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弗吉尼亚型花生(Arachis hypogaea L.)成熟时间一致性数量性状位点的鉴定。

Identification of consistent QTL for time to maturation in Virginia-type Peanut (Arachis hypogaea L.).

作者信息

Kunta Srinivas, Agmon Sara, Chedvat Ilan, Levy Yael, Chu Ye, Ozias-Akins Peggy, Hovav Ran

机构信息

Department of Field Crops, Agriculture Research Organization-The Volcani Center, Institute of Plant Sciences, HaMakkabbim Road, P. O. Box 15159, 7505101, Rishon LeZiyyon, Israel.

Faculty of Agricultural, Food and The Environmental Quality Sciences, The Hebrew University of Jerusalem, POB 12, 76100, Rehovot, Israel.

出版信息

BMC Plant Biol. 2021 Apr 19;21(1):186. doi: 10.1186/s12870-021-02951-5.

Abstract

BACKGROUND

Time-to-maturation (TTM) is an important trait contributing to adaptability, yield and quality in peanut (Arachis hypogaea L). Virginia market-type peanut belongs to the late-maturing A. hypogaea subspecies with considerable variation in TTM within this market type. Consequently, planting and harvesting schedule of peanut cultivars, including Virginia market-type, need to be optimized to maximize yield and grade. Little is known regarding the genetic control of TTM in peanut due to the challenge of phenotyping and limited DNA polymorphism. Here, we investigated the genetic control of TTM within the Virginia market-type peanut using a SNP-based high-density genetic map. A recombinant inbred line (RIL) population, derived from a cross between two Virginia-type cultivars 'Hanoch' and 'Harari' with contrasting TTM (12-15 days on multi-years observations), was phenotyped in the field for 2 years following a randomized complete block design. TTM was estimated by maturity index (MI). Other agronomic traits like harvest index (HI), branching habit (BH) and shelling percentage (SP) were recorded as well.

RESULTS

MI was highly segregated in the population, with 13.3-70.9% and 28.4-80.2% in years 2018 and 2019. The constructed genetic map included 1833 SNP markers distributed on 24 linkage groups, covering a total map distance of 1773.5 cM corresponding to 20 chromosomes on the tetraploid peanut genome with 1.6 cM mean distance between the adjacent markers. Thirty QTL were identified for all measured traits. Among the four QTL regions for MI, two consistent QTL regions (qMIA04a,b and qMIB03a,b) were identified on chromosomes A04 (118680323-125,599,371; 6.9Mbp) and B03 (2839591-4,674,238; 1.8Mbp), with LOD values of 5.33-6.45 and 5-5.35 which explained phenotypic variation of 9.9-11.9% and 9.3-9.9%, respectively. QTL for HI were found to share the same loci as MI on chromosomes B03, B05, and B06, demonstrating the possible pleiotropic effect of HI on TTM. Significant but smaller effects on MI were detected for BH, pod yield and SP.

CONCLUSIONS

This study identified consistent QTL regions conditioning TTM for Virginia market-type peanut. The information and materials generated here can be used to further develop molecular markers to select peanut idiotypes suitable for diverse growth environments.

摘要

背景

成熟时间(TTM)是影响花生(Arachis hypogaea L)适应性、产量和品质的重要性状。弗吉尼亚市场型花生属于晚熟的花生亚种,该市场类型内的TTM存在相当大的变异。因此,包括弗吉尼亚市场型在内的花生品种的种植和收获时间表需要优化,以实现产量和等级的最大化。由于表型分析的挑战和有限的DNA多态性,关于花生TTM的遗传控制知之甚少。在这里,我们使用基于SNP的高密度遗传图谱研究了弗吉尼亚市场型花生内TTM的遗传控制。一个重组自交系(RIL)群体,由两个TTM不同(多年观察相差12 - 15天)的弗吉尼亚型品种‘Hanoch’和‘Harari’杂交产生,按照随机完全区组设计在田间进行了2年的表型分析。TTM通过成熟指数(MI)进行估算。还记录了其他农艺性状,如收获指数(HI)、分枝习性(BH)和出仁率(SP)。

结果

MI在群体中高度分离,2018年和2019年分别为13.3% - 70.9%和28.4% - 80.2%。构建的遗传图谱包含1833个SNP标记,分布在24个连锁群上,总图距为1773.5 cM,对应四倍体花生基因组的20条染色体,相邻标记间平均距离为1.6 cM。针对所有测量性状鉴定出30个QTL。在MI的四个QTL区域中,在染色体A04(118680323 - 125599371;6.9 Mbp)和B03(2839591 - 4674238;1.8 Mbp)上鉴定出两个一致的QTL区域(qMIA04a,b和qMIB03a,b),LOD值分别为5.33 - 6.45和5 - 5.35,分别解释了9.9% - 11.9%和9.3% - 9.9%的表型变异。发现HI的QTL与染色体B03、B05和B06上的MI共享相同位点,表明HI对TTM可能存在多效性影响。检测到BH、荚果产量和SP对MI有显著但较小的影响。

结论

本研究鉴定出了调控弗吉尼亚市场型花生TTM的一致QTL区域。这里产生的信息和材料可用于进一步开发分子标记,以选择适合不同生长环境的花生基因型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5090/8054412/0f4f151d76a7/12870_2021_2951_Fig1_HTML.jpg

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