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Identification of Drought, Heat, and Combined Drought and Heat Tolerant Donors in Maize

机译:玉米的干旱,高温以及耐旱耐热组合供体的鉴定

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Low maize (Zea maysL.) yields and the impacts of climate change on maize production highlight the need to improve yields in eastern and southern Africa. Climate projections suggest higher temperatures within drought-prone areas. Research in model species suggests that tolerance to combined drought and heat stress is genetically distinct from tolerance to either stress alone, but this has not been confirmed in maize. In this study we evaluated 300 maize inbred lines testcrossed to CML539. Experiments were conducted under optimal conditions, reproductive stage drought stress, heat stress, and combined drought and heat stress. Lines with high levels of tolerance to drought and combined drought and heat stress were identified. Significant genotype ?— trial interaction and very large plot residuals were observed; consequently, the repeatability of individual managed stress trials was low. Tolerance to combined drought and heat stress in maize was genetically distinct from tolerance to individual stresses, and tolerance to either stress alone did not confer tolerance to combined drought and heat stress. This finding has major implications for maize drought breeding. Many current drought donors and key inbreds used in widely grown African hybrids were susceptible to drought stress at elevated temperatures. Several donors tolerant to drought and combined drought and heat stress, notably La Posta Sequia C7-F64-2-6-2-2 and DTPYC9-F46-1-2-1-2, need to be incorporated into maize breeding pipelines.
机译:玉米(Zea maysL。)单产低以及气候变化对玉米产量的影响凸显了提高东部和南部非洲单产的必要性。气候预测表明,干旱多发地区的气温较高。对模型物种的研究表明,对干旱和热胁迫的综合耐受性在遗传上与仅对任一胁迫的耐受性不同,但这尚未在玉米中得到证实。在这项研究中,我们评估了与CML539杂交的300个玉米自交系。在最佳条件,生殖期干旱胁迫,热胁迫以及干旱和热胁迫的综合条件下进行了实验。确定了具有高水平耐旱性以及干旱和热胁迫相结合的品系。观察到显着的基因型-试验相互作用和非常大的积积残差;因此,个别管理的压力试验的重复性很低。从基因上讲,玉米对干旱和高温胁迫的耐受性与对单个胁迫的耐受性不同,仅对任一胁迫的耐受性都不能赋予对干旱和高温胁迫的耐受性。这一发现对玉米干旱育种具有重要意义。目前,许多非洲广泛使用的杂交种的干旱供体和关键近交系在高温下易受干旱胁迫的影响。需要将几个耐旱以及干旱和高温综合胁迫的捐助者,尤其是La Posta Sequia C7-F64-2-6-2-2和DTPYC9-F46-1-2-1-2纳入玉米育种管道。

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