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对根结线虫抗性和感病的辣椒()品系具有独特的毒力特征。

has a unique virulence profile against root-knot nematode resistant and susceptible pepper () lines.

作者信息

Khanal C, Rutter W, Alam M S, Alarcon-Mendoza I

机构信息

Clemson University, Department of Plant and Environmental Sciences, 105 Collings St., Clemson, SC 29634.

USDA-ARS, U.S. Vegetable Laboratory, 2700 Savannah Hwy., Charleston, SC 29449.

出版信息

J Nematol. 2025 Mar 14;57(1):20250007. doi: 10.2478/jofnem-2025-0007. eCollection 2025 Feb.

Abstract

is a recently described species of root-knot nematode (RKN) that is very closely related to many other tropical RKN species, including Despite its close phylogenetic relationship, is distinctive from its close relatives in both its meiotic mechanism of reproduction and its documented virulence on many of the most common RKN resistance genes in cultivated peach, tomato, and pepper. To further characterize the virulence profile of , we conducted replicate screens using this nematode to infect a panel of pepper lines that carry different sets of known RKN resistance genes. We found that was virulent against all the most common RKN resistance genes, including , , and . We also found that two of these lines, PA 136 and PM 217, were highly resistant to . PA136 was previously considered to be universally susceptible to all other RKN species. Further testing of an F1 hybrid of this line confirmed this result and indicated that PA 136 contains a yet uncharacterized and potentially dominant source of species-specific resistance against . These surprising results provide additional data on the differences between and its close relatives, and identify new sources of resistance that could be used by pepper breeding programs to develop new cultivars with resistance against this nematode.

摘要

是最近描述的一种根结线虫(RKN)物种,与许多其他热带RKN物种密切相关,包括 。尽管其系统发育关系密切,但 在减数分裂繁殖机制以及对栽培桃、番茄和辣椒中许多最常见的RKN抗性基因的记录毒力方面与其近亲不同。为了进一步表征 的毒力特征,我们使用这种线虫进行了重复筛选,以感染一组携带不同已知RKN抗性基因的辣椒品系。我们发现 对所有最常见的RKN抗性基因具有毒力,包括 、 和 。我们还发现其中两个品系PA 136和PM 217对 具有高度抗性。PA136以前被认为对所有其他RKN物种普遍敏感。对该品系的F1杂种进行的进一步测试证实了这一结果,并表明PA 136含有一种尚未表征且可能占主导地位的针对 的物种特异性抗性来源。这些令人惊讶的结果提供了关于 与其近亲之间差异的更多数据,并确定了新的抗性来源,辣椒育种计划可利用这些来源培育出对这种线虫具有抗性的新品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ef5/11915053/5124704f3862/j_jofnem-2025-0007_fig_001.jpg

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