Hou Lu, Chen Xianming, Wang Meinan, See Deven R, Chao Shiaoman, Bulli Peter, Jing Jinxue
Key Laboratory of Agricultural Integrated Pest Management, Institute of Plant Protection, Qinghai Academy of Agriculture and Forestry Sciences, Xining, Qinghai, China; Department of Plant Pathology, Washington State University, Pullman, Washington, United States of America; State Key Laboratory of Crop Stress Biology in Arid Areas and College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, China.
Department of Plant Pathology, Washington State University, Pullman, Washington, United States of America; US Department of Agriculture, Agricultural Research Service, Wheat Genetics, Quality, Physiology and Disease Research Unit, Pullman, Washington, United States of America.
PLoS One. 2015 May 13;10(5):e0126794. doi: 10.1371/journal.pone.0126794. eCollection 2015.
Winter wheat Druchamp has both high-temperature adult-plant (HTAP) resistance and all-stage resistance to stripe rust caused by Puccinia striiformis f. sp. tritici (Pst). The HTAP resistance in Druchamp is durable as the variety has been resistant in adult-plant stage since it was introduced from France to the United States in late 1940s. To map the quantitative trait loci (QTL) for stripe rust resistance, an F8 recombinant inbred line (RIL) population from cross Druchamp × Michigan Amber was phenotyped for stripe rust response in multiple years in fields under natural infection and with selected Pst races under controlled greenhouse conditions, and genotyped with simple sequence repeat (SSR) and single nucleotide polymorphism (SNP) markers. Composite interval mapping (CIM) identified eight HTAP resistance QTL and three all-stage resistance QTL. Among the eight HTAP resistance QTL, QYrdr.wgp-1BL.2 (explaining 2.36-31.04% variation), QYrdr.wgp-2BL (2.81-15.65%), QYrdr.wgp-5AL (2.27-17.22%) and QYrdr.wgp-5BL.2 (2.42-15.13%) were significant in all tests; and QYrdr.wgp-1BL.1 (1.94-10.19%), QYrdr.wgp-1DS (2.04-27.24%), QYrdr.wgp-3AL (1.78-13.85%) and QYrdr.wgp-6BL.2 (1.69-33.71%) were significant in some of the tests. The three all-stage resistance QTL, QYrdr.wgp-5BL.1 (5.47-36.04%), QYrdr.wgp-5DL (9.27-11.94%) and QYrdr.wgp-6BL.1 (13.07-20.36%), were detected based on reactions in the seedlings tested with certain Pst races. Among the eleven QTL detected in Druchamp, at least three (QYrdr.wgp-5DL for race-specific all-stage resistance and QYrdr.wgp-3AL and QYrdr.wgp-6BL.2 for race non-specific HTAP resistance) are new. All these QTL, especially those for durable HTAP resistance, and their closely linked molecular markers could be useful for developing wheat cultivars with durable resistance to stripe rust.
冬小麦品种Druchamp对由条形柄锈菌小麦专化型(Pst)引起的条锈病具有高温成株期(HTAP)抗性和全生育期抗性。Druchamp的HTAP抗性持久,自20世纪40年代末从法国引入美国以来,该品种在成株期一直保持抗性。为了定位条锈病抗性的数量性状位点(QTL),对Druchamp×密歇根琥珀杂交产生的F8重组自交系(RIL)群体在田间自然感染条件下多年的条锈病反应进行了表型分析,并在可控温室条件下用选定的Pst小种进行了测试,同时用简单序列重复(SSR)和单核苷酸多态性(SNP)标记进行了基因分型。复合区间作图(CIM)鉴定出8个HTAP抗性QTL和3个全生育期抗性QTL。在这8个HTAP抗性QTL中,QYrdr.wgp - 1BL.2(解释变异2.36 - 31.04%)、QYrdr.wgp - 2BL(2.81 - 15.65%)、QYrdr.wgp - 5AL(2.27 - 17.22%)和QYrdr.wgp - 5BL.2(2.42 - 15.13%)在所有测试中均显著;而QYrdr.wgp - 1BL.1(1.94 - 10.19%)、QYrdr.wgp - 1DS(2.04 - 27.24%)、QYrdr.wgp - 3AL(1.78 - 13.85%)和QYrdr.wgp - 6BL.2(1.69 - 33.71%)在部分测试中显著。这3个全生育期抗性QTL,QYrdr.wgp - 5BL.1(5.47 - 36.04%)、QYrdr.wgp - 5DL(9.27 - 11.94%)和QYrdr.wgp - 6BL.1(13.07 - 20.36%),是根据用特定Pst小种测试幼苗的反应检测到的。在Druchamp中检测到的11个QTL中,至少有3个(针对小种特异性全生育期抗性的QYrdr.wgp - 5DL以及针对非小种特异性HTAP抗性的QYrdr.wgp - 3AL和QYrdr.wgp - 6BL.2)是新发现的。所有这些QTL,尤其是那些具有持久HTAP抗性的QTL及其紧密连锁的分子标记,可用于培育对条锈病具有持久抗性的小麦品种。