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利用分子标记辅助选择培育优质纤维陆地棉品种‘Ravnaq’系列

Development of Superior Fibre Quality Upland Cotton Cultivar Series 'Ravnaq' Using Marker-Assisted Selection.

作者信息

Darmanov Mukhtor M, Makamov Abdusalom K, Ayubov Mirzakamol S, Khusenov Naim N, Buriev Zabardast T, Shermatov Shukhrat E, Salakhutdinov Ilkhom B, Ubaydullaeva Khurshida A, Norbekov Jurabek K, Kholmuradova Maftuna M, Narmatov Sardor E, Normamatov Ilyos S, Abdurakhmonov Ibrokhim Y

机构信息

Center of Genomics and Bioinformatics, Academy of Sciences of Uzbekistan, Tashkent, Uzbekistan.

出版信息

Front Plant Sci. 2022 May 24;13:906472. doi: 10.3389/fpls.2022.906472. eCollection 2022.

Abstract

Marker-assisted selection (MAS) helps to shorten breeding time as well as reduce breeding resources and efforts. In our MAS program, we have targeted one of previously reported LD-blocks with its simple sequence repeat (SSR) marker(s), putatively associated with, at least, four different fibre quality QTLs such as fibre length, strength, micronaire and uniformity. In order to transfer targeted QTLs from a donor genotype to a cultivar of choice, we selected donor genotypes L-141 and LN-1, possessing a fibre quality trait-associated LD-block from the chromosome 7/16. We crossed the donor lines with local elite cultivars 'Andijan-35' and 'Mekhnat' as recipients. As a result, two segregating populations on LD-block of interest containing fibre QTLs were developed through backcrossing (BC) of F hybrids with their relative recipients (used as recurrent parents) up to five generations. In each BC and segregating BC-F populations, a transfer of targeted LD-block/QTLs was monitored using a highly polymorphic SSR marker, BNL1604 genotype. The homozygous cultivar genotypes with superior fibre quality and agronomic traits, bearing a targeted LD-block of interest, were individually selected from self-pollinated BCF (BCF) population plants using the early-season PCR screening analysis of BNL1604 marker locus and the end-of-season fibre quality parameters. Only improved hybrids with superior fibre quality compared to original recipient parent were used for the next cycle of breeding. We successfully developed two novel MAS-derived cotton cultivars (named as 'Ravnaq-1' and 'Ravnaq-2') of BCF generations. Both novel MAS cultivars possessed stronger and longer fibre as well as improved fibre uniformity and micronaire compared to the original recurrent parents, 'Andijan-35' and 'Mekhnat'. Our efforts demonstrated a precise transfer of the same LD-block with, at least, four superior fibre QTLs in the two independent MAS breeding experiments exploiting different parental genotypes. Results exemplify the feasibility of MAS in cotton breeding.

摘要

标记辅助选择(MAS)有助于缩短育种时间,同时减少育种资源和工作量。在我们的MAS计划中,我们利用其简单序列重复(SSR)标记靶向了先前报道的一个连锁不平衡(LD)区域,该区域至少与四个不同的纤维品质数量性状位点(QTL)相关,如纤维长度、强度、马克隆值和均匀度。为了将目标QTL从供体基因型转移到所选品种中,我们选择了具有来自7号/16号染色体上与纤维品质性状相关的LD区域的供体基因型L-141和LN-1。我们将供体系与当地优良品种“Andijan-35”和“Mekhnat”作为受体进行杂交。结果,通过将F1杂种与其相对受体(用作轮回亲本)回交(BC)多达五代,培育出了两个包含纤维QTL的感兴趣LD区域的分离群体。在每个BC和分离的BC-F群体中,使用高度多态的SSR标记BNL1604基因型监测目标LD区域/QTL的转移。利用BNL1604标记位点的季初PCR筛选分析和季末纤维品质参数,从自花授粉的BCF(BCF)群体植株中单独选择具有优良纤维品质和农艺性状且带有感兴趣目标LD区域的纯合品种基因型。仅将与原始受体亲本相比具有优良纤维品质的改良杂种用于下一轮育种。我们成功培育出了两个BCF代的新型MAS衍生棉花品种(命名为“Ravnaq-1”和“Ravnaq-2”)。与原始轮回亲本“Andijan-35”和“Mekhnat”相比,这两个新型MAS品种都具有更强、更长的纤维,以及改良的纤维均匀度和马克隆值。我们的工作证明了在利用不同亲本基因型的两个独立MAS育种实验中,精确转移了至少含有四个优良纤维QTL的相同LD区域。结果例证了MAS在棉花育种中的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dea/9168987/b17333e26b4e/fpls-13-906472-g001.jpg

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