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首页> 外文期刊>Journal of Applied Life Sciences International >Tolerance of 254 Maize Doubled Haploid Lines × Tester Crosses to Drought at Flowering and Grain Filling
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Tolerance of 254 Maize Doubled Haploid Lines × Tester Crosses to Drought at Flowering and Grain Filling

机译:254个玉米双倍单倍体系×试验杂交对开花和灌浆期的耐旱性

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The doubled haploid lines (DHL) of maize in their top crosses are expected to include genotypes that accumulated favorable genes for both high-yielding and drought tolerance. The objectives of this study were: (i) to screen 254 DHL's x tester crosses for tolerance to water stress at flowering (WSF) and grain filling (WSG), (ii) to estimate the superiority of tolerant (T) over sensitive (S) crosses under WSF and WSG and (iii) to identify the selection criteria for drought tolerance in maize. Two hundred fifty four top crosses developed from crossing between 254 DHL's and an inbred tester along with two checks were evaluated under three watering treatments; i.e. well watering (WW), WSF and WSG using split plot design with two replicates. Based on drought tolerance index (DTI), maize genotypes (254 top crosses and 2 check cultivars) were grouped into three categories, namely tolerant (T), moderately tolerant (MT) and sensitive (S). The number of T, MT and S genotypes were 120, 108 and 28 under WSF and 123, 105 and 28 under WSG, respectively. The crosses classified amongst the drought tolerant and high yielding were No. 16, 14, 204, 96, 58, 140, 161, 2, 66 and 44 under WSF and No. 87, 96, 66, 208, 26, 153, 205, 177, 15 and 39 under WSG. Grain yield/ha (GYPH) of T was greater than that of S test crosses by 78.78 and 82.52% under WSF and WSG, respectively. DTI showed a significant (p≤0.01) and positive correlation coefficient (rg) with grain yield/plant (0.88 and 0.86), GYPH (0.82 and 0.80) and ears/plant (0.55 and 0.44) under WSF and WSG conditions, respectively. Moreover, DTI had small, but significant and negative correlation coefficients with days to anthesis, days to silking, anthesis silking interval, barren stalks and leaf rolling.
机译:玉米最上层杂交的单倍体系(DHL)预计将包含为高产和耐旱性积累有利基因的基因型。这项研究的目的是:(i)筛选254个DHL x测试仪杂交品种,以耐开花期(WSF)和籽粒灌浆(WSG)的水分胁迫,(ii)评估耐受性(T)优于敏感(S) )穿越WSF和WSG,(iii)确定玉米耐旱性的选择标准。在三种浇水处理下,评估了254个DHL与一个自交测试仪之间的杂交所形成的254个最上面的杂交以及两个检查。即采用分两次重复设计的井灌(WW),WSF和WSG。根据耐旱指数(DTI),将玉米基因型(254个杂交品种和2个复选品种)分为三类,即耐性(T),中度耐性(MT)和敏感(S)。在WSF下,T,MT和S基因型的数量分别为120、108和28,在WSG下分别为123、105和28。根据WSF,耐旱和高产的杂交品种分别为16、14、204、96、58、140、161、2、66和44,以及87、96、66、208、26、153、205等。 ,WSG下的177、15和39。在WSF和WSG条件下,T的籽粒单产/公顷(GYPH)比S杂交试验高出78.78%和82.52%。 DTI与籽粒/植物(0.88和0.86),GYPH(0.82和0.80)和穗/植物(0.55和0.44)显着(p≤0.01)和正相关系数(r g )分别在WSF和WSG条件下。此外,DTI与花期,花silk天数,花期bar花间隔,不育茎和卷叶的相关系数较小,但具有显着的负相关系数。

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