墨西哥高山谷玉米中胚轴伸长的遗传参数和主成分

Seeds Pub Date : 2024-03-13 DOI:10.3390/seeds3010012
Antonio Villalobos-González, Ignacio Benítez-Riquelme, Fernando Castillo-González, Ma. del Carmen Mendoza-Castillo, Alejandro Espinosa-Calderón
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引用次数: 0

摘要

通过估算一般组合性状(GCA)、特殊组合性状(SCA)、杂合力(H)、近交抑郁(ID)和主成分性状(PCA),对墨西哥高山谷地区具有不同中胚轴伸长率的玉米种质进行了鉴定,目的是指导深播改良。假设中胚轴的亲本和杂交种在幼苗和成株性状上存在基于深播的变异。在 2021 年和 2022 年的春夏季节,36 个 F1 和 F2 杂交品种来自 9 个亲本,其中 3 个中胚轴较短(S),3 个中等(M),3 个较长(L),这些亲本是通过格里芬二系法 II 获得的。对以下性状进行了测量:中胚轴长度(LM)、小叶长度、幼苗总干物质以及除总干物质外的 10 个茎秆性状。在 14 个性状中的 11 个性状上,亲本的 GCA 与它们的 LM 之间存在显著的正相关(p ≤ 0.05)。在所有测定的性状中,杂交种 L × L 的 SCA、H 和 ID 最高(p ≤ 0.05)。在比较 GCA/SCA 比例时,这一关系从 0.76 到 0.97 不等,这表明加性效应与显性效应几乎相等;然而,在亲本和 L×L 杂交中,这一关系平均为 0.94,M×M 为 1.07,S×S 为 0.22,L×S 为 0.36:GCA为89.5%,SCA为73.4%。在两个世代中,GCA 较高的亲本是 H-48、HS-2 和 Promesa 这三个中胚轴较长的杂交种,而 GCA 最高的亲本是这三个杂交种的杂交种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Parameters in Mesocotyl Elongation and Principal Components for Corn in High Valleys, Mexico
Corn germplasm with different mesocotyl elongation was characterized for High Valleys in Mexico by estimating the general combinatory aptitude (GCA), specific combinatory aptitude (SCA), heterosis (H), inbreeding depression (ID) and principal component aptitude (PCA), with the purpose of directing the improvement for deep sowing. The hypothesis was that the parents and crosses of mesocotyl present variability in seedling and adult plant traits based on deep sowing. The 36 F1 and F2 crosses—derived from nine parents, three with short mesocotyl (S), three medium (M) and three long (L), obtained through Griffing diallel II—plus the parents were planted in sand beds and polyethylene bags in a greenhouse during the spring–summer cycles of 2021 and 2022. The following traits were measured: length of mesocotyl (LM), length of coleoptile, total seedling dry matter and 10 cob traits in addition to total dry matter. In 11 of the 14 traits, there was a positive and significant correlation (p ≤ 0.05) between the GCA of the parents and their LM. The highest SCA, H and ID (p ≤ 0.05) were for crosses L × L for all the traits measured. When comparing the GCA/SCA proportions, this relation varied from 0.76 to 0.97, which points to practically equal additive effects with those of dominance; however, in parents and L × L crosses, this relation was on average 0.94, 1.07 in M × M, 0.22 in S × S and 0.36 in L × S. In both F1 and F2, the variation was explained by two principal components: 89.5% for GCA and 73.4% for SCA. In both generations, the parents with higher GCA were H-48, HS-2 and Promesa, the three with long mesocotyl, while those with the highest GCA were crosses between these three hybrids.
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