Chowdhury Saikat, Bansal Shreshtha, Jha Shailendra K, Saharan M S, M Niranjana, K Raghunandan, Choudhary Manish K, Agarwal Priyanka, Mallick Niharika
Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.
Division of Plant Pathology, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.
Sci Rep. 2024 Apr 24;14(1):9408. doi: 10.1038/s41598-024-59902-x.
Triticum militinae (2n = 4X = 28, AAGG), belonging to the secondary gene pool of wheat, is known to carry resistance to many diseases. Though some disease resistance genes were reported from T. timopheevii, the closest wild relative of T. militinae, there are no reports from T. militinae. Twenty-one T. militinae Derivatives (TMD lines) developed at the Division of Genetics, IARI, New Delhi, were evaluated for leaf and stripe rusts at seedling and adult plant stages. Eight TMD lines (6-4, 6-5, 11-6, 12-4, 12-8, 12-12, 13-7 and 13-9) showed seedling resistance to both leaf and stripe rusts while six TMD lines (7-5, 7-6, 11-5, 13-1, 13-3 and 13-4) showed seedling resistance to leaf rust but adult plant resistance to stripe rust and three TMD lines (9-1, 9-2 and 15) showed seedling resistance to leaf rust but susceptibility to stripe rust. Three TMD lines (2-7, 2-8 and 6-1) with adult plant resistance to leaf and stripe rusts were found to carry the known gene Lr34/Yr18. Ten TMD lines (7-5, 7-6, 9-1, 9-2, 11-5, 11-6, 12-12, 12-4, 12-8, and 15) with seedling resistance to leaf rust, showing absence of known genes Lr18 and Lr50 with linked markers requires further confirmation by the test of allelism studies. As not a single stripe rust resistance gene has been reported from T. militinae or its close relative T. timpopheevii, all the 8 TMD lines (6-4, 6-5, 11-6,12-4, 12-8, 12-12, 13-7 and 13-9) identified of carrying seedling resistance to stripe rust and 3 TMD lines (13-1, 13-3 and 13-4) identified of carrying adult plant resistance to stripe rust are expected to carry unknown genes. Also, all the TMD lines were found to be cytologically stable and thus can be used in inheritance and mapping studies.
密穗小麦(2n = 4X = 28,AAGG)属于小麦的二级基因库,已知其对多种病害具有抗性。虽然从小麦的近缘野生种提莫菲维小麦中报道了一些抗病基因,但密穗小麦中尚无相关报道。对在新德里印度农业研究协会遗传学部门培育的21个密穗小麦衍生物系(TMD系)进行了苗期和成株期叶锈病和条锈病抗性评估。8个TMD系(6 - 4、6 - 5、11 - 6、12 - 4、12 - 8、12 - 12、13 - 7和13 - 9)对叶锈病和条锈病均表现出苗期抗性,6个TMD系(7 - 5、7 - 6、11 - 5、13 - 1、13 - 3和13 - 4)对叶锈病表现出苗期抗性,但对条锈病表现出成株期抗性,3个TMD系(9 - 1、9 - 2和15)对叶锈病表现出苗期抗性,但对条锈病敏感。发现3个对叶锈病和条锈病具有成株期抗性的TMD系(2 - 7、2 - 8和6 - 1)携带已知基因Lr34/Yr18。10个对叶锈病具有苗期抗性的TMD系(7 - 5、7 - 6、9 - 1、9 - 2、11 - 5、11 - 6、12 - 12、12 - 4、12 - 8和15),其与连锁标记显示不存在已知基因Lr18和Lr50,需要通过等位性测验进一步确认。由于尚未从密穗小麦或其近缘种提莫菲维小麦中报道过单个条锈病抗性基因,所有鉴定出对条锈病具有苗期抗性的8个TMD系(6 - 4、6 - 5、11 - 6、12 - 4、12 - 8、12 - 12、13 - 7和13 - 9)以及鉴定出对条锈病具有成株期抗性的3个TMD系(13 - 1、13 - 3和13 - 4)预计携带未知基因。此外,所有TMD系在细胞学上均稳定,因此可用于遗传和定位研究。