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叶舌同情度的自然变异控制着玉米中半显性无叶舌窄叶R突变的外显率。

Natural variation at sympathy for the ligule controls penetrance of the semidominant Liguleless narrow-R mutation in Zea mays.

作者信息

Buescher Elizabeth M, Moon Jihyun, Runkel Anne, Hake Sarah, Dilkes Brian P

机构信息

Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907.

Plant Gene Expression Center, USDA-ARS, University of California, Berkeley, Albany, California 94710.

出版信息

G3 (Bethesda). 2014 Oct 24;4(12):2297-306. doi: 10.1534/g3.114.014183.

Abstract

Leaf architecture determines plant structural integrity, light harvesting, and economic considerations such as plant density. Ligules, junctions at the leaf sheath and blade in grasses, protect stalks from environmental stresses and, in conjunction with auricles, controls leaf angle. Previous studies in mutants have recessive liguleless mutants (lg1 and lg2) and dominant mutations in knotted1-like homeobox genes (Lg3-O, Lg4, and Kn1) involved in ligule development. Recently, a new semidominant liguleless mutant, Liguleless narrow (Lgn-R), has been characterized in maize that affects ligule and auricle development and results in a narrow leaf phenotype. We show that quantitative genetic variation affects penetrance of Lgn-R. To examine the genetic architecture underlying Lgn-R expressivity, crosses between Lgn-R/+ mutants in a B73 background and intermated B73 x Mo17 recombinant inbred lines were evaluated in multiple years and locations. A single main-effect quantitative trait locus (QTL) on chromosome 1 (sympathy for the ligule; sol) was discovered with a Mo17-contributed allele that suppressed Lgn-R mutant phenotypes. This QTL has a genetic-interaction with a locus on chromosome 7 (lucifer; lcf) for which the B73-contributed allele increases the ability of the sol(Mo17) allele to suppress Lgn-R. Neither of the genetic intervals likely to contain sol or lcf overlap with any current liguleless genes nor with previously identified genome-wide association QTL connected to leaf architecture. Analysis of phenotypes across environments further identified a genotype by enviroment interaction determining the strength of the sol x lcf interaction.

摘要

叶片结构决定了植物的结构完整性、采光能力以及诸如种植密度等经济因素。叶舌是禾本科植物叶鞘和叶片的连接处,可保护茎秆免受环境胁迫,并与叶耳共同控制叶片角度。先前对突变体的研究发现了隐性无叶舌突变体(lg1和lg2)以及参与叶舌发育的类knotted1同源异型盒基因(Lg3 - O、Lg4和Kn1)中的显性突变。最近,在玉米中鉴定出一种新的半显性无叶舌突变体,即无叶舌窄叶突变体(Lgn - R),它影响叶舌和叶耳的发育,并导致叶片变窄的表型。我们发现数量遗传变异会影响Lgn - R的外显率。为了研究Lgn - R表达性背后的遗传结构,我们在多个年份和地点对B73背景下的Lgn - R/+突变体与杂交的B73×Mo17重组自交系之间的杂交后代进行了评估。在1号染色体上发现了一个单一的主效数量性状位点(QTL)(对叶舌的同情;sol),其Mo17贡献的等位基因可抑制Lgn - R突变体表型。该QTL与7号染色体上的一个位点(路西法;lcf)存在遗传相互作用,B73贡献的等位基因可增强sol(Mo17)等位基因抑制Lgn - R的能力。可能包含sol或lcf的遗传区间均不与任何当前已知的无叶舌基因重叠,也不与先前鉴定的与叶片结构相关的全基因组关联QTL重叠。对不同环境下的表型分析进一步确定了一个基因型与环境的相互作用,该相互作用决定了sol×lcf相互作用的强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/517e/4267926/73267be87094/2297f1.jpg

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