Crop Improvement Section, ICAR-Indian Institute of Rice Research (IIRR), Rajendranagar, Hyderabad, 500030, India.
ICAR- Sugarcane Breeding Institute (SBI), Coimbatore, 641007, India.
Sci Rep. 2020 Dec 3;10(1):21143. doi: 10.1038/s41598-020-78186-5.
Improved-Samba-Mahsuri (ISM), a high-yielding, popular bacterial blight resistant (possessing Xa21, xa13, and xa5), fine-grain type, low glycemic index rice variety is highly sensitive to low soil phosphorus (P). We have deployed marker-assisted backcross breeding (MABB) approach for targeted transfer of Pup1, a major QTL associated with low soil P tolerance, using Swarna as a donor. A new co-dominant marker, K20-1-1, which is specific for Pup1 was designed and used for foreground selection along with functional markers specific for the bacterial blight resistance genes, Xa21, xa13, and xa5. A set of 66 polymorphic SSR marker were used for the background selection along with a pair of flanking markers for the recombination selection in backcross derived progenies and in BCF generation, 12 plants, which are homozygous for Pup1, all the three bacterial blight resistance genes and possessing agro-morphological traits equivalent to or better than ISM were selected and selfed to produce BCFs. They were evaluated in plots with low soil P and normal soil P at ICAR-IIRR, Hyderabad for their low soil P tolerance, and bacterial blight resistance and superior lines were advanced to BCF. One of the lines, when tested at multiple locations in India was found promising under both normal as well as low soil P conditions.
改良版 Samba-Mahsuri(ISM)是一种高产、抗细菌性枯萎病(携带 Xa21、xa13 和 xa5)、粉质细粒型、低血糖指数的水稻品种,对低土壤磷(P)高度敏感。我们已经部署了基于标记的回交育种(MABB)方法,使用 Swarna 作为供体,靶向转移与低土壤 P 耐受性相关的主要 QTL Pup1。设计了一个新的共显性标记 K20-1-1,该标记特异性针对 Pup1,并与针对细菌性枯萎病抗性基因 Xa21、xa13 和 xa5 的功能标记一起用于前景选择。一组 66 个多态性 SSR 标记用于背景选择,以及一对侧翼标记用于回交衍生后代和 BCF 世代的重组选择,在 BCF 世代中,选择了 12 株纯合 Pup1 的植株,它们都具有三种细菌性枯萎病抗性基因,并且具有与 ISM 相当或更好的农艺形态特征,然后自交产生 BCFs。在 ICAR-IIRR,海得拉巴的低土壤 P 和正常土壤 P 条件下对它们的低土壤 P 耐受性、细菌性枯萎病抗性进行评估,并将优良品系推进到 BCF 世代。在印度的多个地点进行测试时,其中一条线在正常和低土壤 P 条件下都表现出很有前景。