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Some QTLs affected multiple waterlogging tolerance related traits, for example, the allele on chromosome 4H from the tolerant parent contributed not only to reducing barley leaf chlorosis, but also to increasing plant biomass under waterlogging stress, whereas other allelles such as those on chromosomes 2H and 5H controlled both leaf chlorosis and plant survival.
Some of these QTLs affected multiple waterlogging tolerance related traits, for example, QTL Qwt4-1 conotibuted nonlynly to reducing barley leaf chlorosis, but also increasing plant biomass under waterlogging stress, whereas other QTLs controlled both leaf chlorosis and plant survival.
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Two maize inbreed lines were crossed for the purpose of determining waterlogging tolerance, that is, "HZ32" (highly waterlogging-tolerant) and "K12" (highly waterlogging sensitive) [ 84, 85] were crossed for developing F2 mapping population.
Recently, Qiu et al. (2007) identified 34 QTLs for waterlogging tolerance in a set of F2 3 families derived from HZ32 (tolerant inbred) × K12 (sensitive inbred) [ 37].
Cross combinations from six rapeseed cultivars and lines were evaluated under waterlogging stress condition in order to understand the genetic mechanism of waterlogging tolerance of Brassica napus L. and provide reasonable improvement programs.
The genotypes such as INGR08109, INGR08111, INGR08113 and AC42091 could be employed for developing varieties for the locations where both submergence and waterlogging tolerance are required.
As a representative trait of waterlogging tolerance in rapeseed, relative vigor index had the highest narrow heritability and relatively low broad heritability.
It can be concluded that combining ability and genetic effects of relative vigor index during germination stage could be used to identify the waterlogging tolerance of rapeseed in breeding program.
The main differences between oak species occurred in terms of root growth (Q. canariensis being the less affected, and Q. suber the most); these differential responses could be related to a species rank of waterlogging tolerance.
The genetic basis of waterlogging tolerance is largely unknown.
Several OTLs associated with waterlogging tolerance with genome-wide significance has been identified which may be useful to clarify the understanding of maize waterlogging tolerance mechanism [ 71].
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