Scientia Agricultura Sinica

Previous Articles    

Application of Yr52 Genes in Wheat Improvement for Stripe Rust Resistance

FANG TaoHong1, ZHANG Ming1, MA ChunHua1, ZHENG XiaoChen1, TAN WenJing1, TIAN Ran1, YAN Qiong1, ZHOU XinLi1*, LI Xin1, YANG SuiZhuang1, HUANG KeBing1, WANG JianFeng2, HAN DeJun2, KANG ZhenSheng2* #br#   

  1. 1Wheat Research Institute, School of Life Sciences and Engineering, Southwest University of Science and Technology, Mianyang 621010, Sichuan; 2 College of Plant Protection, Northwest A&F University/State Key Laboratory of Crop Stress Biology in Arid Areas, Yangling 712100, Shaanxi
  • Published:2022-03-22

Abstract: ObjectiveThe objective of this study is to evaluate the application value of the high temperature adult plant (HTAP) resistance gene Yr52 in wheat production for improving stripe rust resistance. And wheat lines with good agronomic characters and high disease resistance were developed and selected. It laid a foundation for making full use of the existing HTAP resistance resources and improving the yield related traits.MethodThe stripe rust resistance gene Yr52 was introgressed to Lunxuan 987 (LX987), Banong Aikang 58 (AK58) and Han 6172 (H6172) by backcrossing and self-crossing combined with marker-assisted selection breeding. Adult-plant resistance of donor parent, receptor cultivars and their progeny lines were evaluated in the disease nursery fields at Mianyang, Sichuan and Yangling, Shaanxi by mixed endemic physiological races CYR32, CYR33 and CYR34. Comparison to the Chinese Spring reference genome, the flanking SSR markers Xcfa2040 (6.8 cm-Yr52) and Xbarc182 (1.2 cm-Yr52) of Yr52 were combined to search for markers of 35K SNP chip in the physical interval of target genes, and developed into derived cleaved amplified polymorphic sequences (dCAPS) and kompetitive allele specific PCR (KASP) markers. The resistance gene Yr52 was detected in BC2F5:6 progency lines.ResultThe evaluation of adult plant resistance and agronomic traits indicated that nineteen BC2F5:6 lines with LX987 background was obtained: Among of them, 11 were high resistance (IT=0-3, DS=1%-20%), 8 were moderate resistance (IT=4-6, DS=15%-30%), the average thousand kernel weight (TKW), kernels per spike (KPS), productive tiller number per line (PTN), plant height (PH) and spike length (SL) was 45.33 g, 46, 7, 113.26 cm and 10.05 cm, respectively. Four BC2F5:6 families with AK58 background: all showed high resistance (IT=0-3, DS=5%-25%); the average TKW, KPS, PTN, PH and SL were 44.67 g, 48, 7, 96.54 cm and 10.17 cm, respectively. Five BC2F5:6 lineages with H6172 background showed high resistance to stripe rust (IT=0-3, DS=5%-20%). The average TKW, KPS, PTN, PH and SL were 43.74 g, 49, 8, 109.72 cm and 10.06 cm, respectively. The detection rate of three simple sequence repeat (SSR) molecular markers Xbarc182, Xcfa2040 and Xwmc557 linked to Yr52, in offspring population were 78.57%, 66.67% and 66.67%, respectively. One dCAPS marker Xdcaps-Yr52-1 and one KASP marker Xkasp-Yr52-1 were successfully developed, and the detection rates were 73.68% and 41.67%, respectively. The agronomic traits of lines with high (IT=0-3) and medium (IT=4-6) resistance levels were compared. The results showed that the average TKW, PTN and KPS of lines with IT=0-3 were higher (P>0.05) than those of families with moderate resistance level lines (IT=4-6)Five lines with disease resistance and stable agronomic traits were selected by evaluated of PH=80-105 cm, PTN≥6,KPS≥45, TKW≥42 g, SL≥8 cm.ConclusionYr52 was found to be resistant to all of the present predominant races in the adult plant stage. After introgression Yr52 into the main susceptible Chinese wheat varieties, the progeny lines with good disease resistance and agronomic characters could be used for breeding resistance varieties with multi-gene polymerization, it is enriching for the diversity of disease resistance genes and achieving durable utilization. The development of molecular markers will facilitate detect the utilization of Yr52 gene in resistance identification of germplasm in the future.


Key words: Triticum aestivum , L.,  , stripe rust, traits of yield components, stripe rust resistance, molecular markers development, molecular marker-assisted selection (MAS), backcross breeding,  , Yr52

[1] PENG HaiXia, KA DeYan, ZHANG TianXing, ZHOU MengDie, WU LinNan, XIN ZhuanXia, ZHAO HuiXian, MA Meng. Overexpression of Wheat TaCYP78A5 Increases Flower Organ Size [J]. Scientia Agricultura Sinica, 2023, 56(9): 1633-1645.
[2] WEI YongKang, YANG TianCong, ZANG ShaoLong, HE Li, DUAN JianZhao, XIE YingXin, WANG ChenYang, FENG Wei. Monitoring Wheat Lodging Based on UAV Multi-Spectral Image Feature Fusion [J]. Scientia Agricultura Sinica, 2023, 56(9): 1670-1685.
[3] ZHANG Xu, HAN JinYu, LI ChenChen, ZHANG DanDan, WU QiMeng, LIU ShengJie, JIAO HanXuan, HUANG Shuo, LI ChunLian, WANG ChangFa, ZENG QingDong, KANG ZhenSheng, HAN DeJun, WU JianHui. Identification of Adult Plant Stripe Rust Resistance Candidate Genes of YrZ501-2BL by Gene Association and Transciptome Analysis in Wheat (Triticum aestivum L.) [J]. Scientia Agricultura Sinica, 2023, 56(8): 1429-1443.
[4] HAN ZiXuan, FANG JingJing, WU XuePing, JIANG Yu, SONG XiaoJun, LIU XiaoTong. Synergistic Effects of Organic Carbon and Nitrogen Content in Water-Stable Aggregates as well as Microbial Biomass on Crop Yield Under Long-Term Straw Combined Chemical Fertilizers Application [J]. Scientia Agricultura Sinica, 2023, 56(8): 1503-1514.
[5] MA ShengLan, KUANG FuHong, LIN HongYu, CUI JunFang, TANG JiaLiang, ZHU Bo, PU QuanBo. Effects of Straw Incorporation Quantity on Soil Physical Characteristics of Winter Wheat-Summer Maize Rotation System in the Central Hilly Area of Sichuan Basin [J]. Scientia Agricultura Sinica, 2023, 56(7): 1344-1358.
[6] NAN Rui, YANG YuCun, SHI FangHui, ZHANG LiNing, MI TongXi, ZHANG LiQiang, LI ChunYan, SUN FengLi, XI YaJun, ZHANG Chao. Identification of Excellent Wheat Germplasms and Classification of Source-Sink Types [J]. Scientia Agricultura Sinica, 2023, 56(6): 1019-1034.
[7] CHANG ChunYi, CAO Yuan, GHULAM Mustafa, LIU HongYan, ZHANG Yu, TANG Liang, LIU Bing, ZHU Yan, YAO Xia, CAO WeiXing, LIU LeiLei. Effects of Powdery Mildew on Photosynthetic Characteristics and Quantitative Simulation of Disease Severity in Winter Wheat [J]. Scientia Agricultura Sinica, 2023, 56(6): 1061-1073.
[8] WANG XiaoXuan, ZHANG Min, ZHANG XinYao, WEI Peng, CHAI RuShan, ZHANG ChaoChun, ZHANG LiangLiang, LUO LaiChao, GAO HongJian. Effects of Different Varieties of Phosphate Fertilizer Application on Soil Phosphorus Transformation and Phosphorus Uptake and Utilization of Winter Wheat [J]. Scientia Agricultura Sinica, 2023, 56(6): 1113-1126.
[9] WANG Mai, DONG QingFeng, GAO ShenAo, LIU DeZheng, LU Shan, QIAO PengFang, CHEN Liang, HU YinGang. Genome-Wide Association Studies and Mining for Favorable Loci of Root Traits at Seedling Stage in Wheat [J]. Scientia Agricultura Sinica, 2023, 56(5): 801-820.
[10] FAN ZhiLong, HU FaLong, YIN Wen, FAN Hong, ZHAO Cai, YU AiZhong, CHAI Qiang. Response of Water Use Characteristics of Spring Wheat to Co- Incorporation of Green Manure and Wheat Straw in Arid Irrigation Region [J]. Scientia Agricultura Sinica, 2023, 56(5): 838-849.
[11] GUO Yan, JING YuHang, WANG LaiGang, HUANG JingYi, HE Jia, FENG Wei, ZHENG GuoQing. UAV Multispectral Image-Based Nitrogen Content Prediction and the Transferability Analysis of the Models in Winter Wheat Plant [J]. Scientia Agricultura Sinica, 2023, 56(5): 850-865.
[12] WANG JianFeng, CHENG JiaXin, SHU WeiXue, ZHANG YanRu, WANG XiaoJie, KANG ZhenSheng, TANG ChunLei. Functional Analysis of Effector Hasp83 in the Pathogenicity of Puccinia striiformis f. sp. tritici [J]. Scientia Agricultura Sinica, 2023, 56(5): 866-878.
[13] DING JinFeng, XU DongYi, DING YongGang, ZHU Min, LI ChunYan, ZHU XinKai, GUO WenShan. Effects of Cultivation Patterns on Grain Yield, Nitrogen Uptake and Utilization, and Population Quality of Wheat Under Rice-Wheat Rotation [J]. Scientia Agricultura Sinica, 2023, 56(4): 619-634.
[14] CHEN JiHao, ZHOU JieGuang, QU XiangRu, WANG SuRong, TANG HuaPing, JIANG Yun, TANG LiWei, $\boxed{\hbox{LAN XiuJin}}$, WEI YuMing, ZHOU JingZhong, MA Jian. Mapping and Analysis of QTL for Embryo Size-Related Traits in Tetraploid Wheat [J]. Scientia Agricultura Sinica, 2023, 56(2): 203-216.
[15] YAN YanGe, ZHANG ShuiQin, LI YanTing, ZHAO BingQiang, YUAN Liang. Effects of Dextran Modified Urea on Winter Wheat Yield and Fate of Nitrogen Fertilizer [J]. Scientia Agricultura Sinica, 2023, 56(2): 287-299.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!