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本文引用的文献

1
Specialized Feeding Behavior Influences Both Ecological Specialization and Assortative Mating in Sympatric Host Races of Pea Aphids.特殊取食行为影响豌豆蚜同域寄主种群中的生态特化和选型交配。
Am Nat. 2000 Dec;156(6):606-621. doi: 10.1086/316991.
2
QTL analysis of trichome-mediated insect resistance in potato.马铃薯茸毛介导的抗虫性的数量性状位点分析。
Theor Appl Genet. 1994 Mar;87(8):973-87. doi: 10.1007/BF00225792.
3
Genotype x environment interaction in QTL analysis of an intervarietal almond cross by means of genetic markers.利用遗传标记分析不同品种扁桃杂交后代 QTL 的基因型与环境互作。
Theor Appl Genet. 1994 Oct;89(2-3):358-64. doi: 10.1007/BF00225167.
4
QTL analysis of pest resistance in the wild tomato Lycopersicon pennellii: QTLs controlling acylsugar level and composition.野生番茄 Lycopersicon pennellii 抗虫性的 QTL 分析:控制酰基糖水平和组成的 QTL。
Theor Appl Genet. 1996 May;92(6):709-18. doi: 10.1007/BF00226093.
5
Volatile organic compound emissions induced by the aphid Myzus persicae differ among resistant and susceptible peach cultivars and a wild relative.烟粉虱诱导的挥发性有机化合物排放在抗桃和感桃品种及其野生近缘种间存在差异。
Tree Physiol. 2010 Oct;30(10):1320-34. doi: 10.1093/treephys/tpq072. Epub 2010 Aug 25.
6
Host plant resistance to aphids in cultivated crops: genetic and molecular bases, and interactions with aphid populations.作物中蚜虫的寄主植物抗性:遗传和分子基础,以及与蚜虫种群的相互作用。
C R Biol. 2010 Jun-Jul;333(6-7):566-73. doi: 10.1016/j.crvi.2010.04.003. Epub 2010 May 15.
7
Durability of plant major resistance genes to pathogens depends on the genetic background, experimental evidence and consequences for breeding strategies.植物主要抗性基因对病原体的持久性取决于遗传背景、实验证据以及对育种策略的影响。
New Phytol. 2009;183(1):190-199. doi: 10.1111/j.1469-8137.2009.02827.x. Epub 2009 Apr 1.
8
The gene controlling the indole glucosinolate modifier1 quantitative trait locus alters indole glucosinolate structures and aphid resistance in Arabidopsis.控制吲哚硫代葡萄糖苷修饰因子1数量性状位点的基因改变了拟南芥中吲哚硫代葡萄糖苷的结构和对蚜虫的抗性。
Plant Cell. 2009 Mar;21(3):985-99. doi: 10.1105/tpc.108.063115. Epub 2009 Mar 17.
9
Ecological genomics of Boechera stricta: identification of a QTL controlling the allocation of methionine- vs branched-chain amino acid-derived glucosinolates and levels of insect herbivory.狭叶博伊氏芥的生态基因组学:一个控制甲硫氨酸衍生与支链氨基酸衍生硫代葡萄糖苷分配以及昆虫取食水平的数量性状位点的鉴定
Heredity (Edinb). 2009 May;102(5):465-74. doi: 10.1038/hdy.2009.12. Epub 2009 Feb 25.
10
Molecular sabotage of plant defense by aphid saliva.蚜虫唾液对植物防御的分子破坏作用。
Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10536-41. doi: 10.1073/pnas.0703535104. Epub 2007 Jun 6.

影响桃树上桃蚜取食行为和性能的寄主植物抗性 QTL 的共定位。

Co-localisation of host plant resistance QTLs affecting the performance and feeding behaviour of the aphid Myzus persicae in the peach tree.

机构信息

INRA, UR 1115 Plantes et Systèmes de culture Horticoles, Domaine Saint Paul, Avignon Cedex, France.

出版信息

Heredity (Edinb). 2012 Mar;108(3):292-301. doi: 10.1038/hdy.2011.74. Epub 2011 Sep 7.

DOI:10.1038/hdy.2011.74
PMID:21897441
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3282398/
Abstract

The architecture and action of quantitative trait loci (QTL) contributing to plant resistance mechanisms against aphids, the largest group of phloem-feeding insects, are not well understood. Comparative mapping of several components of resistance to the green peach aphid (Myzus persicae) was undertaken in Prunus davidiana, a wild species related to peach. An interspecific F(1) population of Prunus persica var. Summergrand × P. davidiana clone P1908 was scored for resistance (aphid colony development and foliar damage) and 17 aphid feeding behaviour traits monitored by means of the electrical penetration graph technique. Seven resistance QTLs were detected, individually explaining 6.1-43.1% of the phenotypic variation. Consistency was shown over several trials. Nine QTLs affecting aphid feeding behaviour were identified. All resistance QTLs except one co-located with QTLs underlying aphid feeding behaviour. A P. davidiana resistance allele at the major QTL was associated with drastic reductions in phloem sap ingestion by aphids, suggesting a phloem-based resistance mechanism. Resistance was also positively correlated with aphid salivation into sieve elements, suggesting an insect response to restore the appropriate conditions for ingestion after phloem occlusion. No significant QTL was found for traits characterising aphid mouthpart activity in plant tissues other than phloem vessels. Two QTLs with effects on aphid feeding behaviour but without effect on resistance were identified. SSR markers linked to the main QTLs involved in resistance are of potential use in marker-assisted selection for aphid resistance. Linking our results with the recent sequencing of the peach genome may help clarify the physiological resistance mechanisms.

摘要

定量性状基因座(QTL)在植物抗蚜机制中的结构和作用尚不清楚,蚜虫是最大的韧皮部取食昆虫群体。本研究在与桃亲缘关系密切的野生种李属扁桃中,对几种抗绿桃蚜(Myzus persicae)的抗性成分进行了比较作图。对李属栽培种‘Summergrand’×扁桃杂种 F1 群体进行了抗蚜性(蚜虫群体发育和叶片损伤)和 17 种蚜虫取食行为性状的评分,通过电穿透图技术监测。共检测到 7 个抗性 QTL,分别解释了 6.1-43.1%的表型变异。在多次试验中均表现出一致性。鉴定出 9 个影响蚜虫取食行为的 QTL。除一个外,所有的抗性 QTL 都与蚜虫取食行为的 QTL 共定位。主要 QTL 上的李属扁桃抗性等位基因与蚜虫对韧皮部汁液的摄取量急剧减少有关,表明存在韧皮部抗性机制。抗性与蚜虫向筛管中唾液的分泌呈正相关,表明昆虫对恢复适当的取食条件的反应,以弥补韧皮部阻塞。在韧皮部以外的植物组织中,没有发现与蚜虫口器活动特征相关的显著 QTL。鉴定出 2 个对蚜虫取食行为有影响但对抗性没有影响的 QTL。与抗性相关的主要 QTL 相关的 SSR 标记具有在蚜虫抗性的标记辅助选择中的潜在用途。将我们的结果与最近对桃基因组的测序联系起来,可能有助于阐明生理抗性机制。