Current Biotechnology ›› 2021, Vol. 11 ›› Issue (5): 560-566.DOI: 10.19586/j.2095-2341.2021.0118
• Resistant Resources to Fusarium Head Blight and Germplasm Innovation • Previous Articles Next Articles
Jin XIAO(
), Yifan CHENG, Rongrong SONG, Li SUN, Zongkuan WANG, Chunxia YUAN, Haiyan WANG, Xiue WANG
Received:2021-06-15
Accepted:2021-08-05
Online:2021-09-25
Published:2021-10-08
肖进(
), 程怡璠, 宋融融, 孙丽, 王宗宽, 袁春霞, 王海燕, 王秀娥
作者简介:肖进 E-mail: xiaojin@njau.edu.cn
基金资助:CLC Number:
Jin XIAO, Yifan CHENG, Rongrong SONG, Li SUN, Zongkuan WANG, Chunxia YUAN, Haiyan WANG, Xiue WANG. Creation and Utilization of Resistant Wheat Alien Germplasms to Fusarium Head Blight[J]. Current Biotechnology, 2021, 11(5): 560-566.
肖进, 程怡璠, 宋融融, 孙丽, 王宗宽, 袁春霞, 王海燕, 王秀娥. 小麦抗赤霉病外源种质的创制和育种利用[J]. 生物技术进展, 2021, 11(5): 560-566.
| 近缘种 | 染色体组成 | 抗病染色体 | 代表外源种质 | 正式命名 | 参考文献 |
|---|---|---|---|---|---|
大赖草 (Leymusracemosus) | NsNsXmXm 2n=4x=28 | Lr.2(7Lr#1) | T7AL∙7Lr#1S | Fhb3 | [ |
| Lr.14(5Lr#1) | T5AS·5LrL | - | [ | ||
| Lr.7 | DALr.7 | - | [ | ||
鹅观草/披碱草 (Roegneriaciliaris/ Elymustsukushiense) | StsStsHtsHtsYtsYts 2n=6x=42 | 1Ets#1(1Rk#1) | T1AL∙1Ets#1S | Fhb6 | [ |
纤毛鹅观草 (Roegneria kamoji) | ScScYcYc 2n=4x=28 | 1Yc 3Sc | DA1Yc DA3Sc | - - | [ [ |
长穗偃麦草 (Thinopyrum elongatum) | EeEe 2n=2x=14 | 1Ee 7Ee | DA1Ee 7DS.7el2L | - Fhb7 | [ [ |
黑麦 (Secale cereale) | RR 2n=2x=14 | 1R | T1BL∙1RS | - | [ |
粗山羊草 (Aegilops tauschii) | DD 2n=2x=14 | D | Langdon/T. tauschii [RL 5393] Langdon/T. tauschii [PI 268210] Langdon/T. tauschii [RL 5258] | - - - | [ |
华山新麦草 (Psathyrostachyshuashanica) | NsNs 2n=2x=14 | 2NS | H‑34‑8‑2‑6‑1 H‑24‑3‑1‑5‑19‑1 | - - | [ |
Table 1 Summary of the incorporation of Fusarium head blight resistance genes into wheat from its wild relatives
| 近缘种 | 染色体组成 | 抗病染色体 | 代表外源种质 | 正式命名 | 参考文献 |
|---|---|---|---|---|---|
大赖草 (Leymusracemosus) | NsNsXmXm 2n=4x=28 | Lr.2(7Lr#1) | T7AL∙7Lr#1S | Fhb3 | [ |
| Lr.14(5Lr#1) | T5AS·5LrL | - | [ | ||
| Lr.7 | DALr.7 | - | [ | ||
鹅观草/披碱草 (Roegneriaciliaris/ Elymustsukushiense) | StsStsHtsHtsYtsYts 2n=6x=42 | 1Ets#1(1Rk#1) | T1AL∙1Ets#1S | Fhb6 | [ |
纤毛鹅观草 (Roegneria kamoji) | ScScYcYc 2n=4x=28 | 1Yc 3Sc | DA1Yc DA3Sc | - - | [ [ |
长穗偃麦草 (Thinopyrum elongatum) | EeEe 2n=2x=14 | 1Ee 7Ee | DA1Ee 7DS.7el2L | - Fhb7 | [ [ |
黑麦 (Secale cereale) | RR 2n=2x=14 | 1R | T1BL∙1RS | - | [ |
粗山羊草 (Aegilops tauschii) | DD 2n=2x=14 | D | Langdon/T. tauschii [RL 5393] Langdon/T. tauschii [PI 268210] Langdon/T. tauschii [RL 5258] | - - - | [ |
华山新麦草 (Psathyrostachyshuashanica) | NsNs 2n=2x=14 | 2NS | H‑34‑8‑2‑6‑1 H‑24‑3‑1‑5‑19‑1 | - - | [ |
| 1 | QI L L, PUMPHREY M O, FRIEBE B, et al.. Molecular cytogenetic characterization of alien introgressions with gene Fhb3 for resistance to Fusarium head blight disease of wheat [J]. Theor. Appl. Genet., 2008, 117(7):1155-1566. |
| 2 | CAINONG J C, BOCKUS W W, FENG Y, et al.. Chromosome engineering, mapping, and transferring of resistance to Fusarium head blight disease from Elymustsukushiensis into wheat [J]. Theor. Appl. Genet., 2015, 128(6):1019-1027. |
| 3 | ZHANG X, SHEN X, HAO Y, et al.. A genetic map of Lophopyrum ponticum chromosome 7E, harboring resistance genes to Fusarium head blight and leaf rust [J]. Theor. Appl. Genet., 2011, 122(2):263-270. |
| 4 | MUJEEB-KAZI A, RODRIGUEZ R. An intergeneric hybrid of Triticum aestivum L. × Elymusgiganteus [J]. J. Heredity, 1981, 72(4):253-256. |
| 5 | 王耀南,陈佩度,刘大钧.巨大冰麦草种质转移给普通小麦的研究Ⅰ.(普通小麦×巨大冰麦草)F_1的产生[J].南京农业大学学报,1986(1):10-14. |
| 6 | 陈佩度,王兆悌,王苏玲,等.将大赖草种质转移给普通小麦的研究──Ⅲ.抗赤霉病异附加系选育[J].遗传学报,1995,22(3):206-210. |
| 7 | 刘文轩,陈佩度,刘大钧.利用花粉辐射诱发普通小麦与大赖草染色体易位的研究[J].遗传学报,2000,27(1):44-49. |
| 8 | 袁建华,陈佩度,刘大钧.利用杀配子染色体创造普通小麦-大赖草异易位系[J].中国科学(C辑:生命科学),2003,33(2):110-116. |
| 9 | CHEN P, LIU W, YUAN J, et al.. Development and characterization of wheat- Leymusracemosus translocation lines with resistance to Fusarium head blight [J]. Theor. Appl. Genet., 2005, 111(5):941-948. |
| 10 | 王林生,陈佩度,王秀娥.普通小麦-大赖草染色体相互易位系T7DS·5LrL/T5LrS·7DL的分子细胞遗传学研究[J].科学通报,2010,55(8):669-674. |
| 11 | 王林生,张雅莉.抗赤霉病普通小麦-大赖草易位系T5AS/5LrL的分子细胞遗传学鉴定[J].植物病理学报,2019,49(1):83-89. |
| 12 | 崔承齐,王林生,陈佩度.普通小麦–大赖草易位系T7BS·7Lr#1S和T2AS·2AL-7Lr#1S的分子细胞遗传学鉴定[J].作物学报,2013,39(2):191-197. |
| 13 | 张雅莉,王林生.普通小麦大赖草易位系T3AS·3AL-7Lr#1S的分子细胞遗传学鉴定[J].浙江农业学报,2019,31(4):519-524. |
| 14 | 王林生,张雅莉,南广慧.普通小麦–大赖草易位系T5AS-7LrL·7LrS分子细胞遗传学鉴定[J].作物学报,2018,44(10):1442-1447. |
| 15 | 张雅莉,王林生.普通小麦-大赖草易位系T6DL·7LrS的分子细胞遗传学鉴定[J].生物工程学报,2018,34(11):1823-1830. |
| 16 | WANG L, YUAN J, BIE T, et al.. Cytogenetic and molecular identification of three Triticum aestivum-Leymusracemosus translocation addition lines [J]. J. Genet. Genom., 2009, 36(6):379-385. |
| 17 | 万永芳,颜济,杨俊良,等.小麦近缘野生植物的赤霉病抗性研究[J].植物病理学报,1997,27(2):107-111. |
| 18 | 徐健容,叶华智.小麦近缘种属对赤霉病菌的抗性评价[J].四川农业大学学报,1998,16(3):322-327. |
| 19 | 翁益群,刘大钧.鹅观草(Roegneria C. Koch)与普通小麦(Triticum aestivum L.)属间杂种F_1的形态、赤霉病抗性和细胞遗传学研究[J].中国农业科学,1989,22(5):1-8. |
| 20 | 罗粤川,邓雪雪,吴丹丹,等.鹅观草不同居群赤霉病抗性评价及抗病种质鉴定[J].植物遗传资源学报,2021,22(3):725-733. |
| 21 | 杨艳萍,陈佩度.普通小麦与鹅观草属间杂种F1及BC1的分子细胞遗传学、育性和赤霉病抗性研究[J].遗传,2009,31(3):290-296. |
| 22 | 吴丽芳,汪杏芬,翁益群,等.普通小麦与鹅观草杂种回交后代的赤霉病抗性及细胞遗传学研究[J].安徽农业科学,1997,(1):7-10. |
| 23 | WANG S L, QI L L, CHEN P D, et al.. Molecular cytogenetic identification of wheat-Elymustsukushiense introgression lines [J]. Euphytica, 1999, 107(3):217-224. |
| 24 | 冯祎高.小麦-鹅观草1RK~(#1)染色体变异体的选育及其抗赤霉病性鉴定[D].南京:南京农业大学,硕士学位论文,2002. |
| 25 | 别同德,冯祎高,徐川梅,等.小麦-鹅观草易位系T7A/1Rk#1的选育与鉴定[J].核农学报,2009,23(5):737-742. |
| 26 | 马鸿翔,陆维忠.小麦赤霉病抗性改良研究进展[J].江苏农业学报,2010,26(1):197-203. |
| 27 | MURAMATSU M, KANETA S, IKEDA R, et al.. Hybridization of Japanese indigenous Agropyron (Roegneria) species with hexaploid wheat and cytogenetics of some of the F1, BC1 and amphiploid plants [C]// Sakamoto S (ed) Proc 6th Int Wheat Genet Symp, Maruzen, Kyoto. Beijing: China Agricultural Science and Technology Press, 1983,1041-1048. |
| 28 | 王秀娥,陈佩度,刘大钧.同胞质普通小麦-纤毛鹅观草异附加系D和端体异附加系tBL的选育[J].遗传学报,1997,24(2):137-140. |
| 29 | 孔令娜.一整套普通小麦-纤毛鹅观草二体异附加系的选育与鉴定[D].南京:南京农业大学,博士学位论文,2017. |
| 30 | KONG L, SONG X, XIAO J, et al.. Development and characterization of a complete set of Triticum aestivum-Roegneriaciliaris disomic addition lines [J]. Theor. Appl. Genet., 2018, 131(8):1793-1806. |
| 31 | 高立贞.部分小麦近缘属植物及小偃麦杂种对小麦赤霉病的抗病性鉴定[J].陕西农业科学,1980(2):19-22. |
| 32 | DVORAK J, KNOTT D R. Disomic and ditelosomic additions of diploid Agropyronelongatum chromosomes to Triticum aestivum [J]. Can. J. Genet. Cytol., 1974, 16(2):399-417. |
| 33 | 刘登才,郑有良,王志容,等.影响小麦赤霉病抗性的Lophopyrumelongatum染色体定位[J].四川农业大学学报,2001,19(3):200-205. |
| 34 | JAUHAR P, PETERSON T, XU S. Cytogenetic and molecular characterization of a durum alien disomic addition line with enhanced tolerance to Fusarium head blight [J]. Genome, 2009, 52(5):467-483. |
| 35 | JAUHAR P P, PETERSON T S. Cytological and molecular characterization of homoeologous group-1 chromosomes in hybrid derivatives of a durum disomic alien addition line [J/OL]. Plant Genome, 2011, 4(2),doi: 10.3835/plantgenome2011.01.0002[2021-08-10]. . |
| 36 | GUO J, HE F, CAI J J, et al.. Molecular and cytological comparisons of chromosomes 7el₁, 7el₂, 7E(e), and 7E ⁱ derived from Thinopyrum [J]. Cytogenet. Genome Res., 2015, 145(1):68-74. |
| 37 | FU S, LYU Z, QI B, et al.. Molecular cytogenetic characterization of wheat--Thinopyrumelongatum addition, substitution and translocation lines with a novel source of resistance to wheat Fusarium head blight [J]. J. Genet. Genomics, 2012, 39(2):103-110. |
| 38 | GUO J, ZHANG X, HOU Y, et al.. High-density mapping of the major FHB resistance gene Fhb7 derived from Thinopyrum ponticum and its pyramiding with Fhb1 by marker-assisted selection [J]. Theor. Appl. Genet., 2015, 128(11):2301-2316. |
| 39 | SHEN X, KONG L, OHM H. Fusarium head blight resistance in hexaploid wheat (Triticum aestivum)-Lophopyrum genetic lines and tagging of the alien chromatin by PCR markers [J]. Theor. Appl. Genet., 2004, 108(5): 808-813. |
| 40 | WANG H, SUN S, GE W, et al.. Horizontal gene transfer of Fhb7 from fungus underlies Fusarium head blight resistance in wheat [J/OL]. Science, 2020, 368(6493): eaba5435[2021-08-10]. . |
| 41 | WILLIAM M D H M, MUJEEB-KAZI A. Biochemical and molecular diagnostics of Thinopyrum bessarabicum chromosomes in Triticum aestivum germplasm [J]. Theor. Appl. Genet., 1995, 90(7):952-956. |
| 42 | 英加,陈佩度,刘大钧.将Thinopyrumbessarabicum和Thinopyrumelongatum的种质导入普通小麦的研究[J].西北植物学报,2000,20(3):321-326. |
| 43 | 孙善澄.小麦与偃麦草远缘杂交的研究[J].华北农学报,1987,2(1):7-12. |
| 44 | JAUHAR P P, PETERSON T S. Hybrids between durum wheat and Thinopyrumjunceiforme: prospects for breeding for scab resistance [J]. Euphytica, 2001, 118(2):127-136. |
| 45 | CAI X, CHEN P D, XU S S, et al.. Utilization of alien genes to enhance Fusarium head blight resistance in wheat ——a review [J]. Euphytica, 2005, 142(3):309-318. |
| 46 | 张晓军,肖进,王海燕,等.小偃麦衍生品系的赤霉病抗性评价[J].作物学报,2020,46(1):62-73. |
| 47 | BRISCO E I, BROWN L K, OLSON E L. Fusarium head blight resistance in Aegilopstauschii [J]. Genet. Res. Crop Evol., 2017, 64(8):2049-2058. |
| 48 | 吴郁文,任树新,刘春光,等.异源细胞质对小麦赤霉病抗性的效应[J].科学通报,1998, 43(5):510-514. |
| 49 | OLIVER R E, CAI X, XU S S, et al.. Wheat-Alien species derivatives: a novel source of resistance to Fusarium head blight in wheat [J]. Crop Sci., 2005, 45(4):1353-1360. |
| 50 | 吕超,姚琴,周荣华,等.小麦Am3/莱州953近等基因导入系赤霉病抗性鉴定[J].江苏农业科学,2012,40(12):96-99. |
| 51 | 宋庆杰,肖志敏,辛文利,等.黑龙江省小麦抗赤霉病育种研究进展[J].黑龙江农业科学,2002(5):21-23. |
| 52 | 刘宗镇,汪志远,赵文俊.小麦品种资源抗赤霉病性研究[J].上海农业学报,1985,1(2):75-84. |
| 53 | 万永芳,刘法圈,颜济,等.大麦、黑麦和小黑麦种质资源对赤霉病抗性的鉴定[J].植物保护,1997,23(1):26-28. |
| 54 | 陈庆标.小麦高抗赤霉病种质S42的分子细胞遗传学鉴定[D].江苏扬州:扬州大学,硕士学位论文,2008. |
| 55 | 周建平.携载抗赤霉病基因的小麦-黑麦小片段易位的分子细胞学检测[D].四川:四川农业大学,硕士学位论文,2004. |
| 56 | 李韬,郑飞,秦胜男,等.小麦-黑麦易位系T1BL·1RS在小麦品种中的分布及其与小麦赤霉病抗性的关联[J].作物学报,2016,42(3):320-329. |
| 57 | 吕婷婷,张珍悦,姚晓妮,等.小麦-黑麦1RS-1BS/1BL小片段易位系抗赤霉病鉴定及分子细胞遗传学分析[J].农业生物技术学报,2020,28(7):1193-1202. |
| 58 | 梁增基.抗锈小麦新品种长武89(1)-3-4的选育──用小黑麦代换系作抗源育成小麦新品种的范例[J].麦类作物学报,1996,(5):16-17. |
| 59 | 王益,康厚扬,原红军,等.普通小麦与华山新麦草衍生后代的农艺性状和细胞遗传学研究[J].四川农业大学学报,2008,26(4):405-410. |
| 60 | 郝冬冬.小麦-华山新麦草衍生后代的抗病性鉴定及细胞学研究[D].陕西杨凌:西北农林科技大学,硕士学位论文,2019. |
| 61 | LU W Z, ZHOU M P, ZHANG X. Studies and improvement on wheat breeding for scab resistance using biotechnology [M]//RAUPP W J, MA Z Q, CHEN P D, et al. Proceedings of the International Symposium on Wheat Improvement for Scab Resistance. Kansas: KSU printing services, 2000,151-156. |
| 62 | 戈和静,马鸿翔,陆维忠,等.大麦赤霉病抗扩展性鉴定与评价[J].植物遗传资源学报,2006,7(4):409-414. |
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