刘列钊-yb体育官方

 刘列钊-yb体育官方
刘列钊
发布时间2020-11-02 10:36:15     作者:    浏览次数: 次

刘列钊,男,汉族,四川泸州人。博士,教授,博士研究生导师

学习经历:

l   2000-2013        遗传育种                 原西南农业大学

l   1997-2000        生化学与分子生物学             原西南农业大学

l   1993-1997        生物教育                 原西南师范大学

工作和留学经历:

l 2004-至今   西南大学农学与生物科技学院       

l 2006-2006   东北威尔士大学(英国)       

l 2008-2011   吉森大学(德国)            博士后

研究方向:

l 油菜木质素代谢相关基因利用研究;

l 油菜逆境生物学相关基因功能研究;

l 油菜农艺性状基因定位和功能研究;

主持主要科研项目:

l 国家自然科学基金:甘蓝型油菜籽粒和茎秆纤维素组分定位研究;2012-2015

l 国家自然科学基金:甘蓝型油菜茎秆倒伏、菌核病抗性遗传定位及候选基因分析;2014-2017

l 国家自然科学基金:甘蓝型油菜萎蔫突变体bnlew1基因克隆及分子机理研究;2018-2021

l 国家自然科学基金:甘蓝型油菜转录因子bna.nf-ya7耐旱功能及分子机制研究;2020-2023

l 国家重点研发计划子课题:长江上游测试网点建设;2018-2021

l 重庆市社会民生项目:分子标记辅助选育优质甘蓝型黄籽油菜品种; 2016-2018

l 重庆市自然科学基金:甘蓝型油菜籽粒和茎秆纤维素组分含量qtl定位;2011-2013

l 西南大学创新团队项目:分子标记辅助选择创建不同遗传背景黄籽资源及其评价和利用;2017-2019

发表的论文:

l cao, y. r., yan, x. y., ran, s. y., ralph, j., smith, r. a., chen, x. p., . . . liu, l. z*. (2022). knockout of the lignin pathway gene bnf5h decreases the s/g lignin compositional ratio and improves sclerotinia sclerotiorum resistance in brassica napus. plant cell and environment, 45(1), 248-261

l di, f. f., jian, h. j., wang, t. y., chen, x. p., ding, y. r., du, h., . . . liu, l. z*. (2018). genome-wide analysis of the pyl gene family and identification of pyl genes that respond to abiotic stress in brassica napus . genes, 9(3).

l di, f. f., wang, t. y., ding, y. r., chen, x. p., wang, h., li, j. n., & liu, l. z*. (2020). genetic mapping combined with a transcriptome analysis to screen for candidate genes responsive to abscisic acid treatment in brassica napus  embryos during seed germination. dna and cell biology, 39(4), 533-547.

l ding, y. r., jian, h. j., wang, t. y., di, f. f., wang, j., li, j. n., & liu, l. z*. (2018). screening of candidate gene responses to cadmium stress by rna sequencing in oilseed rape (brassica napus l.). environmental science and pollution research, 25(32), 32433-32446.

l ding, y. r., yu, s. z., wang, j., li, m. t., qu, c. m., li, j. n., & liu, l. z*. (2021). comparative transcriptomic analysis of seed coats with high and low lignin contents reveals lignin and flavonoid biosynthesis in brassica napus . bmc plant biology, 21(1).

l jian, h. j., ma, j. q., wei, l. j., liu, p., zhang, a. x., yang, b., . . . liu, l. z*. (2018). integrated mrna, srna, and degradome sequencing reveal oilseed rape complex responses to sclerotinia sclerotiorum (lib.) infection. scientific reports, 8.

l jian, h. j., wang, j., wang, t. y., wei, l. j., li, j., & liu, l. z*. (2016). identification of rapeseed micrornas involved in early stage seed germination under salt and drought stresses. frontiers in plant science, 7.

l jian, h. j., xie, l., wang, y. h., cao, y. r., wan, m. y., lv, d. q., . . . liu, l. z*. (2020). characterization of cold stress responses in different rapeseed ecotypes based on metabolomics and transcriptomics analyses. peer j, 8.

l jian, h. j., yang, b., zhang, a. x., ma, j. q., ding, y. r., chen, z. y., . . . liu, l. z*. (2018). genome-wide identification of micrornas in response to cadmium stress in oilseed rape (brassica napus l.) using high-throughput sequencing. international journal of molecular sciences, 19(5).

l jian, h. j., yang, b., zhang, a. x., zhang, l., xu, x. f., li, j. n., & liu, l. z*. (2017). screening of candidate leaf morphology genes by integration of qtl mapping and rna sequencing technologies in oilseed rape (brassica napus l.). plos one, 12(1).

l jian, h. j., zhang, a. x., ma, j. q., wang, t. y., yang, b., shuang, l. s., . . . liu, l. z*. (2019). joint qtl mapping and transcriptome sequencing analysis reveal candidate flowering time genes in brassica napus  l. bmc genomics, 20.

l li, y. y., zhang, l. x., hu, s., zhang, j. f., wang, l., ping, x. k., . . . liu, l. z*. (2021). transcriptome and proteome analyses of the molecular mechanisms underlying changes in oil storage under drought stress in brassica napus l. global change biology bioenergy, 13(7), 1071-1086.

l li, z. h., ding, y. r., xie, l., jian, h. j., gao, y. m., yin, j. m., . . . liu, l. z*. (2020). regulation by sugar and hormone signaling of the growth of brassica napus l. axillary buds at the transcriptome level. plant growth regulation, 90(3), 571-584.

l liu, l. z., qu, c. m., wittkop, b., yi, b., xiao, y., he, y. j., . . . li, j. n*. (2013). a high-density snp map for accurate mapping of seed fibre qtl in brassica napus l. plos one, 8(12).

l liu, l. z., stein, a., wittkop, b., sarvari, p., li, j. n., yan, x. y., . . . snowdon, r. j*. (2012). a knockout mutation in the lignin biosynthesis gene ccr1 explains a major qtl for acid detergent lignin content in brassica napus seeds. theoretical and applied genetics, 124(8), 1573-1586.

l ping, x. k., wang, t. y., lin, n., di, f. f., li, y. y., jian, h. j., . . . liu, l. z*. (2019). genome-wide identification of the lac gene family and its expression analysis under stress in brassica napus. molecules, 24(10).

l tan, m., liao, f., hou, l. t., wang, j., wei, l. j., jian, h. j., . . . liu, l. z*. (2017). genome-wide association analysis of seed germination percentage and germination index in brassica napus l. under salt and drought stresses. euphytica, 213(2).

l wang, j., fan, y. l., mao, l., qu, c. m., lu, k., li, j. n., & liu, l. z*. (2021). genome-wide association study and transcriptome analysis dissect the genetic control of silique length in brassica napus l. biotechnology for biofuels, 14(1).

l wang, j., jian, h. j., wei, l. j., qu, c. m., xu, x. f., lu, k., . . . liu, l. z*. (2015). genome-wide analysis of seed acid detergent lignin (adl) and hull content in rapeseed (brassica napus l.). plosone, 10(12).

l wang, j., jian, h. j., wang, t. y., wei, l. j., li, j. n., li, c., & liu, l. z*. (2016). identification of micrornas actively involved in fatty acid biosynthesis in developing brassica napus seeds using high-throughput sequencing. frontiers in plant science, 7.

l wang, j., xian, x. h., xu, x. f., qu, c. m., lu, k., li, j. n., & liu, l. z*. (2017). genome-wide association mapping of seed coat color in brassica napus. journal of agricultural and food chemistry, 65(26), 5229-5237.

l wang, t. y., hou, l. t., jian, h. j., di, f. f., li, j. n., & liu, l. z*. (2018). combined qtl mapping, physiological and transcriptomic analyses to identify candidate genes involved in brassica napus seed aging. molecular genetics and genomics, 293(6), 1421-1435.

l wang, t. y., ping, x. k., cao, y. r., jian, h. j., gao, y. m., wang, j., . . . liu, l. z*. (2019). genome-wide exploration and characterization of mir172/euap2 genes in brassica napus l. for likely role in flower organ development. bmc plant biology, 19.

l wang, t. y., wei, l. j., wang, j., xie, l., li, y. y., ran, s. y., . . . liu, l. z*. (2020). integrating gwas, linkage mapping and gene expression analyses reveals the genetic control of growth period traits in rapeseed (brassica napus l.). biotechnology for biofuels, 13(1).

l yan, x. y., li, j. n., fu, f. y., jin, m. y., chen, l., & liu, l. z*. (2009). co-location of seed oil content, seed hull content and seed coat color qtl in three different environments in brassica napus  l. euphytica, 170(3), 355-364.

l yan, x. y., li, j. n., wang, r., jin, m. y., chen, l., qian, w., . . . liu, l. z*. (2011). mapping of qtls controlling content of fatty acid composition in rapeseed (brassica napus). genes & genomics, 33(4), 365-371.

l yan, x. y., qu, c. m., li, j. n., chen, l., & liu, l. z*. (2015). qtl analysis of leaf photosynthesis rate and related physiological traits in brassica napus. journal of integrative agriculture, 14(7), 1261-1268.

l 刘列钊,孟金陵,林呐,谌利,唐章林,张学昆,李加纳*. 甘蓝型黄籽油菜种皮色泽qtl作图. 遗传学报,200633(2): 181-187

l 刘列钊,栗茂腾,王灏,林呐,谌利,孟金陵,李加纳*. 利用mrna差异显示技术寻找甘蓝型油菜黄籽基因. 中国农业科学, 200437 (11): 1772-1772

l 刘列钊,王欣娜,阎星颖,王瑞,徐新福,卢坤,李加纳*. 航天诱变高油酸甘蓝型油菜突变体分子标记的筛选. 中国农业科学,201245 (23): 4931-4938

l 刘列钊,李加纳*. 利用甘蓝型油菜高密度snp遗传图谱定位油酸、 亚麻酸及芥酸含量qtl位点. 中国农业科学,201447 (1): 24-32

l 荐红举,魏丽娟,李超,唐章林,李加纳,刘列钊*. 基于snp遗传图谱定位甘蓝型油菜千粒重qtl位点. 中国农业科学,2014 47 (20): 3953-3961

l 金梦阳,李加纳,付福友,张正圣,张学昆,刘列钊*. 甘蓝型油菜含油量及皮壳率的qtl分析. 中国农业科学,200740 (4): 677-684

l 马爱芬,李加纳,谌利,钱伟,付福友,刘列钊*. 甘蓝型油菜种皮色泽相关基因的cdna-srap差异显示. 作物学报,200834 (03): 526-529

l 马珍珍,李加纳,bennjiamin wittkopmartin frauen,阎星颖,刘列钊*,肖阳.甘蓝型油菜籽粒含油量、蛋白质、纤维素及半纤维素含量qtl分析. 作物学报,201339 (07): 1214-1222

l 荐红举,肖阳,李加纳,马珍珍,魏丽娟,刘列钊*. 基于snp遗传图谱定位盐、旱胁迫下甘蓝型油菜种子发芽率的qtl. 作物学报,201440 (04): 629-635

l 荐红举,魏丽娟,李加纳,徐新福,谌利,刘列钊*. 利用snp高密度遗传连锁图谱定位甘蓝型油菜种子硫苷含量的qtl. 作物学报,201440 (08): 1386-1391

l 王嘉, 荆凌云, 荐红举, 曲存民, 谌利, 李加纳, 刘列钊*. 甘蓝型油菜株高、第1分枝高和分枝数的qtl检测及候选基因筛选. 作物学报, 2015, 41(7): 1027-1038.

l 鲜小华,王嘉,徐新福,曲存民,卢坤,李加纳,刘列钊*. 整合gwaswgcna分析挖掘甘蓝型油菜黄籽微效作用位点. 作物学报, 2018, 44(8): 1105-1113.

研究生招生专业:

l 硕士:作物遗传育种;生物化学与分子生物学;遗传学

l 博士:作物遗传育种

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l 通信地址:重庆市北碚区天生路2号西南大学农学与生物科技学院;邮编:400715

 

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