Galeng-Lawilao Judith, Kumar Arvind, De Waele Dirk
Laboratory of Tropical Crop Improvement, Department of Biosystems, Faculty of Bioscience Engineering, University of Leuven, Willem de Croylaan 42, 3001, Leuven, Belgium.
International Rice Research Rice Institute (IRRI), Dapo Box 7777, Metro Manila, Philippines.
BMC Genet. 2018 Aug 6;19(1):53. doi: 10.1186/s12863-018-0656-1.
The root-knot nematode Meloidogyne graminicola is an obligate biotrophic pathogen considered to be the most damaging nematode species that causes significant yield losses to upland and rainfed lowland rice production in South and Southeast Asia. Mapping and identification of quantitative trait loci (QTL) for resistance to and tolerance for M. graminicola may offer a safe and economic management option to farmers. In this study, resistance to and tolerance for M. graminicola in Asian rice (Oryza sativa L.) were studied in a mapping population consisting of 300 recombinant inbred lines (RILs) derived from IR78877-208-B-1-2, an aerobic rice genotype with improved resistance to and tolerance for M. graminicola, and IR64, a popular, high-yielding rice mega-variety susceptible to M. graminicola. RILs were phenotyped for resistance and tolerance in the dry seasons of 2012 and 2013. QTL analysis was performed using 131 single nucleotide polymorphism (SNP) and 33 simple sequence repeat (SSR) markers.
Three QTLs with main effects on chromosomes 4 (qMGR), 7 (qMGR) and 9 (qMGR) and two epistatic interactions (qMGR/ qMGR and qMGR/ qMGR) associated with nematode reproduction that were consistent in the two seasons were detected. A QTL affecting root galling was found on chromosomes 4 (qGR) and 8 (qGR), and QTLs for nematode tolerance were found on chromosomes 5 (qYR) and 11 (qYR). These QTLs were consistent in both seasons. A QTL for grain yield was found on chromosome 10 (qGYLD), a QTL affecting filled grains per panicle was detected on chromosome 11 (qFG) and a QTL for fresh root weight was found on chromosomes 2 (qFRWt), 8 (qFRWt) and 12 (qFRWt) in both seasons. The donor of the alleles for qMGR, qMGR, qMGR, qGR, qGR, qYR and qFRWt was IR78877-208-B-1-2, whereas for qYR, qGYLD and qFG, qFRWt and qFRWt was IR64. Lines having favorable alleles for resistance, tolerance and yield provided better yield under nematode-infested conditions and could be a starting point of marker-assisted breeding (MAB) for the improvement of M. graminicola resistance and tolerance in Asian rice.
This study identified a total of 12 QTLs with main effects and two epistatic interactions in the 1st season and 2nd season related to M. graminicola resistance and tolerance, and other agronomic traits such as plant yield, percentage of filled grains, and fresh and dry root weight. Rice genotypes that have the favorable alleles for resistance (qMGR, qMGR, qMGR, qGR, qGR) and tolerance (qYR, and qYR,) QTLs, and which are either resistant or partially resistant and tolerant, were also selected. These selected genotypes and the identified QTLs are vital information in designing MAB for the improvement of high-yielding rice genotypes but are susceptible to M. graminicola infection.
根结线虫稻根结线虫是一种专性活体营养型病原体,被认为是对南亚和东南亚的旱稻和雨养低地水稻生产造成严重产量损失的最具破坏性的线虫物种。绘制和鉴定对稻根结线虫的抗性和耐受性的数量性状位点(QTL)可能为农民提供一种安全且经济的管理选择。在本研究中,在一个由300个重组自交系(RIL)组成的作图群体中研究了亚洲栽培稻(Oryza sativa L.)对稻根结线虫的抗性和耐受性,这些重组自交系来源于IR78877 - 208 - B - 1 - 2(一种对稻根结线虫具有改良抗性和耐受性的旱稻基因型)和IR64(一个受欢迎的、高产的、对稻根结线虫敏感的水稻超级品种)。在2012年和2013年旱季对RIL进行了抗性和耐受性表型分析。使用131个单核苷酸多态性(SNP)和33个简单序列重复(SSR)标记进行了QTL分析。
检测到3个对染色体4(qMGR)、7(qMGR)和9(qMGR)有主要影响的QTL以及2个与线虫繁殖相关的上位性互作(qMGR/qMGR和qMGR/qMGR),这两个季节的结果一致。在染色体4(qGR)和8(qGR)上发现了一个影响根瘤形成的QTL,在染色体5(qYR)和11(qYR)上发现了线虫耐受性的QTL。这些QTL在两个季节都一致。在两个季节中,在染色体10(qGYLD)上发现了一个影响籽粒产量的QTL,在染色体11(qFG)上检测到一个影响每穗实粒数的QTL,在染色体2(qFRWt)、8(qFRWt)和12(qFRWt)上发现了一个影响鲜根重的QTL。qMGR、qMGR、qMGR、qGR、qGR、qYR和qFRWt等位基因的供体是IR78877 - 208 - B - 1 - 2,而qYR、qGYLD和qFG以及qFRWt和qFRWt的等位基因供体是IR64。具有抗性、耐受性和产量有利等位基因的株系在有线虫侵染的条件下产量更高,并且可能是亚洲栽培稻改良对稻根结线虫抗性和耐受性的标记辅助育种(MAB)的起点。
本研究在第一季和第二季共鉴定出12个具有主要影响的QTL和2个与稻根结线虫抗性和耐受性以及其他农艺性状如植株产量、实粒百分比和鲜干根重相关的上位性互作。还选择了具有抗性(qMGR、qMGR、qMGR、qGR、qGR)和耐受性(qYR和qYR)QTL有利等位基因且具有抗性或部分抗性和耐受性的水稻基因型。这些选定的基因型和鉴定出的QTL是设计用于改良高产但对稻根结线虫感染敏感的水稻基因型的MAB的重要信息。