Zeng Zhankui, Zhao Dehui, Wang Chunping, Yan Xuefang, Song Junqiao, Chen Peng, Lan Caixia, Singh Ravi P
College of Agronomy, Henan University of Science and Technology, Luoyang, Henan, China.
The Shennong Laboratory, Zhengzhou, Henan, China.
Front Plant Sci. 2023 Feb 10;14:1072233. doi: 10.3389/fpls.2023.1072233. eCollection 2023.
Genetic dissection of yield component traits including kernel characteristics is essential for the continuous improvement in wheat yield. In the present study, one recombinant inbred line (RIL) F population derived from a cross between Avocet and Chilero was used to evaluate the phenotypes of kernel traits of thousand-kernel weight (TKW), kernel length (KL), and kernel width (KW) in four environments at three experimental stations during the 2018-2020 wheat growing seasons. The high-density genetic linkage map was constructed with the diversity arrays technology (DArT) markers and the inclusive composite interval mapping (ICIM) method to identify the quantitative trait loci (QTLs) for TKW, KL, and KW. A total of 48 QTLs for three traits were identified in the RIL population on the 21 chromosomes besides 2A, 4D, and 5B, accounting for 3.00%-33.85% of the phenotypic variances. Based on the physical positions of each QTL, nine stable QTL clusters were identified in the RILs, and among these QTL clusters, was tightly linked to the DArT marker interval -, explaining 10.31%-33.85% of the phenotypic variances. A total of 347 high-confidence genes were identified in a 34.74-Mb physical interval. and were among the putative candidate genes associated with kernel traits, and they were expressed during grain development. Moreover, we also developed high-throughput kompetitive allele-specific PCR (KASP) markers of , validated in a natural population of 114 wheat varieties. The study provides a basis for cloning the functional genes underlying the QTL for kernel traits and a practical and accurate marker for molecular breeding.
对包括籽粒特征在内的产量构成性状进行遗传剖析,对于小麦产量的持续提高至关重要。在本研究中,利用一个由阿沃塞特(Avocet)和奇莱罗(Chilero)杂交产生的重组自交系(RIL)F群体,在2018 - 2020年小麦生长季的三个试验站的四个环境中,对千粒重(TKW)、籽粒长度(KL)和籽粒宽度(KW)等籽粒性状的表型进行了评估。利用多样性阵列技术(DArT)标记和完备复合区间作图(ICIM)方法构建了高密度遗传连锁图谱,以鉴定TKW、KL和KW的数量性状位点(QTL)。除了2A、4D和5B染色体外,在RIL群体的21条染色体上共鉴定出48个控制这三个性状的QTL,占表型变异的3.00% - 33.85%。根据每个QTL的物理位置,在RIL中鉴定出9个稳定的QTL簇,在这些QTL簇中, 与DArT标记区间 - 紧密连锁,解释了10.31% - 33.85%的表型变异。在一个34.74 Mb的物理区间内共鉴定出347个高可信度基因。 和 属于与籽粒性状相关的推定候选基因,且它们在籽粒发育过程中表达。此外,我们还开发了 的高通量竞争性等位基因特异性PCR(KASP)标记,并在114个小麦品种的自然群体中进行了验证。该研究为克隆籽粒性状QTL潜在的功能基因提供了依据,也为分子育种提供了实用且准确的标记。