首页> 外文期刊>European Journal of Agronomy >Radiation use efficiency and shoot:root dry matter partitioning in seedling growths and regrowth crops of lucerne (Medicago sativa L.) after spring and autumn sowings
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Radiation use efficiency and shoot:root dry matter partitioning in seedling growths and regrowth crops of lucerne (Medicago sativa L.) after spring and autumn sowings

机译:辐射利用效率和枝条:春秋季播种后卢塞恩(Medicago sativa L.)幼苗生长和再生作物中的根系干物质分配

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Storage of carbohydrates in roots is important for lucerne survival and regrowth rate, begins during initial growth. This study examined whether variation in radiation use efficiency (RUE) and shoot:root partitioning (P-shoot) occurring for various types of lucerne canopy, including seedling crops and regrowths in various seasons, was significant or not. Seedling and regrowth crops were monitored for four sowing dates in fully irrigated experiments on chalky soils in north-eastern France for three years. P-shoot was calculated as the ratio between increments in aerial dry matter (ADM) and total dry matter (TDM) for successive crop measurements. Leaf Area Index (LAI) was regressed against cumulative thermal time (CTh) using a 5 degrees C base temperature, which provided the best fit (R-2 = 0.98). The increase in LAI was exponential up to 0.7 m(2) of green leaves per m(2) of soil (350 CTh) and then became linear for seedling crops, but was linear for regrowths. During spring and summer, the slope of the linear phase of LAI increase was almost constant for all the seedling growths (0.011-0.014 CTh-1) except the last summer sowing, but was significantly variable (from 0.007 to 0.025 CTh-1) for regrowths. The RUE based on ADM and TDM (RUEa and RUEt, respectively) reached a linear phase for seedling growths when ADM exceeded 1.0 t DM ha(-1). RUEa was equal to 1.72 g DM MJ(-1) irrespective of sowing date, while RUEt was higher at 2.28 and 2.84 DM MJ(-1) for canopies from spring and summer sowings, respectively. The RUE of seedling crops always exceeded those of regrowth crops present at the same period. Hence seedling crops of lucerne were slower to establish their LAI than regrowths, but used cumulative intercepted radiation as efficiently as the latter. The seedling P-shoot shoot varied slightly according to crop age and season unlike the regrowth P-shoot which decreased significantly vs. CTh5 (-8.9 x 10(-4) CTh-1; R-2 = 0.66); while the ratio was also influenced by the daylength of the period. The P-shoot of seedling and regrowth canopies evolved very differently with respect to CTh, the former remaining quite stable and the latter declining. This suggests a change in plant behaviour between seedling and regrowth crops, probably triggered by crop defoliation
机译:在初始生长过程中,碳水化合物在根部的储存对于卢塞恩的存活和再生速率很重要。这项研究检查了不同季节的各种类型的卢塞恩冠层(包括幼苗和再生长)的辐射利用效率(RUE)和枝条:根分配(P-shoot)变化是否显着。在法国东北的白垩土壤上进行了为期三年的全面灌溉实验,对幼苗和再生作物的四个播种日期进行了监测。 P-shoot计算为连续作物测量中空气干物质(ADM)和总干物质(TDM)增量之间的比率。叶面积指数(LAI)相对于累积热时间(CTh)的回归采用5摄氏度基准温度,这提供了最佳拟合度(R-2 = 0.98)。 LAI的增加呈指数增长,达到每m(2)土(350 CTh)最多有0.7 m(2)绿叶,然后对幼苗作物呈线性关系,但对再生长呈线性关系。在春季和夏季,除去年夏季播种外,所有幼苗生长(0.011-0.014 CTh-1)的LAI线性期的斜率几乎恒定,但在整个夏季,LAI线性期的斜率变化很大(从0.007至0.025 CTh-1)。再生。当ADM超过1.0 t DM ha(-1)时,基于ADM和TDM(分别为RUEa和RUEt)的RUE达到了幼苗生长的线性阶段。无论播种日期如何,RUEa均等于1.72 g DM MJ(-1),而春季和夏季播种的冠层的RUEt分别更高,分别为2.28和2.84 DM MJ(-1)。幼苗的RUE总是超过同期出现的再生作物的RUE。因此,与再生长相比,卢塞恩的幼苗农作物建立LAI的速度较慢,但​​其累积截获辐射的效率与后者相同。幼苗的P-芽苗根据作物的年龄和季节而略有不同,而再生P-芽相对于CTh5显着降低(-8.9 x 10(-4)CTh-1; R-2 = 0.66);而比率也受时段的时长影响。幼苗和再生林冠层的P-芽相对于CTh的变化非常不同,前者保持相当稳定,而后者下降。这表明幼苗和再生作物之间的植物行为发生了变化,这可能是由作物的落叶引起的

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