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Canopy photosynthesis and fiber properties of normal- and late-planted cotton

机译:普通和后期种植棉花的冠层光合作用和纤维特性

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Normal- and late-planted cotton (Gossypium hirsutum L.) often differ in fiber properties, especially those properties related to fiber secondary wall characteristics. This field study was conducted to (i) determine the effect of planting date on fiber properties of bolls at two flowering times, and (ii) determine the relationship between fiber properties and canopy photosynthesis during development of those bolls. Cotton (`Stoneville 453') was planted on 3 May and 3 June in 1995 and 3 May and 31 May in 1996. Canopy photosynthesis was measured 10 to 12 times on sunny days from initial flowering through the end of the season. Fiber properties were determined on first sympodial position bolls that bloomed during the first and fourth week of flowering (WOF). Maximum canopy photosynthesis was 21% higher in 1996 than in 1995 and lint yield was 22% greater in 1996 than in 1995. Within each year, average maximum canopy photosynthesis did not differ between planting dates, although yield was approximately 30% lower for the late planting date each year. Bolls from the first WOF generally had lower lint percent, higher short fiber content, lower elongation, and lower whiteness index than bolls from the fourth WOF. Micronaire, immature fiber fraction, and fiber cross-sectional area were linearly related to the amount of canopy photosynthesis that occurred from 15 to 45 d after flowering. Our results are consistent with the hypothesis that assimilate supply influences cotton fiber properties associated with secondary wall characteristics.
机译:正常种植的和后期种植的棉花(Gossypium hirsutum L.)的纤维特性通常不同,尤其是那些与纤维次生壁特性有关的特性。进行该田间研究的目的是(i)确定播种期对两个开花时间的棉铃纤维特性的影响,以及(ii)确定这些棉铃发育过程中纤维特性与冠层光合作用之间的关系。棉花(“ Stoneville 453”)于1995年5月3日和6月3日以及1996年5月3日和5月31日种植。从最初开花到季节结束的晴天,冠层的光合作用被测量了10到12次。在开花的第一个和第四个星期(WOF)期间开花的第一对sym位置铃测定纤维特性。 1996年的最大冠层光合作用比1995年高21%,1996年的皮棉产量比1995年高22%。在每年的播种日期之间,平均最大冠层光合作用没有差异,尽管后期的平均产量降低了约30%。每年播种。与来自第四WOF的棉铃相比,来自第一WOF的棉铃通常具有更低的皮棉百分比,更高的短纤维含量,更低的伸长率和更低的白度指数。马克隆数,未成熟纤维分数和纤维横截面积与开花后15到45 d发生的冠层光合作用的数量呈线性关系。我们的结果与以下假设一致:同化供应影响棉纤维特性与次生壁特性。

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