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Identification of Tropical Maize Germplasm with Tolerance to Drought, Nitrogen Deficiency, and Combined Heat and Drought Stresses

机译:热带玉米种质对干旱,氮缺乏,高温和干旱胁迫的耐受性鉴定

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The objective of this study was to evaluate Maize (Zea mays L.) elite lines currently available in CIMMYTa€?s lowland tropical breeding program in Latin America under multiple abiotic stresses and identify lines with tolerance to drought, N deficiency, and combined heat and drought stress (HTDS). An incomplete line-by-tester design was used to evaluate 436 testcrosses under nonstressed conditions, 507 under N deficiency, 417 under drought stress (DS), and 368 under HTDS in 30 season-by-location combinations between 2012 and 2015. Elite lines CLRCY016, CML269, CML550, and CML551 performed well across all conditions, while CLQRCWQ118, CLWN306, and CML576 showed good performance under DS and N deficiency. CML574 was tolerant to DS and HTDS. Moreover, CML550 and CML574 are known for their partial tolerance to maize lethal necrosis. Grain yield measured under DS was to some extent predictive of attainable grain yield under N-deficient conditions (r = 0.65; P 0.01) and HTDS (r = 0.54; P 0.01) as indicated by the correlation across treatments. The fact that only a few lines were tolerant across treatments re-emphasizes the need to separately screen germplasm under each abiotic stress. Based on high best linear unbiased predicted general combining ability (BLUP GCA), it will be possible to develop hybrids tolerant to multiple abiotic stresses without incurring any yield penalty under nonstressed conditions using these inbred lines.
机译:这项研究的目的是评估在多种非生物胁迫下在拉丁美洲的CIMMYTa的低地热带育种计划中可获得的玉米(Zea mays L.)优良品系,并鉴定对干旱,N缺乏以及高温和高温的耐受性良好的品系。干旱胁迫(HTDS)。在2012年至2015年之间,在30个按季节定位的组合中,采用了不完整的逐项测试器设计来评估436个在非压力条件下的测交,在缺氮条件下的507个,在干旱胁迫(DS)下的417个,在HTDS下的368个。 CLRCY016,CML269,CML550和CML551在所有条件下均表现良好,而CLQRCWQ118,CLWN306和CML576在DS和N缺乏下表现出良好的性能。 CML574耐受DS和HTDS。此外,CML550和CML574以其对玉米致死性坏死的部分耐受性而闻名。 DS处理测得的谷物产量在一定程度上可预测在缺氮条件下(r = 0.65; P <0.01)和HTDS(r = 0.54; P <0.01)可获得的谷物产量,这与不同处理之间的相关性有关。在处理过程中只有少数几株耐受的事实再次强调了在每种非生物胁迫下需要分别筛选种质的需要。基于最高的线性无偏预测一般组合能力(BLUP GCA),使用这些自交系,有可能开发出耐多种非生物胁迫的杂种,而不会在非胁迫条件下产生任何产量损失。

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