Physiological traits contributed to the recent increase in yield potential of winter wheat from Hena

来源 :Journal of Integrative Plant Biology | 被引量 : 0次 | 上传用户:linlinlin123456
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This experiment aims to test the traits responsible for the increase in yield potential of winter wheat released in Henan Province, China. Seven established cultivars released in the last 20 years and three advanced lines were assayed. The results showed that grain yield was positively correlated with harvest index(HI), kernel number per square meter, and aboveground biomass. In addition, the HI and aboveground biomass showed an increasing trend with the year of release.Therefore, we can conclude that bread wheat breeding advances during recent decades in Henan Province, China,have been achieved through an increase in HI, kernel number per square meter, and aboveground biomass. A higher d13C seems also to be involved in these advances, which suggests a progressive improvement in constitutive water use efficiency not associated with a trend towards lower stomatal conductance in the most recent genotypes. However, genetic advance Researchdoes not appear related to changes in photosynthesis rates on area basis when measured in the flag leaf or the spike,but only to a higher, whole‐spike photosynthesis. Results also indirectly support the concept that under potential yield conditions, the spike contributed more than the flag leaf to kernel formation. This experimental aims to test the traits responsible for the increase in yield potential of winter wheat released in Henan Province, China. Seven established cultivars released in the last 20 years and three advanced lines were assayed. The results showed that grain yield was positively correlated with harvest index (HI), kernel number per square meter, and aboveground biomass showed an increasing trend with the year of release. Herefore, we can conclude that bread wheat breeding advances during recent decades in Henan Province , China, have been achieved through an increase in HI, kernel number per square meter, and aboveground biomass. Which suggests a progressive improvement in constitutive water use efficiency not associated with a trend towards However, genetic research advances do not appear related to changes in photosynthes is rates on area basis when measured in the flag leaf or the spike, but only to a higher, whole-spike photosynthesis.
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