首页> 外文期刊>Plant Disease >Resistance Quantitative Trait Loci qMi-C11 and qMi-C14 in Cotton Have Different Effects on the Development of Meloidogyne incognita, the Southern Root-Knot Nematode
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Resistance Quantitative Trait Loci qMi-C11 and qMi-C14 in Cotton Have Different Effects on the Development of Meloidogyne incognita, the Southern Root-Knot Nematode

机译:棉花抗性定量特性基因座QMI-C11和QMI-C14对Meloidogyne Incognita的开发,南方根结线虫的发展不同

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摘要

Quantitative trait loci (QTLs) qMi-Cll and qMi-C14 impart a high level of resistance to Meloidogyne incognita in cotton. Breeders had previously backcrossed both QTLs into the susceptible Coker 201 to create the highly resistant M-120 RNR, and we crossed Coker 201 and M-120 RNR to create near-isogenic lines with either qMi-Cll or qMi-C14. Previous work suggests different modes of action for qMi-Cll and qMi-C14. To document individual and combined effects of the QTLs on nematode development and reproduction, Coker 201 (neither QTL), M-120 RNR (both QTLs), CHI 1 near isoline (qMi-Cll), and CH14 near isoline (qMi-C14) were inoculated with M. incognita. At 4, 8, 12, 16, 20, 25, and 30 days after inoculation (DAI), roots were stained to observe nematodedevelopmental stages (second-stage juvenile [J2], swollen second-stage juvenile [SJ2], third-stage juvenile [J3], fourth-stage juvenile [J4], and female), and the number of galls was counted. At 20,25,30, and 40 DAI, M. incognita eggs were harvested andcounted. At 30 DAI,80% of the nematodes on Coker 201 were female compared with 50,40, and 33% females on CH14, CH11, and M-120 RNR, respectively, and greater proportions of nematodes remained in J2 in M-120 RNR (41%), CH11 (58%), and CH14 (27%) than in Coker 201 (9%). Morenematodes progressed to J3 or J4 on Coker 201 and CH14 than on CH11 or M-120 RNR. Coker 201 and CH14 had more galls than M-120 RNR. Coker 201 had more eggs than the other genotypes at 30 DAI. Nematode development beyond J2 or SJ2 was significantly reduced by qMi-Cl 1, and development beyond J3 or J4 was significantly reduced by qMi-C14. This study confirms that qMi-Cll and qMi-Cl4 act at different times and have different effects on the development of M. incognita, and therefore, they have different modes of action.
机译:定量性状基因座(QTLS)QMI-CLL和QMI-C14赋予棉花中的高水平耐药性。育种者以前已经将QTL的QTLS兼出了易感型Coker 201以创建高度抗性M-120 RNR,并且我们交叉Coker 201和M-120RNR以产生QMI-CLL或QMI-C14的近似同学线。以前的工作表明QMI-CLL和QMI-C14的不同动作模式。要记录QTL对线虫开发和繁殖的单个和组合效果,Coker 201(QTL),M-120 RNR(QTLS),CHI 1附近的ISOLALE(QMI-CLL),CH14附近(QMI-C14)用M.Inmognita接种。接种(DAI)后的4,8,12,16,20,25和30天,染色染色以观察Nematodevelopmental阶段(第二阶段幼年[J2],肿胀的第二阶段少年[SJ2],第三阶段少年[J3],第四阶段少年[J4]和女性),并计算胆量。在20,25,30和40岁,达到40例,米皮西亚鸡蛋被收获。在30次Dai,80%的Coker 201上的线虫与50,40和CH14,CH11和M-120 RNR上的33%雌性,并且在M-120 RNR中的J2中留下了更大比例的线虫(41%),CH11(58%)和CH14(27%)比焦化201(9%)。 Morenematodes在Coker 201和CH14上进行到J3或J4而不是CH11或M-120 RNR。 Coker 201和CH14比M-120 RNR更多的胆量。 Coker 201具有比30 DAI的其他基因型更多的卵子。 QMI-CL 1超出J2或SJ2之外的线虫发展显着降低,QMI-C14明显减少了J3或J4之外的开发。该研究证实,QMI-CLL和QMI-CL4在不同时间作用,对M. Incognita的发育产生不同的影响,因此,它们具有不同的作用方式。

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