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

Deciphering Seedling-Stage Salinity Stress Tolerance in Maize Genotypes Through Morpho-Physiological and Ionic Traits

通过形态生理和离子性状解析玉米基因型幼苗期盐胁迫耐受性

Kumar, Pardeep; T V, Vineeth; Singh, Shyam Bir; Choudhary, Mukesh; Kumar, Bhupender; Kumar, Anuj; Rakshit, Sujay; Jat, Hanuman Sahay

Chloroplast genome sequencing in winged bean (Psophocarpus tetragonolobus L.) and comparative analysis with other legumes

对翼豆(Psophocarpus tetragonolobus L.)进行叶绿体基因组测序,并与其他豆科植物进行比较分析

Singh, Nikhil Kumar; Singh, Binay K; Gidhi, Anupama; Srivastava, Harsha; Pandey, Avinash; Kumar, Sudhir; Pattanayak, A; Bhadana, V P; Rakshit, Sujay; Tribhuvan, Kishor U

De Novo Genome Assembly and Annotation of the Arunachali Yak.

阿鲁纳恰尔牦牛的从头基因组组装和注释

Pukhrambam Martina, Tribhuvan Kishor U, Paul Vijay, Pandey Avinash, Dutta Atrayee, Bhadana Vijai Pal, Dabas Suresh, Ramakrushna G I, Raghavendra K P, Verma Pooja, Prasad Y G, Mohanty A K, Rakshit Sujay, Sarkar Mihir

Understanding the genetic basis of resistance to maydis leaf blight and maturity-related traits in corn

了解玉米抗玉米叶枯病和成熟相关性状的遗传基础

Kumar, Bhupender; Pushpendra; Kumar, Santosh; Kumar, Pardeep; Singh, Rakhi; Yankanchi, Shrikant; Sarkar, Debjyoti; Nath, Chhavi; Jat, Bahadur Singh; Bagaria, Pravin Kumar; Aggarwal, Sumit Kumar; Piyal, Prahlad; Singh, S B; Rakshit, Sujay; Jat, H S

Integrative genomic and machine learning approaches reveal evolutionary signatures in the winged bean mitochondrial genome

整合基因组学和机器学习方法揭示了翼豆线粒体基因组中的进化特征

Singh, Nikhil Kumar; Singh, Binay K; Kumar, Piyush; Pandey, Avinash; Kumar, Sudhir; Bishi, Sujit Kumar; Pattanayak, A; Bhadana, V P; Rakshit, Sujay; Tribhuvan, Kishor U

Comparative transcriptome analysis of bull X- and Y-spermatozoa

公牛X精子和Y精子的比较转录组分析

Umar, Sofi Imran Ul; Prasad, Sushil; Naskar, Soumen; Das, Pranab Jyoti; Sharma, Mridula; Pattanayak, Arunava; Murasing, Dhanu Kumar; Bhadana, Vijai Pal; Rakshit, Sujay

Meta-QTL analysis for mining of candidate genes and constitutive gene network development for viral disease resistance in maize (Zea mays L.)

利用 Meta-QTL 分析挖掘玉米(Zea mays L.)抗病毒病候选基因并构建组成基因网络

Gupta, Mamta; Choudhary, Mukesh; Singh, Alla; Sheoran, Seema; Kumar, Harish; Singla, Deepak; Bohra, Abhishek; Rakshit, Sujay

Development of high-yielding white maize hybrids with better chapatti-making quality compared to traditionally used local landraces

与传统地方品种相比,培育出产量高、制作印度薄饼品质更好的白玉米杂交品种

Arora, Arushi; Das, Abhijit Kumar; Kumar, Ramesh; Sharma, Savita; Kaur, Navjot; Dixit, Shubhank; Kaur, Yashmeet; Saxena, D C; Rakshit, Sujay

Genetic and molecular understanding for the development of methionine-rich maize: a holistic approach

从遗传和分子层面理解富含蛋氨酸玉米的培育:一种整体方法

Devi, Veena; Bhushan, Bharat; Gupta, Mamta; Sethi, Mehak; Kaur, Charanjeet; Singh, Alla; Singh, Vishal; Kumar, Ramesh; Rakshit, Sujay; Chaudhary, Dharam P

Expression Dynamics of lpa1 Gene and Accumulation Pattern of Phytate in Maize Genotypes Possessing opaque2 and crtRB1 Genes at Different Stages of Kernel Development

玉米籽粒发育不同阶段含opaque2和crtRB1基因的玉米基因型中lpa1基因的表达动态及植酸积累模式

Bhatt, Vinay; Muthusamy, Vignesh; Panda, Kusuma Kumari; Katral, Ashvinkumar; Chhabra, Rashmi; Mishra, Subhra J; Gopinath, Ikkurti; Zunjare, Rajkumar U; Neeraja, Chirravuri Naga; Rakshit, Sujay; Yadava, Devendra K; Hossain, Firoz