Exact(34)
Near-isogenic lines (NILs) did not differ in dry weight accumulation on a per grain basis (mg grain-1) during grain filling.
The mean number of faces per grain was 14.2.
This occurs at a twinning frequency of approximately one twin per grain.
Specifically, the numbers of grain faces, triple lines, and quadruple unions per grain have been measured and compared.
Using the grain number density ({n_d} = int_{{a_{min }}}^{{a_{max }}} {n(a da,}), we can define a mean heating rate per grain as {ie72-2} and a mean mass per grain as {ie72-3}.
For heavily twinned grains, it is seen that twinning occurs on 2.3 twin systems per grain on average.
Similar(26)
Higher phenotypic variation was observed for panicles per plant, grain yield per plant, per cent sterility, spikelets per panicle, filled grains per panicle, spikelet setting density, flag leaf length and flag leaf width.
It is considered that the production of per plant determined by panicle numbers per plant, grain numbers per panicle, grain weight and filling (Sakamoto and Matsuoka 2008; Xing and Zhang 2010).
Total biomass yield per plant, grain yield per plant, spike number per plant and grain number of the primary spike were recorded on 30 representative plants.
The actual transfer rate was estimated to be about one per 16,000 pollen grains (about 6 × 10 5 per pollen grain) or one per 5 × 10 cells (2 × 10−7 per cell) by measuring functional gene integration into the nuclear genome.
Sixteen, six and ten genes/QTL were associated with panicle number per plant, grain number per panicle and thousand grain weight, respectively.
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