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

Genomic dissection of phenological and yield-associated traits in lentil (Lens culinaris Medik.) using genome-wide association mapping

利用全基因组关联分析法对扁豆(Lens culinaris Medik.)的物候和产量相关性状进行基因组解析

Naik, Yogesh Dashrath; Sharma, Vinay Kumar; Aski, Muraleedhar S; Shivaprasad, K M; Jadhav, Mangesh Pralhad; Sriswathi, Manda; Odeny, Damaris A; Anjani, Kumari; Punnuri, Somashekhar; Varshney, Rajeev K; Kudapa, Himabindu; Thudi, Mahendar

Genome-wide association studies identified novel SNPs associated with efficient biological nitrogen fixation in chickpea (Cicer arietinum L.)

全基因组关联研究发现了与鹰嘴豆(Cicer arietinum L.)高效生物固氮相关的新的SNP。

S, Chandana B; Mahto, Rohit Kumar; Singh, Rajesh Kumar; V, Ramachandra; Singh, K K; Kushwah, Sunita; Lavanya, Gera Roopa; Kudapa, Himabindu; Kumar Valluri, Vinod; Vemula, Anil Kumar; Yadav, Raju Ratan; Yadav, Lal Bahadur; Upadhyaya, H D; Hamwieh, Aladdin; Kumar, Rajendra

Rapid generation advancement of RIL population and assessing the impact of Rhizobium nodulation on crop yields in Chickpea

快速推进重组自交系(RIL)群体发展并评估根瘤菌结瘤对鹰嘴豆产量的影响

Nandigam, SwathiRekha; Mahendrakar, Mahesh Damodhar; Srungarapu, Rajasekhar; Chand, Uttam; Gopalakrishnan, Subramaniam; Thati, Srinivas; Vatluri, Srinivasa Rao; Vadlamudi, Srinivas; Vemula, Anilkumar; Kudapa, Himabindu; Samineni, Srinivasan

Genome-wide association mapping reveals novel genes and genomic regions controlling root-lesion nematode resistance in chickpea mini core collection

全基因组关联分析揭示了鹰嘴豆微型核心种质资源中控制根结线虫抗性的新基因和基因组区域

Kumar, Ashish; Naik, Yogesh Dashrath; Gautam, Vedant; Sahu, Sunanda; Valluri, Vinod; Channale, Sonal; Bhatt, Jayant; Sharma, Stuti; Ramakrishnan, R S; Sharma, Radheshyam; Kudapa, Himabindu; Zwart, Rebecca S; Punnuri, Somashekhar M; Varshney, Rajeev K; Thudi, Mahendar

Assessing genetic diversity and performing genome-wide association studies (GWAS) using multiple marker types across desi, kabuli, and wild accessions in chickpea (Cicer arietinum L.)

利用多种标记类型对鹰嘴豆(Cicer arietinum L.)的desi、kabuli和野生种质进行遗传多样性评估和全基因组关联研究(GWAS)。

Ruperao, Pradeep; Vemula, Anil Kumar; Valluri, Vinod Kumar; Manda, Sriswathi; Srivastava, Rakesh K; Mayes, Sean; Varshney, Rajeev K; Kudapa, Himabindu

Celebrating Professor Rajeev K. Varshney's transformative research odyssey from genomics to the field on his induction as Fellow of the Royal Society

庆祝拉吉夫·K·瓦尔什尼教授从基因组学到田野调查的变革性研究历程,并祝贺他当选为英国皇家学会会员。

Garg, Vanika; Barmukh, Rutwik; Chitikineni, Annapurna; Roorkiwal, Manish; Ojiewo, Chris; Bohra, Abhishek; Thudi, Mahendar; Singh, Vikas K; Kudapa, Himabindu; Saxena, Rachit K; Fountain, Jake; Mir, Reyazul Rouf; Bharadwaj, Chellapilla; Chen, Xiaoping; Xin, Liu; Pandey, Manish K

Early Diagnosis of Cardiovascular Diseases in the Era of Artificial Intelligence: An In-Depth Review

人工智能时代心血管疾病的早期诊断:深入探讨

Almansouri, Naiela E; Awe, Mishael; Rajavelu, Selvambigay; Jahnavi, Kudapa; Shastry, Rohan; Hasan, Ali; Hasan, Hadi; Lakkimsetti, Mohit; AlAbbasi, Reem Khalid; Gutiérrez, Brian Criollo; Haider, Ali

Efficacy of two different microbial consortia on salinity tolerance in chickpea: an in-planta evaluation on biochemical, histochemical, and genomic aspects

两种不同微生物群落对鹰嘴豆耐盐性的功效:基于生化、组织化学和基因组学的植物体内评价

Sathya, Arumugam; Rehman, Vahida; Srinivas, Vadlamudi; Kudapa, Himabindu; Gopalakrishnan, Subramaniam

Editorial: Trait mining and genetic enhancement of millets and potential crops: modern prospects for ancient grains

社论:小米及潜在作物的性状挖掘和基因改良:古老谷物的现代前景

Joshi, Dinesh C; Sood, Salej; Kudapa, Himabindu; Zhou, Meiliang; Santra, Dipak

Genetic and genomic interventions in crop biofortification: Examples in millets

作物生物强化中的基因和基因组干预:以小米为例

Kudapa, Himabindu; Barmukh, Rutwik; Vemuri, Hindu; Gorthy, Sunita; Pinnamaneni, Rajasekhar; Vetriventhan, Mani; Srivastava, Rakesh K; Joshi, Priyanka; Habyarimana, Ephrem; Gupta, S K; Govindaraj, Mahalingam