水产养殖

丛日浩,男,副研究员,研究方向为贝类遗传育种与养殖技术。开发品质性状育种技术,培育我国首个高糖原牡蛎新品种“海蛎1号 ”;首创潮间带多环境参数的精细量化技术,建立基于环境调控的养殖新模式。主持国家重点研发计划等课题5项,发表SCI论文20篇,以第1发明人获发明专利18件。作为主要完成人培育国审新品种2个,提交待审新品种2个。出版图书1部,制定水产行业标准2件,获省部级奖励2项。

一、研究领域 

聚焦贝类品质和抗性育种技术和基于潮间带环境调控的表观遗传机制研究。                

二、招生专业及方向

学术型硕士招生专业:水产养殖,学科方向:养殖遗传学与育种生物技术;

专业型硕士招生专业:生物与医药,学科方向:海洋生物工程。

三、研究室及联系方式

实验海洋生物学实验室,联系方式:rhcong@qdio.ac.cn、电话0532-82896727。   

四、承担的主要科研项目

1. 国家自然科学基金青年项目,海湾扇贝亚种间杂交闭壳肌重杂种优势的分子机理研究(31502164),2016-2018,20万元,主持。

2. 中国博士后科学基金第59批面上(一等),海湾扇贝闭壳肌重杂种优势相关SNPs挖掘与候选基因研究(2016M590668),2016-2017,8万元,主持。

3. 国家重点研发计划“海洋农业与淡水渔业科技创新”重点专项,耐高温、速生扇贝和牡蛎新品种培育(2022YFD2400300),2022-2026,80万元,主持子课题。

4. 种业企业(委托)项目,贝类种质创制与研发,2021-2030,500万元,主持。

5. 青岛博士后人员应用研究项目,海湾扇贝闭壳肌重杂种优势利用技术研究,2016-2017,5万元,主持。

6. 山东省重点研发计划,鲍、扇贝和牡蛎等贝类种业创新能力提升(2024LZGCQY003),2024-2027,1000万元,骨干成员。

7. 国家贝类产业技术体系,环境胁迫性疾病防控岗位,2021-2025,350万元,骨干成员。                

五、研究成果及奖励         

1. 2020年度海洋科学技术奖一等奖,高质牡蛎创制技术体系的构建与应用;

2. 2023年度山东省科技进步奖一等奖,牡蛎现代种业关键技术研发与规范;

3. 2024年度“青岛好成果”转化案例TOP10,水产新品种长牡蛎“海蛎1号”的产业化;

4. 国审新品种:长牡蛎“海蛎1号”(GS-01-007-2020);福建牡蛎“前沿2号”(GS-02-005-2024);

5. 水产行业标准:近江牡蛎 SC/T 2114-2022。

六、代表性论文及著作

1. Zhang, T., Wang, C., Cong, R.#, Pang, M., Du, M., Li, Q., Jiang, Z., Qi, H., Wang, L., Wang, W., Chen, J., Zhang, G., Li, L.#, 2025. The improved heat tolerance and underlying mechanism for the selected backcross population from the Crassostrea gigas with Crassostrea angulata. Aquaculture, 602.

2. Wei, C., Wang, L., Sun, X., Wang, W., Zhang, G., Li, L., Cong R. #2024. Nutritional quality of interspecific backcross between hybrids of Crassostrea gigas×C. angulata and their two parental species,Journal of Oceanology and Limnology, https://doi.org/10.1007/s00343-024-4086-9.

3. Wang, Y., Zhang, S., Zhang, G., Cong R. #, Li, L.#, 2019. Molecular mechanism of inbreeding effects based on RNA-Seq analysis of the adductor muscle of bay scallop (Argopecten irradians), Acta Oceanologica Sinica,  38(2).

4. Qi H., Cong, R., Wang, Y., Zhang, G., Li, L.#, 2023. Construction and analysis of the chromosome-level haplotype-resolved genomes of two Crassostrea oyster congeners: Crassostrea angulata and C. gigas. GigaScience. doi:DOI: 10.1093/gigascience/giad077. 

5. Wang, X., Cong, R., Li, A., Wang, W., Zhang, G., Li, L.#, 2023. Transgenerational effects of intertidal environment on physiological phenotypes and DNA methylation in Pacific oysters. Science of the Total Environment, 871, 162112. doi:10.1016/j.scitotenv.2023.162112.

6. Wang, X., Cong, R., Li, A., Wang, W., Zhang, G., Li, L.#, 2023. Experimental DNA demethylation reduces expression plasticity and thermal tolerance in Pacific oysters. Marine Biotechnology, 25(3), 341-346. doi:10.1007/s10126-023-10208-5.

7. Tan, Y., Cong, R., Qi, H., Wang, L., Zhang, G., Pan, Y. #, Li, L.#, 2021. Transcriptomics analysis and re-sequencing reveal the mechanism underlying the thermotolerance of an artificial selection population of the Pacific oyster. Frontiers in Physiology. 12, 663023. doi:10.3389/fphys.2021.663023.

8. Ding, F., Li, A., Cong, R., Wang, X., Wang, W., Que, H., Zhang, G.#, Li, L.#, 2020. The Phenotypic and the genetic response to the extreme high temperature provides new insight into thermal tolerance for the Pacific oyster Crassostrea gigas. Frontiers in Marine Science, 7. doi:10.3389/fmars.2020.00399.

9. Wang, C., Li, A., Cong, R., Qi, H., Wang, W., Zhang, G.,Li, L.#, 2023. Cis- and trans-variations of stearoyl-coa desaturase provide new insights into the mechanisms of diverged pattern of phenotypic plasticity for temperature adaptation in two congeneric oyster species. Molecular Biology and Evolution, 40(2). 

10. Wang, X., Wei, Y.,Cong, R., Li, A., Wang, W., Zhang, G., Pan, Y.#, Li, L.#, 2024. DNA methylation-mediated energy metabolism provides new insight into the quality losses during oyster reproductive process. Aquaculture, 583.

11. 水产养殖绿色发展技术丛书《牡蛎绿色高效养殖技术与实例》,中国农业出版社,ISBN 978-7-109-30996-8,主编:李莉,丛日浩,张国范。