Reddy Venkata Ravi Prakash, Dikshit Harsh Kumar, Mishra Gyan Prakash, Aski Muraleedhar, Singh Akanksha, Bansal Ruchi, Pandey Renu, Nair Ramakrishnan Madhavan
Division of Genetics, ICAR- Indian Agricultural Research Institute, New Delhi, India.
Acharya N.G. Ranga Agricultural University Regional Agricultural Research Station, Nandyal, India.
PeerJ. 2021 Oct 8;9:e12156. doi: 10.7717/peerj.12156. eCollection 2021.
Phosphorus (P) is one of the major constraints for crop growth and development, owing to low availability and least mobility in many tropical soil conditions. Categorization of existing germplasm under P deficient conditions is a prerequisite for the selection and development of P efficient genotypes in the mungbean. In the present investigation, 36 diverse genotypes were categorized for phosphorus use efficiency traits using four different techniques for identification of phosphorus use efficient mungbean genotypes. The studied genotypes were categorized for P efficiency based on efficiency, responsiveness, and stress tolerance score of genotypes under normal and low P conditions. The mean values of traits, root dry mass, root to shoot ratio, and P utilization efficiency are significantly higher under low P conditions indicating the high responsiveness of traits to P deficiency. The presence of significant interaction between genotypes and P treatment indicates the evaluated genotypes were significantly affected by P treatment for studied traits. The total P uptake showed significant and positive correlations with root dry mass, shoot dry mass, total dry mass,and P concentration under both P regimes. Out of the four techniques used for the categorization of genotypes for P efficiency, three techniques revealed that the genotype PUSA 1333, followed by Pusa Vishal, PUSA 1031, and Pusa Ratna is efficient. The categorization based on stress tolerance score is the finest way to study variation and for the selection of contrasting genotypes for P efficiency. The identified P efficient genotypes would be valuable resources for genetic enhancement of P use efficiency in mungbean breeding.
由于在许多热带土壤条件下有效性低且移动性最差,磷(P)是作物生长发育的主要限制因素之一。对现有种质在缺磷条件下进行分类,是绿豆中磷高效基因型选择和培育的前提。在本研究中,使用四种不同技术对36个不同基因型的绿豆进行磷利用效率性状分类,以鉴定磷高效基因型。根据正常和低磷条件下基因型的效率、响应度和耐胁迫得分,对研究的基因型进行磷效率分类。在低磷条件下,根干质量、根冠比和磷利用效率等性状的平均值显著更高,表明这些性状对缺磷的响应度高。基因型与磷处理之间存在显著交互作用,表明评估的基因型在研究性状上受到磷处理的显著影响。在两种磷处理条件下,总磷吸收与根干质量、地上部干质量、总干质量和磷浓度均呈显著正相关。在用于基因型磷效率分类的四种技术中,三种技术表明基因型PUSA 1333最有效,其次是Pusa Vishal、PUSA 1031和Pusa Ratna。基于耐胁迫得分的分类是研究变异以及选择磷效率对比基因型的最佳方法。鉴定出的磷高效基因型将是绿豆育种中提高磷利用效率基因改良的宝贵资源。