玉米的变异(Zea Mays L.)对热应力的反应:混合动力车的选择标准

IF 1 4区 农林科学 Q3 AGRONOMY Turkish Journal of Field Crops Pub Date : 2021-06-15 DOI:10.17557/TJFC.943458
M. Yousaf, M. H. Bhatti, A. Ghani, Aamar Shehzad, A. Hussain, R. Shahzad, Muhammad Hafeez, M. Abbas, Muhammad Umer Khalid, Naeem Akhter
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引用次数: 3

摘要

高环境温度是挑战全球作物生产力和可持续性的最令人担忧的气候因素之一。解决这个问题的一个有效方法是通过评估栽培种质来开发气候智能、耐热的玉米杂交种。本研究的主要目的是评估本地和跨国玉米杂交种在最佳和热胁迫条件下的表现,并制定耐热玉米杂交种的筛选标准。Sahiwal Yusafwala玉米和小米研究所在连续三个春季(2017-18年、2018-19年和2019-20年)的最佳和热胁迫条件下对九个玉米杂交种进行了评估,其中包括本地和跨国玉米。结果表明,在两种条件下以及在所有三个季节,玉米杂交种之间都存在高度显著的差异。在胁迫条件下,籽粒产量与净光合速率(0.735)、脱壳率(0.910)和相对细胞损伤率(-0.775)高度相关。聚类和双批次分析表明,两个地方玉米杂交种YH-5507和YH-5427具有高度耐热性,而跨国玉米杂交种NK-8711、P-1543和DK-6724仅在控制/优化条件下具有高产性。这些杂交种可以成为开发气候智能玉米基因型的宝贵基因/等位基因来源。
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VARIATIONS AMONG MAIZE (Zea Mays L.) HYBRIDS IN RESPONSE TO HEAT STRESS: HYBRIDS SELECTION CRITERIA
High ambient temperature is one of the most alarming climatic factors in challenging the productivity and sustainability of crops worldwide. An effective way to cope this problem is the development of climate smart, heat resilient maize hybrids through evaluating the cultivated germplasm. The main objective of current study was to evaluate local and multinational maize hybrids for their performance under optimal and heat stress conditions and to devise a selection criterion for the identification of heat tolerant maize hybrids. Nine maize hybrids, including local and multinational, were evaluated under optimal and heat stress conditions across three consecutive spring seasons (2017-18, 2018-19 and 2019-20) at Maize and Millets Research Institute, Yusafwala, Sahiwal. Results revealed the presence of highly significant differences among maize hybrids under both conditions and for all three seasons. Kernel yield was found to be highly correlated with net photosynthetic rate (0.735), shelling percentage (0.910) and relative cell injury percentage (-0.775) under stress conditions. Cluster and biplot analysis unveiled that two local maize hybrids YH-5507 and YH-5427 were highly heat tolerant while multinational hybrids i.e. NK-8711, P-1543 and DK-6724 were highly productive under control/optimal conditions only. These hybrids can be invaluable sources of genes/alleles for the development of climate smart maize genotypes.
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来源期刊
CiteScore
1.50
自引率
12.50%
发文量
21
审稿时长
>12 weeks
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