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Effect of terminal heat stress on yield and yield components of bread wheat genotypes

机译:终端热胁迫对基因型小麦产量和产量构成的影响

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摘要

Grain yield of wheat is severely affected by various biotic and abiotic stresses. Among the abiotic stresses, heat (terminal high temperature) is one of the major causes of low productivity in the late sown conditions in India. In the present investigation, two progenies, from PBW 373 x WH 1081 and PBW 373 x PBW 343 along with their parents and four check varieties (Raj 3765, WH 730, DBW 17 and WH 711) were evaluated in field. Parents and checks were sown under normal (29 Nov., 2011) and late (3 Jan., 2012) conditions, while were sown under late condition only. Data were recorded on 152 plants from each of the both crosses along with parents and check varieties for yield, yield components and physiological traits. Two factors ANOVA exhibited highlysignificant differences for genotypes, environments and for genotype x environment interactions for days to heading, days to anthesis, days to physiological maturity, grain filling duration, plant height, productive tillers/plant, grains/spike, 1000-grain weight, grain yield/plant, biomass/plant, harvest index and membrane thermostability (MTS). Heat susceptibility index (HSI) for 1000-grain weight and grain yield/plant was observed to be low in all tolerant genotypes (PBW 373, Raj 3765 and WH 730). Theperformance of heat susceptible parents was affected to more extent in late sown conditions as compared to that in tolerant parents. Grain yield/plant showed a positive correlation with plant height (0,69** and 0.28**), biomass/plant (0.98** and 0.94**)and number of productive tillers/plant (0.89** and 0.85**) in both the crosses. A wide range of variation was observed for days to heading, days to physiological maturity, grain filling duration, productive tillers/plant, grains/spike, biomass/plant, 1000-grain weight, grain yield/plant, canopy temperature depression (CTD) and MTS in first cross, while there was lesser variability in this population as compared to the previous population, for grain filling duration, 1000-grain weight, grain yield per plant, biomass, CTD and chlorophyll fluorescence. A total of 10 segregants expected to yield better performing progeny in heat stress/late sown conditions were selected from each of the two Fj populations.
机译:小麦的谷物产量受到各种生物和非生物胁迫的严重影响。在非生物胁迫中,热量(终端高温)是印度后期播种条件下生产力低下的主要原因之一。在本研究中,在野外评估了PBW 373 x WH 1081和PBW 373 x PBW 343的两个后代及其亲本和四个检查品种(Raj 3765,WH 730,DBW 17和WH 711)。父母和支票在正常(2011年11月29日)和晚期(2012年1月3日)条件下播种,而仅在晚期条件下播种。记录了来自两个杂交中的每一个的152株植物的数据以及亲本,并检查了品种的产量,产量组成和生理特性。抽穗天数,花药天数,生理成熟天数,籽粒充实时间,植物高度,高产分till /植物,谷粒/穗,1000粒重的基因型,环境和基因型x环境相互作用的两个因素在基因型,环境和基因型x环境相互作用方面表现出显着差异。 ,谷物产量/植物,生物量/植物,收获指数和膜热稳定性(MTS)。在所有耐性基因型(PBW 373,Raj 3765和WH 730)中,观察到1000粒重的热敏感性指数(HSI)和单株籽粒产量均较低。与宽容的父母相比,在后期播种条件下,热敏感父母的表现受到更大的影响。单株籽粒产量与株高(0,69 **和0.28 **),生物量/株(0.98 **和0.94 **)以及高产分till /株(0.89 **和0.85 **)呈正相关。 )在两个十字架上。到抽穗的天数,到生理成熟的天数,籽粒充实的持续时间,高产分till /植物,谷粒/穗,生物量/植物,1000粒重,籽粒产量/植物,冠层温度下降(CTD)第一代杂交和MTS,虽然该种群的变异性比以前的种群要小,但在籽粒灌浆持续时间,1000粒重,单株谷物产量,生物量,CTD和叶绿素荧光方面。从两个Fj种群的每一个中选择了总共10个预期在热胁迫/后期播种条件下表现出更好后代的分离子。

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