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Status and strategies in breeding for rust resistance in wheat

机译:小麦抗锈育种的现状与对策

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摘要

Wheat along with rice and maize is fulfilling half of the calories demands of the world. Global Wheat production has increased tremendously since green revolution in 1960’s and helped in minimizing hunger and malnutrition. Developing countries, which consume 60% of the global wheat production, have shown a higher yield increase than the developed countries in the past [1]. It was driven by the hunger prevalence in these countries and was attributable to the introduction of high yielding and rusted resistant semi dwarf varieties developed under the collaborative efforts of International and National research systems during the last 50 years. Whereas, climate change and the emergence of new pests and diseases are threatening the food sustainability. The evolution of new races of disease pathogens like stem rust (Ug 99) is of serious concern. In order to feed the ever increasing population we have to increase wheat production at the rate 1.6% which can be achieved by developing high yielding varieties having a good tolerance level for biotic and abiotic stresses.
机译:小麦,大米和玉米满足了世界上一半的卡路里需求。自1960年代的绿色革命以来,全球小麦产量大幅增长,并有助于最大程度地减少饥饿和营养不良。消耗了全球小麦产量60%的发展中国家的单产增长比过去的发达国家要高[1]。这是由于这些国家的饥饿流行所致,这归因于在过去50年中,在国际和国家研究系统的共同努力下,引入了高产且耐锈的半矮品种。鉴于气候变化和新病虫害的出现正威胁着食品的可持续性。诸如杆锈病(Ug 99)之类的疾病病原体的新种族的发展受到严重关注。为了养活不断增长的人口,我们必须将小麦产量提高1.6%,这可以通过开发对生物和非生物胁迫具有良好耐受水平的高产品种来实现。

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