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用于甘蔗遗传改良的丰富甘蔗多样性面板。

An enriched sugarcane diversity panel for utilization in genetic improvement of sugarcane.

机构信息

School of Plant, Environmental and Soil Sciences, Louisiana State University Agricultural Center, Baton Rouge, LA, 70803, USA.

Vermont Mutual Insurance Group, Montpelier, VT, USA.

出版信息

Sci Rep. 2020 Aug 7;10(1):13390. doi: 10.1038/s41598-020-70292-8.

Abstract

Sugarcane crop is important for both sugar and biofuels. A world collection of sugarcane and related grasses (WCSRG) maintained at Miami, FL contains > 1,200 non-redundant clones of different species and genera within the Saccharum complex. However, linkage of undesirable alleles with useful genes in wild species has hindered its efficient utilization in sugarcane breeding. A core collection developed previously with smaller number of clones representing WCSRG did not take into account > 120 wild/exotic clones maintained at the USDA-ARS Sugarcane Research Unit in Houma, Louisiana. Moreover, the genome complexity and sub-tropical to temperate growing climate of Louisiana warrant a region-specific core collection that can be used for base-broadening breeding aimed at efficient introgression of desirable alleles. Genetic diversity of 1,485 clones within WCSRG and Louisiana (commercials, wild/exotic) using 423 SSR alleles showed an average gene diversity (h) at 0.208 among all species groups where Erianthus-like Saccharum species (ELSS), Miscanthus spp., and S. spontaneum each formed a distinct cluster, Saccharum robustum, S. officinarum, hybrid cultivars, and S. edule grouped together in a major cluster, and Saccharum sinense and S. barberi formed distinct grouping. A 309-clone diversity panel (SDP1) was developed that captured the genetic diversity based on the combination of maximum length subtree and manual selection to maximize representation of Louisiana clones and minimize import of clones from Miami. SDP1 shared 324 alleles out of the 423 alleles in the entire population of 1,485 clones and captured the genetic diversity of the entire collection with an average gene diversity (h) at 0.163. The variation within (11-17%) and among (83-89%) the populations in SDP1 were comparable with the entire population of 1,485 clones (9-15% and 85-91%, respectively). The breadth of the genetic variation of SDP1 was exemplified by the intra- and inter-specific diversity of a 190-clone mini-core collection with markers derived from known cold-responsive genes. SDP1 will facilitate genome-wide association studies for identification of trait-specific markers for use in marker-assisted breeding in Louisiana and elsewhere.

摘要

甘蔗作物对糖和生物燃料都很重要。在佛罗里达州迈阿密保存的世界甘蔗和相关草类收藏(WCSRG)中,包含了甘蔗复合体中不同物种和属的 1200 多个非冗余克隆。然而,野生种中不良等位基因与有用基因的连锁,阻碍了其在甘蔗育种中的有效利用。之前利用代表 WCSRG 的较少克隆数开发的核心收藏没有考虑到在美国农业部-农业研究局甘蔗研究单位在路易斯安那州侯马市保存的 120 多个野生/外来克隆。此外,路易斯安那州的基因组复杂性和亚热带到温带的生长气候需要一个特定于该地区的核心收藏,该收藏可用于基础拓宽育种,旨在有效导入所需的等位基因。利用 423 个 SSR 等位基因对 WCSRG 和路易斯安那州(商业、野生/外来)的 1485 个克隆进行遗传多样性分析表明,在所有物种组中,平均基因多样性(h)为 0.208,其中似高粱属甘蔗物种(ELSS)、芒属植物和 S. spontaneum 各自形成一个独特的聚类,S. robustum、S. officinarum、杂交品种和 S. edule 聚集在一起形成一个主要聚类,而 S. sinense 和 S. barberi 形成了独特的聚类。开发了一个由 309 个克隆组成的多样性面板(SDP1),该面板基于最大长度子树和手动选择的组合来捕获遗传多样性,以最大限度地代表路易斯安那州的克隆,并最大限度地减少从迈阿密进口的克隆。SDP1 与整个 1485 个克隆群体中的 423 个等位基因共享 324 个等位基因,并以平均基因多样性(h)为 0.163 捕获了整个群体的遗传多样性。SDP1 内(11-17%)和群体间(83-89%)的变异与整个 1485 个克隆群体的变异相当(分别为 9-15%和 85-91%)。SDP1 的遗传变异广度通过来自已知冷响应基因的标记的 190 个克隆迷你核心收藏的种内和种间多样性得到了例证。SDP1 将有助于全基因组关联研究,以鉴定用于路易斯安那州和其他地区标记辅助育种的性状特异性标记。

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