Impact of mutant varieties in Malaysia: challenges and future perspectives for mutation breeding.

R. Ibrahim
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Abstract

Abstract Malaysia has made substantial progress in plant mutation breeding with the use of nuclear techniques and related biotechnologies, not only in the development of new mutant varieties but also in the establishment of an excellent nuclear research centre. A total of 53 mutant varieties have been developed, including rice Oryza sativa (19), banana Musa acuminata (one), groundnut Arachis hypogaea (two), orchid Dendrobium 'Sonia' (six), chrysanthemum Chrysanthemum morifolium (seven), hibiscus Hibiscus rosa-sinensis (three), roselles Hibiscus sabdariffa L. (three) and other ornamental and landscaping plants (12). Most of the new ornamental varieties have been developed by both acute and chronic gamma-ray irradiation of seeds, rooted cuttings, bulbs and tissue cultures. Food crops that have an economic impact on sustainable agricultural production are mutant varieties of banana ('Novaria') and rice (MRQ74, MR219-9 and MR219-4). 'Novaria' is a selection made from a mutant, 'GN-60A', of 'Grande Naine' (AAA Musa) identified from gamma-ray treated populations of the Biotechnology Laboratory in Seibersdorf, Austria. 'Novaria' was the first mutant variety, officially released in 1995 by the Malaysian Nuclear Agency as a new variety for its improved characteristics such as early flowering, short stature and high yield. MRQ74 is a type of high-quality fragrant rice with newly induced traits such as resistance to blast, long and slender grain shape, non-sticky and with the elongation properties of cooked rice similar to those of Basmati-type rice. It is an indirect mutant variety released in 2003 and one of its parental lines for cross-breeding was the mutant 'Mahsuri', which was developed through mutation breeding using gamma-rays. In 2014, two new mutant varieties of rice, 'MR219-9' and 'MR219-4', which are drought tolerant, high yielding and resistant to blast, were selected from gamma irradiated material. Despite these achievements, applications of induced mutation have decreased during the past 10 years due to reduced funding. Mutation breeding is still a promising technique for the development of novel varieties which in combination with advanced molecular genetics can bring plant mutation breeding into a new era.
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突变品种在马来西亚的影响:突变育种的挑战和未来展望。
马来西亚利用核技术和相关生物技术在植物突变育种方面取得了实质性进展,不仅开发了新的突变品种,而且建立了一个优秀的核研究中心。共培育了53个突变品种,包括水稻Oryza sativa(19个)、香蕉Musa acuminata(1个)、花生arachhis hypogaea(2个)、兰花石斛(6个)、菊花菊花(7个)、芙蓉(3个)、玫瑰芙蓉(3个)和其他观赏和园林植物(12个)。大多数观赏新品种都是通过对种子、根茎、鳞茎和组织培养进行急性和慢性伽玛射线照射而培育出来的。对可持续农业生产具有经济影响的粮食作物是香蕉(‘Novaria’)和水稻(MRQ74、MR219-9和MR219-4)的突变品种。“Novaria”是由“Grande Naine”(AAA Musa)的突变体“GN-60A”选育而成,该突变体是从奥地利塞伯斯多夫生物技术实验室的伽玛射线处理种群中鉴定出来的。“Novaria”是第一个突变品种,于1995年由马来西亚原子能机构正式发布,作为一个新品种,具有开花早、身材矮、产量高等改良特征。MRQ74是一种具有抗稻瘟病、粒形细长、不粘、延伸率与巴斯马特型水稻相似等新诱导性状的优质香稻。这是2003年发布的一种间接突变品种,其杂交育种的亲本系之一是突变体“Mahsuri”,这是通过使用伽马射线进行突变育种而开发的。2014年,从伽玛辐照材料中选育出耐旱、高产、抗稻瘟病的水稻突变品种MR219-9和MR219-4。尽管取得了这些成就,但由于资金减少,诱导突变的应用在过去10年中有所减少。突变育种仍然是一种很有前途的新品种培育技术,它与先进的分子遗传学相结合,将使植物突变育种进入一个新的时代。
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Production of haploid embryos and plants in Iranian melon (Cucumis melo L.) through irradiated pollen-induced parthenogenesis. Progress of mutant resource development and tilling on starch biosynthesis in wheat. Scandinavian mutation research during the past 90 years - a historical review. Impact of mutant varieties in Malaysia: challenges and future perspectives for mutation breeding. Induced mutagenesis for improvement of bean (Phaseolus vulgaris L.) production in Bulgaria.
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