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甘薯对甘薯小象甲抗性、块根产量和干物质含量的配合力及遗传力分析

Combining ability and heritability analysis of sweetpotato weevil resistance, root yield, and dry matter content in sweetpotato.

作者信息

Mugisa Immaculate, Karungi Jeninah, Musana Paul, Odama Roy, Alajo Agnes, Chelangat Doreen M, Anyanga Milton O, Oloka Bonny M, Gonçalves Dos Santos Iara, Talwana Herbert, Ochwo-Ssemakula Mildred, Edema Richard, Gibson Paul, Ssali Reuben, Campos Hugo, Olukolu Bode A, da Silva Pereira Guilherme, Yencho Craig, Yada Benard

机构信息

National Crops Resources Research Institute (NaCRRI), NARO, Kampala, Uganda.

Department of Agricultural Production, Makerere University, Kampala, Uganda.

出版信息

Front Plant Sci. 2022 Sep 7;13:956936. doi: 10.3389/fpls.2022.956936. eCollection 2022.

Abstract

Efficient breeding and selection of superior genotypes requires a comprehensive understanding of the genetics of traits. This study was aimed at establishing the general combining ability (GCA), specific combining ability (SCA), and heritability of sweetpotato weevil ( spp.) resistance, storage root yield, and dry matter content in a sweetpotato multi-parental breeding population. A population of 1,896 F clones obtained from an 8 × 8 North Carolina II design cross was evaluated with its parents in the field at two sweetpotato weevil hotspots in Uganda, using an augmented row-column design. Clone roots were further evaluated in three rounds of a no-choice feeding laboratory bioassay. Significant GCA effects for parents and SCA effects for families were observed for most traits and all variance components were highly significant ( ≤ 0.001). Narrow-sense heritability estimates for weevil severity, storage root yield, and dry matter content were 0.35, 0.36, and 0.45, respectively. Parental genotypes with superior GCA for weevil resistance included "Mugande," NASPOT 5, "Dimbuka-bukulula," and "Wagabolige." On the other hand, families that displayed the highest levels of resistance to weevils included "Wagabolige" × NASPOT 10 O, NASPOT 5 × "Dimbuka-bukulula," "Mugande" × "Dimbuka-bukulula," and NASPOT 11 × NASPOT 7. The moderate levels of narrow-sense heritability observed for the traits, coupled with the significant GCA and SCA effects, suggest that there is potential for their improvement through conventional breeding hybridization and progeny selection and advancement. Although selection for weevil resistance may, to some extent, be challenging for breeders, efforts could be boosted through applying genomics-assisted breeding. Superior parents and families identified through this study could be deployed in further research involving the genetic improvement of these traits.

摘要

高效培育和选择优良基因型需要全面了解性状的遗传学。本研究旨在确定甘薯多亲本育种群体中甘薯象甲(甘薯属)抗性、贮藏根产量和干物质含量的一般配合力(GCA)、特殊配合力(SCA)和遗传力。利用增广行列设计,在乌干达的两个甘薯象甲高发区的田间,对从8×8北卡罗来纳州II设计杂交获得的1896个F克隆群体及其亲本进行了评估。克隆根在三轮无选择取食实验室生物测定中进一步评估。大多数性状观察到亲本的显著GCA效应和家系的SCA效应,所有方差分量都极显著(≤0.001)。象甲严重程度、贮藏根产量和干物质含量的狭义遗传力估计值分别为0.35、0.36和0.45。对象甲具有优良GCA的亲本基因型包括“Mugande”、NASPOT 5、“Dimbuka-bukulula”和“Wagabolige”。另一方面,表现出最高象甲抗性水平的家系包括“Wagabolige”×NASPOT 10 O、NASPOT 5דDimbuka-bukulula”、“Mugande”דDimbuka-bukulula”和NASPOT 11×NASPOT 7。观察到的性状狭义遗传力水平适中,再加上显著的GCA和SCA效应,表明通过常规育种(杂交和后代选择与推进)有可能对其进行改良。虽然对象甲抗性的选择在一定程度上可能对育种者具有挑战性,但通过应用基因组辅助育种可以加大努力。通过本研究鉴定出的优良亲本和家系可用于进一步涉及这些性状遗传改良的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aab/9490021/f779e355db63/fpls-13-956936-g001.jpg

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