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1)  tiller group
分蘖节位区组
2)  tillering position
分蘖节位
3)  inverse node
节位分蘖穗
1.
The analysis of the relationship between grain output and inverse node of ratooning rice shows that the yield variance reached the most significant level and the contribution of inverse node for output ranked as the 2nd inverse node reserved>the 3rd one>the 4th one>the 5th one.
分析再生稻不同节位分蘖穗与产量之间的关系 ,结果表明 :不同节位分蘖穗与产量间的差异达极显著 ,对产量的贡献大小依次是倒 2节 >倒 3节 >倒 4节 >倒 5节。
4)  Tiller node
分蘖节
1.
The oldest tiller nodes could live for four years, while the oldest rhizome for three years.
假苇拂子茅是典型的无性系禾草 ,分蘖节存活时间最多为 4年 ,根茎存活的时间最多为3年 ;1龄级分蘖株生产力最高 ,1龄级根茎的物质贮存能力最大。
2.
The wheat growth and yield formation were greatly influenced by tiller nodes′ location, the resules were that under ground was superior to on ground, more superior to over ground.
稻田套播小麦分蘖节入土状况可分为分蘖节在地表下(B1 )、紧贴地表(B2)和抬空全裸露(B3 ) 3 类, 它们的比例为0∶7∶3, 覆土后则为7∶2。
3.
Calamagrostis rigidula is a typical clonal grass, with its tiller nodes kept alive as long as for 4 years.
硬拂子茅是典型的无性系禾草,分蘖节存活时间最多为4年。
5)  tillering node
分蘖节
1.
The life-span of both its tillering nodes and rhizome was two years, and hence its tillers on cutting plots belong to a single age class, while those on grazing plots can be identified as in two age classes.
牛鞭草是典型的无性系禾草,分蘖节和根茎存活时间最多均为2a,牛鞭草无性系种群的分蘖株在割草地仅有1个龄级,在放牧地有2个龄级。
6)  tillering node bud
分蘖节芽
补充资料:多组分配位化合物
分子式:
CAS号:

性质:由三种或三种以上不同组分组成的配位化合物。这种组分包括配位化合物的形成体本身。常见有混配配位化合物、离子缔合型配位化合物、表面活性剂增敏型配位化合物和杂多核配位化合物等。例如四羰基(苯乙炔)合铁(Ⅱ)[Fe(C6H5)C≡C(C6H5)(CO)4]。

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