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越南地方稻种叶质量性状的全基因组关联作图。

Genome-wide association mapping of leaf mass traits in a Vietnamese rice landrace panel.

机构信息

Agricultural Genetics Institute, National Key Laboratory for Plant Cell Biotechnology, Hanoi, Vietnam.

University of Science and Technology of Hanoi, Vietnam.

出版信息

PLoS One. 2019 Jul 8;14(7):e0219274. doi: 10.1371/journal.pone.0219274. eCollection 2019.

Abstract

Leaf traits are often strongly correlated with yield, which poses a major challenge in rice breeding. In the present study, using a panel of Vietnamese rice landraces genotyped with 21,623 single-nucleotide polymorphism markers, a genome-wide association study (GWAS) was conducted for several leaf traits during the vegetative stage. Vietnamese landraces are often poorly represented in panels used for GWAS, even though they are adapted to contrasting agrosystems and can contain original, valuable genetic determinants. A panel of 180 rice varieties was grown in pots for four weeks with three replicates under nethouse conditions. Different leaf traits were measured on the second fully expanded leaf of the main tiller, which often plays a major role in determining the photosynthetic capacity of the plant. The leaf fresh weight, turgid weight and dry weight were measured; then, from these measurements, the relative tissue weight and leaf dry matter percentage were computed. The leaf dry matter percentage can be considered a proxy for the photosynthetic efficiency per unit leaf area, which contributes to yield. By a GWAS, thirteen QTLs associated with these leaf traits were identified. Eleven QTLs were identified for fresh weight, eleven for turgid weight, one for dry weight, one for relative tissue weight and one for leaf dry matter percentage. Eleven QTLs presented associations with several traits, suggesting that these traits share common genetic determinants, while one QTL was specific to leaf dry matter percentage and one QTL was specific to relative tissue weight. Interestingly, some of these QTLs colocalize with leaf- or yield-related QTLs previously identified using other material. Several genes within these QTLs with a known function in leaf development or physiology are reviewed.

摘要

叶片性状通常与产量密切相关,这给水稻育种带来了重大挑战。本研究利用 21623 个单核苷酸多态性标记物对越南水稻地方品种进行基因分型,对营养生长期的几个叶片性状进行了全基因组关联研究(GWAS)。尽管越南地方品种适应了不同的农业系统,并且可能包含原始的、有价值的遗传决定因素,但它们在用于 GWAS 的面板中往往代表性不足。在网室内条件下,180 个水稻品种在盆中种植四周,每个品种重复三次。在主分蘖的第二个完全展开的叶片上测量不同的叶片性状,该叶片通常在决定植物的光合能力方面起着主要作用。测量叶片的鲜重、膨压重和干重;然后,根据这些测量值,计算相对组织重量和叶片干物质百分比。叶片干物质百分比可以看作是单位叶面积光合效率的代表,这有助于产量。通过 GWAS,鉴定出与这些叶片性状相关的 13 个 QTL。鉴定出 11 个与鲜重相关的 QTL、11 个与膨压重相关的 QTL、1 个与干重相关的 QTL、1 个与相对组织重量相关的 QTL 和 1 个与叶片干物质百分比相关的 QTL。11 个 QTL 与多个性状相关,表明这些性状共享共同的遗传决定因素,而 1 个 QTL 与叶片干物质百分比相关,1 个 QTL 与相对组织重量相关。有趣的是,其中一些 QTL 与使用其他材料先前鉴定的与叶片或产量相关的 QTL 共定位。对这些 QTL 中一些已知在叶片发育或生理中具有功能的基因进行了综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a687/6613685/d588dcfa9106/pone.0219274.g001.jpg

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