Lepcha Patrush, Shekhar Mahesh, Murugesan Leelambika, Jaheer Mahammad, Chopra Ratan, Belamkar Vikas, Sathyanarayana Narayana
Department of Botany, Sikkim University, P. O, Tadong, Sikkim, Gangtok, 737102, India.
Department of Biotechnology, Sir M, Visvesvaraya Institute of Technology, Bangalore, Karnataka, 562157, India.
Bot Stud. 2024 Aug 19;65(1):26. doi: 10.1186/s40529-024-00421-3.
The tropical legume Mucuna pruriens (L.) DC. can meet three agricultural needs: low-cost protein, high-value medicines, and green manure or cover crops. But like other underutilized crops, it needs more modern breeding resources. Identifying marker-trait associations (MTAs) can facilitate marker-assisted breeding and crop improvement. Recent studies have demonstrated the feasibility of identifying MTAs using a small number of accessions (< 100). We have characterized a panel of 70 M. pruriens accessions across two consecutive years and performed association analysis for 16 phenotypic traits related to seed (seed length, seed width, seed thickness, seed yield per plant, hundred seed weight); pod (pod length, pod width, number of pods per cluster, number of pods per plant); inflorescence (inflorescence length, flower buds per inflorescence, flower length, pedicel length), and biochemical attributes (L-DOPA, total protein, total carbohydrate), using 66 genic-microsatellite markers following mixed linear model.
The results showed significant phenotypic (P < 0.05) and genetic diversity (Shannon's information index, I = 0.62) in our germplasm collection. Many tested traits were highly heritable (broad-sense heritability ranging from 42.86 to 99.93%). A total of 15 MTAs was detected at an adjusted significance level of P < 5.55 × 10 for nine traits (seed length, seed thickness, seed width, hundred seed weight, seed yield per plant, inflorescence length, flower buds per inflorescence, flower length, and petiole length), contributed by 10 SSR markers (MPU_19, MPU_42, MPU_54, MPU_57, MPU_58, MPU_83, MPU_89, MPU_108, MPU_111, and MPU_122.) with phenotypic variance explained (PVE) ranging from 14.7 to 31.1%. Out of the ten trait-associated markers, the BLAST analysis revealed putative functions of seven markers, except MPU_57, MPU_58, and MPU_83.
Fifteen MTAs identified for important traits with phenotypic variance explained > 10% from mixed linear model offer a solid resource base for improving this crop. This is the first report on association mapping in M. pruriens and our results are expected to assist with marker-assisted breeding and identifying candidate genes in this promising legume.
热带豆科植物刺毛黧豆(Mucuna pruriens (L.) DC.)能满足三项农业需求:低成本蛋白质、高价值药物以及绿肥或覆盖作物。但与其他未充分利用的作物一样,它需要更多现代育种资源。鉴定标记-性状关联(MTA)有助于标记辅助育种和作物改良。近期研究已证明使用少量种质(<100份)鉴定MTA的可行性。我们连续两年对70份刺毛黧豆种质进行了特征分析,并使用66个基因微卫星标记,按照混合线性模型对与种子(种子长度、种子宽度、种子厚度、单株种子产量、百粒重)、豆荚(豆荚长度、豆荚宽度、每簇豆荚数、单株豆荚数)、花序(花序长度、每个花序的花芽数、花长度、花梗长度)和生化属性(L-多巴、总蛋白、总碳水化合物)相关的16个表型性状进行了关联分析。
结果表明我们的种质资源具有显著的表型(P < 0.05)和遗传多样性(香农信息指数,I = 0.62)。许多测试性状具有高度遗传性(广义遗传力范围为42.86%至99.93%)。在调整后的显著性水平P < 5.55×10时,共检测到15个MTA与9个性状(种子长度、种子厚度、种子宽度、百粒重、单株种子产量、花序长度、每个花序的花芽数、花长度和叶柄长度)相关,由10个SSR标记(MPU_19、MPU_42、MPU_54、MPU_57、MPU_58、MPU_83、MPU_89、MPU_108、MPU_111和MPU_122)贡献,表型变异解释率(PVE)范围为14.7%至31.1%。在这10个与性状相关的标记中,除MPU_57、MPU_58和MPU_83外,BLAST分析揭示了7个标记的推定功能。
通过混合线性模型鉴定出的15个与重要性状相关的MTA,其表型变异解释率>10%,为改良这种作物提供了坚实的资源基础。这是关于刺毛黧豆关联作图的首次报道,我们的结果有望有助于标记辅助育种并鉴定这种有前景的豆科植物中的候选基因。