Identification and analysis of gamma-irradiation-induced Stemphylium blight tolerant lentil (Lens culinaris) mutant.

Bipasha Adhikari, Anirban Roy, Hemakumar Reddy, Debarati Roy, Camellia Das, Dhriti Ghosh, Souvik Das, Suvendu Mondal, Rajib Nath, Prabir K Bhattacharyya, Sanjay K Jambulkar, Somnath Bhattacharyya
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Abstract

In the short-season winter environment of India and Bangladesh, lentil growth and seed yield are significantly hindered by foliar blight caused by Stemphylium botryosum. As the international germplasm pool lacks a resistance source, the study aims to develop a mutant population to identify a high-yielding mutant resistance against the pathogen. A gamma-irradiated population was developed based on its GR50 dose of 248.8 Gy. The screening of almost 130,000 M2 plants identified a tolerant lentil mutant, MM216. The multi-location trials revealed that MM216 showed an impressive and robust resistance; the selected mutant line could be recommended as a donor in the lentil breeding program against the pathogen globally. A 100 g seed was exposed to a GR50 dose to develop the M1 population. At maturity, at least 100 M2 seeds of each 1300 M1 plant were harvested individually. So, almost 130,000 M2 plants were screened in the disease hot spot. The selected mutants were advanced to M7 by screening in the field and challenged in controlled conditions with the pure pathogen isolate. A resistance mutant, MM216, with a per cent disease index (PDI) of <10, was identified where the mean of the check varieties, WBL 77, was >55. The resistance ability was confirmed further in controlled conditions. The fungal and plant DNA ratio was almost negligible in the tolerant mutant, whereas it was 0.17 in WBL77 at 196 h post-inoculation. The selected mutant did not display any yield penalty, but there was a delay in flowering by a week compared to WBL77.

鉴定和分析伽马辐照诱导的扁豆(Lens culinaris)耐疫霉病突变体。
在印度和孟加拉国的短季冬季环境中,扁豆的生长和种子产量受到 Stemphylium botryosum 引起的叶枯病的严重影响。由于国际种质资源库缺乏抗性来源,本研究旨在开发一个突变种群,以确定抗病原体的高产突变株。研究人员根据伽马辐照的半数致死剂量(GR50)248.8 Gy,培育了一个伽马辐照群体。通过对近 130,000 株 M2 植物的筛选,确定了一个耐受性小扁豆突变体 MM216。多地试验表明,MM216 表现出了令人印象深刻的强大抗性;所选突变品系可推荐作为全球小扁豆育种计划中抗病原体的供体。每 100 克种子暴露于 GR50 剂量,以培育 M1 群体。成熟时,每 1300 株 M1 植物中至少有 100 株 M2 种子被单独收获。因此,在病害热点地区筛选了近 130,000 株 M2 植物。筛选出的突变体通过田间筛选晋级到 M7,并在受控条件下与纯病原体分离株进行挑战。抗病突变体 MM216 的抗病指数(PDI)为 55。抗病能力在对照条件下得到了进一步证实。抗性突变体的真菌和植物 DNA 比率几乎可以忽略不计,而 WBL77 在接种后 196 小时的 DNA 比率为 0.17。与 WBL77 相比,所选突变体的产量没有受到任何影响,但开花期推迟了一周。
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