感染中,它们的适应性急剧下降。因此,在耐性西葫芦中诱导严重症状的能力与易感西葫芦中的遗传负荷有关,但也与其他易感宿主有关。这代表了对植物病毒耐性突破相关适应性成本的首次定量研究。因此,如果在易感作物中选择攻击性变体,尽管容易突破,但耐性可能在某些情况下具有持久性。

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