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1)  blade rate
叶率
1.
Shaft frequency, blade rate and number of blades of underwater targets are well known intrinsical discriminative features, and are important clues for classification .
螺旋桨轴频、叶率和叶片数是目标的本质性、鉴别性特征 ,是分类的重要线索。
2)  leaf injury spot rate
叶伤斑率
3)  leafing rate
出叶速率
1.
The results showed that there was not a significant difference between early maturing hybrids and late maturing ones in leafing rate,young panicle differentiation duration(from young panicle initiation to heading) and young panicle differentiating rate,and grain filling duration(from head.
结果表明:早熟组与迟熟组在抽穗灌浆历期、幼穗分化历期及速率、相对出叶速率方面差异不显著,其全生育期的显著差异主要是营养生长期长短不同造成的;早熟组因为幼穗分化起始时间早、营养生长期短而表现早熟;早熟组的有效穗、每穗总粒数、每穗实粒数、结实率与迟熟组无显著差异,但经济产量与单株生物产量均极显著低于迟熟组,其主要原因分别是千粒重较低和植株较矮。
2.
Quantitative trait loci (QTLs) affecting total leaf number of the main stem, leafing rate at two different growth stages, heading date, and plant height in a recombinant inbred lines (RIL)population from the cross Lemont (japonica)×Teqing (indica) were investigated using a complete RFLP map with 182 marker loci.
用一张具有 182个 RFL P标记的分子连锁图谱和一套重组自交系 ( RIL)群体 ,对水稻植株主茎总叶片数、叶片生长速率、抽穗期和株高等数量性状进行 QTL区间作图研究 ,定位了影响水稻出叶速率的 8个 QTL ,主茎总叶片数的 2个QTL、抽穗期的 3个 QTL和株高的 4个 QTL。
4)  rate of detrashing sugarcane
剥叶率
5)  leaf specific conductivity
叶比导率
6)  Percentage of withered leaves
枯叶率
补充资料:电导率(见电阻率)


电导率(见电阻率)
conductivity

d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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