Scientia Agricultura Sinica ›› 2010, Vol. 43 ›› Issue (4): 761-768 .doi: 10.3864/j.issn.0578-1752.2010.04.013

• HORTICULTURE • Previous Articles     Next Articles

Identification and Effect Analysis of QTLs Conferring Salt Tolerance at Seedling Stage Using Solanum pennellii LA716 Introgression Lines in Tomato

YU Qing-hui, LIU Lei, WANG Bai-ke, YANG Sheng-bao, YANG Tao, LI Jun-ming, HOU Xi-lin
  

  1. (南京农业大学园艺学院)
  • Received:2009-05-22 Revised:2009-10-19 Online:2010-02-20 Published:2010-02-20
  • Contact: HOU Xi-lin

Abstract:

【Objective】 The introgression line population, which was developed from a salt-sensitive parent S. lycopersicum M82 and a salt-tolerance wild species S. pennellii LA716, was employed in this paper to identify QTLs conferring salt tolerance at the seedling stage. Meanwhile the primary genetic effect and interaction of some QTLs were also analyzed. 【Method】 Seedlings with four fully developed true leaves were transferred into hydroponic tanks containing 50 L of half-strength modified Hoagland solution. The same amount of salts was added every day to achieve a final concentration of 700 mmol?L-1NaCl + 70 mmol?L-1 CaCl2. After the final salt concentration was reached, the plants were evaluated using a scale of 0 to 10. Dunnett test was used for ANOVA analysis. 【Result】 Seven unambiguous QTLs (Stq2a, Stq2b, Stq6a, Stq7a, Stq7b, Stq8 and Stq10) located respectively on chromosome 2, 6, 7, 8 and 10 were identified, which were responsible for controlling salt tolerance at seedling stage and derived from wild relative S. pennellii LA716. The survival percentage increased by 18.9%-83.8% as compared to the control M82 under this salt stress. QTL possibly involved in IL6-4 and IL6-3 needed to be confirmed in the further experiments. Genetic analysis of some QTLs showed a significant dominant effect with the exception of Stq6b. The interaction of QTLs presented a typically less-than-additive but two QTLs located on chromosome 7 gave a reduced effect. 【Conclusion】 This is the first report to identify QTLs conferring salt tolerance from wild species S. pennellii LA716 at the seedling stage. These identified QTLs would provide a sound base for tomato breeding with salt tolerance.

Key words: tomato, introgression lines, salt tolerance, QTL mapping

[1] 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.
[2] SHAO ShuJun,HU ZhangJian,SHI Kai. The Role and Mechanism of Linoleyl Ethanolamide in Plant Resistance Against Botrytis cinerea in Tomato [J]. Scientia Agricultura Sinica, 2022, 55(9): 1781-1789.
[3] WANG MengRui, LIU ShuMei, HOU LiXia, WANG ShiHui, LÜ HongJun, SU XiaoMei. Development of Artificial Inoculation Methodology for Evaluation of Resistance to Fusarium Crown and Root Rot and Screening of Resistance Sources in Tomato [J]. Scientia Agricultura Sinica, 2022, 55(4): 707-718.
[4] HU XueHua,LIU NingNing,TAO HuiMin,PENG KeJia,XIA Xiaojian,HU WenHai. Effects of Chilling on Chlorophyll Fluorescence Imaging Characteristics of Leaves with Different Leaf Ages in Tomato Seedlings [J]. Scientia Agricultura Sinica, 2022, 55(24): 4969-4980.
[5] LIU Jin,HU JiaXiao,MA XiaoDing,CHEN Wu,LE Si,JO Sumin,CUI Di,ZHOU HuiYing,ZHANG LiNa,SHIN Dongjin,LI MaoMao,HAN LongZhi,YU LiQin. Construction of High Density Genetic Map for RIL Population and QTL Analysis of Heat Tolerance at Seedling Stage in Rice (Oryza sativa L.) [J]. Scientia Agricultura Sinica, 2022, 55(22): 4327-4341.
[6] LIU Hao,PANG Jie,LI HuanHuan,QIANG XiaoMan,ZHANG YingYing,SONG JiaWen. Effects of Foliar-Spraying Selenium Coupled with Soil Moisture on the Yield and Quality of Tomato [J]. Scientia Agricultura Sinica, 2022, 55(22): 4433-4444.
[7] CUI QingQing, MENG XianMin, DUAN YunDan, ZHUANG TuanJie, DONG ChunJuan, GAO LiHong, SHANG QingMao. Inhibiting Eeffect of Root-Cutting and Top-Pinching on Graft Healing of Tomato [J]. Scientia Agricultura Sinica, 2022, 55(2): 365-377.
[8] LinHan ZOU,XinYing ZHOU,ZeYuan ZHANG,Rui YU,Meng YUAN,XiaoPeng SONG,JunTao JIAN,ChuanLiang ZHANG,DeJun HAN,QuanHao SONG. QTL Mapping of Thousand-Grain-Weight and Its Related Traits in Zhou 8425B × Xiaoyan 81 Population and Haplotype Analysis [J]. Scientia Agricultura Sinica, 2022, 55(18): 3473-3483.
[9] CHANG LiGuo,HE KunHui,LIU JianChao. Mining of Genetic Locus of Maize Stay-Green Related Traits Under Multi-Environments [J]. Scientia Agricultura Sinica, 2022, 55(16): 3071-3081.
[10] LI YiMei,WANG Jiao,WANG Ping,SHI Kai. Function of Sugar Transport Protein SlSTP2 in Tomato Defense Against Bacterial Leaf Spot [J]. Scientia Agricultura Sinica, 2022, 55(16): 3144-3154.
[11] SHI XiaoLong,GUO Pei,REN JingYao,ZHANG He,DONG QiQi,ZHAO XinHua,ZHOU YuFei,ZHANG Zheng,WAN ShuBo,YU HaiQiu. A Salt Stress Tolerance Effect Study in Peanut Based on Peanut//Sorghum Intercropping System [J]. Scientia Agricultura Sinica, 2022, 55(15): 2927-2937.
[12] FANG HanMo,HU ZhangJian,MA QiaoMei,DING ShuTing,WANG Ping,WANG AnRan,SHI Kai. Function of SlβCA3 in Plant Defense Against Pseudomonas syringae pv. tomato DC3000 [J]. Scientia Agricultura Sinica, 2022, 55(14): 2740-2751.
[13] BIAN LanXing,LIANG LiKun,YAN Kun,SU HongYan,LI LiXia,DONG XiaoYan,MEI HuiMin. Effects of Trichoderma on Root and Leaf Ionic Homeostasis and Photosystem II in Chinese Wolfberry Under Salt Stress [J]. Scientia Agricultura Sinica, 2022, 55(12): 2413-2424.
[14] LI JianXin,WANG WenPing,HU ZhangJian,SHI Kai. Effects of Simulated Acid Rain Conditions on Plant Photosynthesis and Disease Susceptibility in Tomato and Its Alleviation of Brassinosteroid [J]. Scientia Agricultura Sinica, 2021, 54(8): 1728-1738.
[15] XianMin MENG,YanHai JI,WangWang SUN,ZhanHui WU,ZhaoSheng CHU,MingChi LIU. Response of Chloroplast Ultrastructure and Photosynthetic Physiology of Two Tomato Varieties to Low Light Stress [J]. Scientia Agricultura Sinica, 2021, 54(5): 1017-1028.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!