日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

High-Resolution Genomic Resources for Trait Mapping and Precision Breeding for Adzuki Bean (Vigna angularis)

用于赤豆(Vigna angularis)性状定位和精准育种的高分辨率基因组资源

Hu, Liangliang; Wang, Xiaolei; Zhang, Yazhou; Garg, Vanika; Yuan, Xingxing; Xue, Renfeng; Zhou, Hongmei; Chen, Yanhua; Hu, Weili; Barmukh, Rutwik; Cao, Rong; Chen, Tianxiao; Song, Qiannan; Gao, Dan; Luo, Gaoling; Zhu, Xu; Jing, Xin; Wang, Suhua; Li, Caiju; Wei, Yunshan; Ge, Weide; Chen, Xin; Wang, Lixia; K Varshney, Rajeev; Jiao, Chengzhi; Cheng, Xuzhen; Chen, Honglin

Harnessing genomic resources for passion fruit improvement: Progress and prospects

利用基因组资源改良百香果:进展与展望

Fulara, Khushboo; Garg, Vanika; Sun, Xinhang; Ford, Rebecca; Dillon, Natalie; Topp, Bruce; Henry, Robert J; Alam, Mobashwer; Varshney, Rajeev K

A novel non-invasive imaging technique for mapping microplastic accumulation and distribution in different organ systems of Indian major carp Labeo rohita (Ham. 1822)

一种用于绘制印度主要鲤鱼 Labeo rohita (Ham. 1822) 不同器官系统中微塑料积累和分布的新型非侵入性成像技术

Gudeta, Kasahun; Kumar, Vineet; Bhagat, Ankeet; Julka, Jatinder Mohan; Bhat, Sartaj Ahmad; Ameen, Fuad; Qadri, Humaira; Singh, Sumit; Amarowicz, Ryszard; Siwach, Sneha; Singh, Aviral; Paul, Soumyadeep; Gupta, Vanika; Gupta, Ishaan; Negi, Ram Krishan

A novel non-invasive imaging technique for mapping microplastic accumulation and distribution in different organ systems of Indian major carp Labeo rohita (Ham. 1822)

一种用于绘制印度主要鲤鱼 Labeo rohita (Ham. 1822) 不同器官系统中微塑料积累和分布的新型非侵入性成像技术

Siwach, Sneha; Singh, Aviral; Paul, Soumyadeep; Gupta, Vanika; Gupta, Ishaan; Negi, Ram Krishan

Strategic global data integration to improve genomic prediction accuracy in tree breeding programs facing resource limitations, a case study in mango

战略性全球数据整合以提高资源受限树木育种项目的基因组预测准确性——以芒果为例

Ten, Jorge; Díaz, Nerea; Herreros, Miguel; Máñez-Grau, Ángel; Ortiz, José Antonio; Rodríguez-Arnedo, Adoración; Aparicio, Mónica; Álvarez, Elisa; Girela, José Luis; Castillo, Juan Carlos; Bernabeu, Andrea; Juijn, Hidde; Cabanellas‐Reboredo, Miguel; González, Ángel F; Hernández‐Urcera, Jorge; Jighly, Abdulqader; Munyengwa, Norman; Joukhadar, Reem; Garg, Vanika; Dillon, Natalie; Copeland, Rhys G R; Singh, Jugpreet; Singh, Sukhwinder; Cazzonelli, Christopher I; Wang, Penghao; Prentis, Peter; Hardner, Craig; Varshney, Rajeev K

Strategic global data integration to improve genomic prediction accuracy in tree breeding programs facing resource limitations, a case study in mango

战略性全球数据整合以提高资源受限树木育种项目的基因组预测准确性——以芒果为例

Jighly, Abdulqader; Munyengwa, Norman; Joukhadar, Reem; Garg, Vanika; Dillon, Natalie; Copeland, Rhys G R; Singh, Jugpreet; Singh, Sukhwinder; Cazzonelli, Christopher I; Wang, Penghao; Prentis, Peter; Hardner, Craig; Varshney, Rajeev K

Population-specific pangenome unveils a third FAD2 gene and solves the peanut mid-oleic fatty acid mystery

群体特异性泛基因组揭示第三个FAD2基因,并解开花生中油酸脂肪酸之谜

Thompson, Ethan; Korani, Walid; Wu, Dongliang; Garg, Vanika; Tonnis, Brandon; Wang, Mingli; Corley Holbrook, C; Ozias-Akins, Peggy; Culbreath, Albert K; Varshney, Rajeev K; Guo, Baozhu; Clevenger, Josh P

Hordeum I genome unlocks adaptive evolution and genetic potential for crop improvement

大麦基因组揭示了适应性进化和作物改良的遗传潜力

Feng, Hao; Du, Qingwei; Jiang, Ying; Jia, Yong; He, Tianhua; Wang, Yibin; Chapman, Brett; Yu, Jiaxin; Zhang, Haiwen; Gu, Mengxue; Jiang, Mengwei; Gao, Shanshan; Zhang, Xinjie; Song, Yameng; Garg, Vanika; Varshney, Rajeev K; Wei, Jianhua; Li, Chengdao; Zhang, Xingtan; Li, Ruifen

An Australian chickpea pan-genome provides insights into genome organization and offers opportunities for enhancing drought adaptation for crop improvement

澳大利亚鹰嘴豆泛基因组研究揭示了基因组结构,并为提高作物抗旱性、改良作物提供了契机。

Garg, Vanika; Barmukh, Rutwik; Huang, Yan; Chitikineni, Annapurna; Hobson, Kristy; Yang, Bicheng; Jia, Yong; Bi, Shengnan; Kaur, Sukhjiwan; Asif, Muhammad Ahsan; Hayden, Matthew; Norton, Sally; Sharma, Darshan L; Siddique, Kadambot H M; Liu, Xin; Li, Chengdao; Varshney, Rajeev K

Chromosome-level genome assembly of the autotetraploid yellow pitaya provides novel insights into evolution of trait patterning in pitaya species with different ploidy

对自四倍体黄火龙果进行染色体水平基因组组装,为不同倍性火龙果物种性状模式的进化提供了新的见解

Zaman, Qamar U; Raza, Ali; Hui, Liu; Nazir, Mian Faisal; Garg, Vanika; Ikram, Muhammad; Wang, Guoqing; Lv, Wei; Khan, Darya; Khokhar, Aamir Ali; You, Zhang; Chitikineni, Annapurna; Usman, Babar; Jianpeng, Cui; Yang, Xulong; Zuo, Shiyou; Liu, Peifeng; Kumar, Sunjeet; Guo, Mengqi; Zhu, Zhi-Xin; Dwivedi, Girish; Qin, Yong-Hua; Varshney, Rajeev K; Wang, Hua-Feng