ICAR-Indian Agricultural Research Institute, New Delhi, Delhi, 110012, India.
ICAR-Central Soil Salinity Research Institute, Karnal, Haryana, 132001, India.
Plant Cell Rep. 2024 May 3;43(5):134. doi: 10.1007/s00299-024-03176-0.
'Sikkim Primitive' maize landrace, unique for prolificacy (7-9 ears per plant) possesses unique genomic architecture in branching and inflorescence-related gene(s), and locus Zm00001eb365210 encoding glycosyltransferases was identified as the putative candidate gene underlying QTL (qProl-SP-8.05) for prolificacy. The genotype possesses immense usage in breeding high-yielding baby-corn genotypes. 'Sikkim Primitive' is a native landrace of North Eastern Himalayas, and is characterized by having 7-9 ears per plant compared to 1-2 ears in normal maize. Though 'Sikkim Primitive' was identified in the 1960s, it has not been characterized at a whole-genome scale. Here, we sequenced the entire genome of an inbred (MGUSP101) derived from 'Sikkim Primitive' along with three non-prolific (HKI1128, UMI1200, and HKI1105) and three prolific (CM150Q, CM151Q and HKI323) inbreds. A total of 942,417 SNPs, 24,160 insertions, and 27,600 deletions were identified in 'Sikkim Primitive'. The gene-specific functional mutations in 'Sikkim Primitive' were classified as 10,847 missense (54.36%), 402 non-sense (2.015%), and 8,705 silent (43.625%) mutations. The number of transitions and transversions specific to 'Sikkim Primitive' were 666,021 and 279,950, respectively. Among all base changes, (G to A) was the most frequent (215,772), while (C to G) was the rarest (22,520). Polygalacturonate 4-α-galacturonosyltransferase enzyme involved in pectin biosynthesis, cell-wall organization, nucleotide sugar, and amino-sugar metabolism was found to have unique alleles in 'Sikkim Primitive'. The analysis further revealed the Zm00001eb365210 gene encoding glycosyltransferases as the putative candidate underlying QTL (qProl-SP-8.05) for prolificacy in 'Sikkim Primitive'. High-impact nucleotide variations were found in ramosa3 (Zm00001eb327910) and zeaxanthin epoxidase1 (Zm00001eb081460) genes having a role in branching and inflorescence development in 'Sikkim Primitive'. The information generated unraveled the genetic architecture and identified key genes/alleles unique to the 'Sikkim Primitive' genome. This is the first report of whole-genome characterization of the 'Sikkim Primitive' landrace unique for its high prolificacy.
“锡金原始”玉米地方品种以多产(每株 7-9 个穗)为独特特征,其分支和花序相关基因具有独特的基因组结构,并且编码糖基转移酶的基因 Zm00001eb365210 被鉴定为多产性 QTL(qProl-SP-8.05)的假定候选基因。该基因型在培育高产玉米品种方面具有巨大的应用价值。“锡金原始”是东北喜马拉雅山脉的原生地方品种,其特征是每株有 7-9 个穗,而普通玉米只有 1-2 个穗。尽管“锡金原始”在 20 世纪 60 年代就已被发现,但它尚未在全基因组范围内进行过特征描述。在这里,我们对源自“锡金原始”的自交系(MGUSP101)进行了全基因组测序,同时还对三个非多产(HKI1128、UMI1200 和 HKI1105)和三个多产(CM150Q、CM151Q 和 HKI323)的自交系进行了测序。在“锡金原始”中鉴定出了 942,417 个 SNPs、24,160 个插入和 27,600 个缺失。“锡金原始”中基因特异性功能突变被分类为 10,847 个错义(54.36%)、402 个无义(2.015%)和 8,705 个沉默(43.625%)突变。“锡金原始”中特有的转换和颠换数量分别为 666,021 和 279,950。在所有碱基变化中,(G 到 A)最为常见(215,772),而(C 到 G)最为罕见(22,520)。果胶生物合成、细胞壁组织、核苷酸糖和氨基糖代谢中涉及多聚半乳糖醛酸 4-α-半乳糖醛酸基转移酶的酶被发现具有“锡金原始”中的独特等位基因。分析进一步揭示了编码糖基转移酶的基因 Zm00001eb365210 是“锡金原始”多产性 QTL(qProl-SP-8.05)的假定候选基因。在“锡金原始”的 ramosa3(Zm00001eb327910)和玉米黄质环氧化酶 1(Zm00001eb081460)基因中发现了具有分支和花序发育作用的高影响核苷酸变异。所产生的信息揭示了“锡金原始”基因组的遗传结构,并鉴定了独特的基因/等位基因。这是首次对以高产为独特特征的“锡金原始”地方品种进行全基因组特征描述的报告。