Noreen Asima, Hameed Amjad, Shah Tariq Mahmud
Nuclear Institute for Agriculture and Biology College, Pakistan Institute of Engineering and Applied Sciences (NIAB-C, PIEAS), Faisalabad, Pakistan.
Front Plant Sci. 2024 May 10;15:1335158. doi: 10.3389/fpls.2024.1335158. eCollection 2024.
Chickpea pod borer (CPB) () is one of the major pests, causing significant yield losses. The objectives were to screen chickpea mutants for pod borer resistance/tolerance under field conditions and identification of biochemical markers of tolerance. Chickpea mutant CM216-A/15 had highest leaf (25 trichomes/mm) and stem trichome density (17 trichomes/mm) with least pod damage at Kallur Kot and highest pod weight per plant (22.8 ± 2.6g) at AZRI. Higher total phenolic contents (TPCs) and antioxidant capacity were detected in tolerant mutants, i.e., CM216-A/15 and CM664/15. TPC was positively associated with pod yield and had negative correlation with pod damage. Mutants CM216-A/15, CM664/15, and CM766/15 depicted the highest resilience to CPB, owing to higher hairiness, better antioxidant defense response, and lower levels of hydrolytic enzymes and sugars. Identified biochemical markers like TPC, total oxidant status, superoxide dismutase, and pigments can be used for screening of CPB-tolerant/resistant mutants.
鹰嘴豆荚螟(CPB)是主要害虫之一,会造成显著的产量损失。目的是在田间条件下筛选鹰嘴豆突变体的抗/耐荚螟能力,并鉴定耐受性的生化标记。鹰嘴豆突变体CM216 - A/15在卡卢尔科特的叶片(25个毛状体/毫米)和茎毛状体密度最高(17个毛状体/毫米),荚果损伤最少,在农业研究中心(AZRI)单株荚果重量最高(22.8±2.6克)。在耐虫害突变体CM216 - A/15和CM664/15中检测到较高的总酚含量(TPC)和抗氧化能力。总酚含量与荚果产量呈正相关,与荚果损伤呈负相关。突变体CM216 - A/15、CM664/15和CM766/15对鹰嘴豆荚螟表现出最高的抗性,这归因于其较高的多毛性、更好的抗氧化防御反应以及较低水平的水解酶和糖分。已鉴定的生化标记如总酚含量、总氧化剂状态、超氧化物歧化酶和色素可用于筛选耐鹰嘴豆荚螟的突变体。