Soujanya P Lakshmi, Sekhar J C, Karjagi Chikkappa G, Ratnavathi C V, Venkateswarlu R, Yathish K R, Suby S B, Sunil N, Rakshit Sujay
Winter Nursery Centre, Indian Council of Agricultural Research (ICAR)-Indian Institute of Maize Research, Rajendranagar, Hyderabad, India.
Delhi Unit, Indian Council of Agricultural Research (ICAR)-Indian Institute of Maize Research, Pusa, New Delhi, India.
Front Plant Sci. 2023 Jul 24;14:1167248. doi: 10.3389/fpls.2023.1167248. eCollection 2023.
Host Plant Resistance (HPR) is the most important component for sustainable management of insect pests. The purpose of the present work was to understand the role of various morphological and biochemical factors as defense mechanism and their interaction on different biological parameters attributed to survival and development of pink stem borer (PSB), Walker in maize. The resistant and moderately resistant genotypes (DMRE 63, CM 500 and WNZ Exotic pool) suffered least leaf injury rating (LIR), dead hearts (DH%), percentage stem tunneling (ST%), number of entry/exit holes (E/EH) and showed deleterious effects on biological parameters of pink stem borer as compared to susceptible ones (CM 202 and BML 6). Resistance index among the genotypes varied from 0.11 to 0.46. The variation in morphological traits such as number of nodes, internode distance and stem diameter could not distinguish all the resistant genotypes from that of susceptible genotypes in terms of its mean value. Higher levels of biochemical constituents, ., -Coumaric acid (-CA), ferulic acid (FA), acid detergent fibre (ADF) and acid detergent lignin (ADL) were observed in resistant genotypes compared to susceptible ones. Antibiosis was expressed in terms of reduced pupal weight when fed on WNZ Exotic pool, whereas larval weight and larval survival affected when fed on DMRE 63. Higher concentration of -CA content in pith of resistant maize genotypes prolonged the pupal period of pink stem borer. Higher concentration of -CA and FA contents in rind reduced the adult emergence, as they showed significant negative correlation between them. The larval period was prolonged with higher levels of ADF and ADL contents in maize genotypes either in rind or both rind and pith as both ADF and ADL content showed a significant positive correlation with the larval period. The Pearson correlation analysis of most of the biochemical constituents revealed significant negative correlation with damage parameters. The correlation coefficients between -CA with DH (%), ST (%) and E/EH were r= -0.9642, r= -0.9363, and r= -0.9646, respectively. Similarly, the correlation coefficients between FA with DH (%), ST (%) and E/EH were r= -0.9217, r= -0.9563, and r= -0.9434, respectively and ADF with DH (%), ST (%) and E/EH were r= -0.9506, r= -0.9611, and r= -0.9709, respectively. The study confirms that stem damage parameters can also be used as selection criteria along with LIR to identify resistant genotypes against pink stem borer. Based on the correlation analysis it was concluded that resistance to pink stem borer in maize is the result of interaction of several morphological and biochemical traits rather than a single factor. The findings obtained from the present study can be utilised in pink stem borer resistance breeding programmes to enhance and diversify the basis of resistance.
寄主植物抗性(HPR)是害虫可持续治理的最重要组成部分。本研究的目的是了解各种形态和生化因素作为防御机制的作用,以及它们对玉米螟(Walker)在玉米上生存和发育的不同生物学参数的相互作用。与感虫品种(CM 202和BML 6)相比,抗性和中抗品种(DMRE 63、CM 500和WNZ外来种质库)的叶片伤害率(LIR)、枯心(DH%)、茎杆隧道化百分比(ST%)、出入孔数量(E/EH)最低,并且对玉米螟的生物学参数显示出有害影响。各品种间的抗性指数在0.11至0.46之间。就平均数值而言,诸如节数、节间距离和茎直径等形态特征的差异无法区分所有抗性品种和感虫品种。与感虫品种相比,抗性品种中观察到较高水平的生化成分,即对香豆酸(-CA)、阿魏酸(FA)、酸性洗涤纤维(ADF)和酸性洗涤木质素(ADL)。以取食WNZ外来种质库时蛹重降低来表示抗生性,而取食DMRE 63时幼虫体重和幼虫存活率受到影响。抗性玉米品种髓部较高浓度的-CA含量延长了玉米螟的蛹期。外皮中较高浓度的-CA和FA含量降低了成虫羽化率,因为它们之间显示出显著的负相关。玉米品种外皮或外皮与髓部中较高水平的ADF和ADL含量延长了幼虫期,因为ADF和ADL含量均与幼虫期呈显著正相关。大多数生化成分的皮尔逊相关分析显示与损害参数呈显著负相关。-CA与DH(%)、ST(%)和E/EH之间的相关系数分别为r = -0.9642、r = -0.9363和r = -0.9646。同样,FA与DH(%)、ST(%)和E/EH之间的相关系数分别为r = -0.9217、r = -0.9563和r = -0.9434,ADF与DH(%)、ST(%)和E/EH之间的相关系数分别为r = -0.9506、r = -0.9611和r = -0.9709。该研究证实,茎杆损害参数也可与LIR一起用作选择标准,以鉴定抗玉米螟的基因型。基于相关分析得出结论,玉米对玉米螟的抗性是几种形态和生化性状相互作用的结果,而非单一因素。本研究获得的数据可用于玉米螟抗性育种计划,以加强和丰富抗性基础。