首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Symbiotic N nutrition, C assimilation, and plant water use efficiency in Bambara groundnut (Vigna subterranea L. Verdc) grown in farmers' fields in South Africa, measured using 15N and 13C natural abundance.
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Symbiotic N nutrition, C assimilation, and plant water use efficiency in Bambara groundnut (Vigna subterranea L. Verdc) grown in farmers' fields in South Africa, measured using 15N and 13C natural abundance.

机译:使用 15 N和 13 C自然丰度。

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摘要

Bambara groundnut (Vigna subterranea L. Verdc) is the second most important indigenous food legume in Africa. The aim of this study was to evaluate plant growth, N2 fixation, N contribution, C accumulation, and plant water relations of Bambara groundnut grown in 26 farmers' fields in Mpumalanga Province of South Africa. The data revealed marked (p<=0.05) differences in plant dry matter (DM) yield, N concentration and content, delta 15N, the proportion of N derived from symbiotic fixation (%Ndfa), and actual amounts of N-fixed between and among the 26 farms surveyed. Bambara groundnut plants obtained 33-98% (mean=72%) of their N nutrition from symbiotic fixation and contributed 4-200 kg N-fixed ha-1 (mean=102 kg N-fixed ha-1). Plant density correlated positively with %N (r=0.31***), delta 15N (r=0.126***), and amount of N-fixed (r=0.15*), indicating that the high %Ndfa values obtained for Bambara groundnut in this study and the low symbiotic N yield associated with some farms were due to low plant density rather than poor symbiotic functioning. Bambara groundnut obtained more N from soil (e.g., 173 kg N ha-1) than from symbiosis (e.g., 135 kg N-fixed ha-1) in some fields, implying that the N2-fixing efficacy of the microsymbionts nodulating Bambara groundnut was low at some locations in South Africa. The data from this study showed delta 13C values ranging from -28.01 to -26.20 per mil, which indicates differences in plant water use efficiency on the different fields studied. Furthermore, the positive correlations between delta 13C and N-fixed (r=0.15*) and between delta 13C and N content (r=0.14*) suggest a functional relationship between water use efficiency and N2 fixation, just as the positively significant correlations between delta 15N and DM yield (r=0.24***), N-fixed and DM weight (r=0.76**), and N content and DM yield (r=0.99*), as well as N-fixed and C content (r=0.76**) also indicate a functional relationship between N2 fixation and photosynthesis. In the same way, the positive correlation between delta 13C and DM weight (r=0.14*), or delta 13C and C content (r=0.15*), also implies a functional link between water use efficiency and plant growth. Thus, an increase in water use efficiency in Bambara groundnut, whenever it occurs, seems to functionally enhance plant growth, symbiotic N2 fixation, and photosynthetic activity, just as N2 fixation in nodules also seems to stimulate leaf photosynthesis.
机译:班巴拉花生(Vigna subterranea L. Verdc)是非洲第二重要的本土食用豆类。这项研究的目的是评估南非姆普马兰加省26个农民田间种植的班巴拉花生的植物生长,N 2 固定,氮贡献,碳积累和植物水分关系。数据显示,植物干物质(DM)产量,N浓度和含量,δ 15 N,共生固氮来源的N的比例(%Ndfa)显着(p <= 0.05)差异。调查的26个农场之间的实际固定氮含量。班巴拉花生植物通过共生固定获得其氮素营养的33-98%(平均= 72%),并贡献了4-200 kg N-固定的ha -1 (平均= 102 kg N-固定的ha < sup> -1 )。植物密度与%N(r = 0.31 ***),δ15N(r = 0.126 ***)和固定N的量(r = 0.15 *)正相关,表明对于Bambara获得的高%Ndfa值在这项研究中,花生和某些农场的共生氮产量低是由于植物密度低而不是共生功能差所致。在某些田间,班巴拉花生从土壤中获得的氮(例如173 kg N ha -1 )比从共生土壤中获得的氮(例如135 kg N-固定的ha -1 )更多,这说明在南非的某些地方,节肢斑马鱼花生的微共生菌的N 2 固定效果很低。这项研究的数据显示,delta 13 C值介于-28.01至-26.20 / mil之间,这表明在所研究的不同领域中植物水分利用效率存在差异。此外,δ 13 C与固氮之间的正相关性(r = 0.15 *)和δ 13 C与氮含量之间的正相关性(r = 0.14 *)表明水分利用效率与N 2 固着之间的关系,正如δ 15 N与DM产量(r = 0.24 ***),固氮和固氮之间呈显着正相关。 DM重量(r = 0.76 **),N含量和DM产率(r = 0.99 *)以及N-固定和C含量(r = 0.76 **)也表明N 2之间的功能关系。 固定和光合作用。同样,delta 13 C和DM重量(r = 0.14 *)或delta 13 C和C含量(r = 0.15 *)之间呈正相关,还意味着水分利用效率与植物生长之间的功能联系。因此,无论何时发生,Bambara花生的水分利用效率的提高似乎都在功能上增强了植物的生长,共生N 2 的固定和光合作用,就像N 2 结核中的固着似乎也刺激了叶片的光合作用。

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